Mosquitoes bred to be unable to infect people with the malaria parasite are an attractive approach to helping curb one of the world's most pressing public health issues, according to UC Irvine scientists.
Anthony James and colleagues from UCI and the Pasteur Institute in Paris have produced a model of the Anopheles stephensi mosquito -- a major source of malaria in India and the Middle East -- that impairs the development of the malaria parasite. These mosquitoes, in turn, cannot transmit the disease through their bites.
"Our group has made significant advances with the creation of transgenic mosquitoes," said James, a UCI Distinguished Professor of microbiology & molecular genetics and molecular biology & biochemistry. "But this is the first model of a malaria vector with a genetic modification that can potentially exist in wild populations and be transferred through generations without affecting their fitness."
More than 40 percent of the world's population lives in areas where there is a risk of contracting malaria. According to the Centers for Disease Control & Prevention, 300 million to 500 million cases of malaria occur each year, and nearly 1 million people die of the disease annually -- largely infants, young children and pregnant women, most of them in Africa.
James said one advantage of his group's method is that it can be applied to the dozens of different mosquito types that harbor and transmit the Plasmodium falciparum parasite, including those in Africa. Study results appear this week in the early online version of the Proceedings of the National Academy of Sciences.
The researchers conceived their approach through mouse studies. Mice infected with the human form of malaria create antibodies that kill the parasite. James' team exploited the molecular components of this mouse immune-system response and engineered genes that could produce the same response in mosquitoes. In their model, antibodies are released in genetically modified mosquitoes that render the parasite harmless to others.
"We see a complete deletion of the infectious version of the malaria parasite," said James, a member of the National Academy of Sciences. "This blocking process within the insect that carries malaria can help significantly reduce human sickness and death."
He and his colleagues have pioneered the creation of genetically altered mosquitoes that limit the transmission of dengue fever, malaria and other vector-borne illnesses.
Read more at Science Daily
Jun 12, 2012
How Aging Is Recorded in Our Genes
“The great secret that all old people share is that you really haven’t changed,” wrote novelist Doris Lessing. “Your body changes, but you don’t change at all.” From a genetic point of view, there is a lot of truth in that statement: As we age, the core of our biological being — the sequence of our DNA, which makes up our genes — remains the same. Yet recent research suggests that more subtle chemical changes to our DNA occur as we age. Now, a comparison of the DNA of a newborn baby with that of a centenarian shows that the scope of these changes can be dramatic, and they may help explain why our risk of cancer and other diseases increases as we get older.
DNA is made up of four basic building blocks — adenine, thymine, guanine, and cytosine — and the sequence of these nucleotides within a gene determines what protein it makes. Genes can be switched on and off as needed, and the regulation of genes often involves what are called epigenetic mechanisms in which chemical alterations are made to the DNA. One of the most common of these epigenetic changes involves a methyl group — one carbon atom and three hydrogen atoms — binding to a nucleotide, usually cytosine. In general, this binding, called methylation, turns off the gene in question.
Recent research suggests that changes in DNA methylation patterns as a person gets older may contribute to human diseases for which risk increases with age, including cancer. To get a better idea of how methylation patterns change with age, a team led by Manel Esteller, an epigenetics researcher at the Bellvitge Biomedical Research Institute in Barcelona, Spain, looked at two extreme cases: A newborn male baby and a man aged 103 years.
The team extracted DNA from white blood cells taken from the blood of the elderly man and from the umbilical cord blood of the baby and determined its methylation pattern using a fairly new technique called whole-genome bisulfite sequencing (WGBS). With WGBS, DNA is exposed to the chemical sodium bisulfite, which has no effect on cytosines with methyl groups bound to them but turns nonmethylated cytosines into another nucleotide called uracil. The result is an epigenetic map (see illustration) that shows exactly which DNA sites are methylated and which are not.
As the team reports online today in the Proceedings of the National Academy of Sciences, it found a significantly higher amount of cytosine methylation in the newborn than in the centenarian: 80.5 percent of all cytosine nucleotides, compared with 73 percent. To look at an intermediate case, the team also performed WGBS on the DNA of a 26-year-old male subject; the methylation level was also intermediate, about 78 percent.
Esteller and his colleagues then took a closer look at the differences between the DNA of the newborn and of the centenarian, but restricted the comparison to regions of the genome where the DNA nucleotide sequences were identical so that only the epigenetic differences would stand out. The team identified nearly 18,000 so-called differentially methylated regions (DMRs) of the genome, covering many types of genes. More than a third of the DMRs occurred in genes that have already been linked with cancer risk. Moreover, in the centenarian, 87 percent of the DMRs involved the loss of the methyl group, while only 13 percent involved the gain of one.
Finally, to expand the study, the team looked at the methylation patterns of 19 newborns and 19 people aged between 89 and 100 years old. This analysis confirmed that older people have a lower amount of cytosine methylation than newborns.
The authors conclude that the degree of methylation decreases in a cumulative fashion over time. Moreover, Esteller says, in the centenarian the loss of methyl groups, which turns genes back on, often occurred in genes that increase the risk of infection and diabetes when they are turned on during adulthood. In contrast, the small number of genes in the centenarian that had greater methylation levels were often those that needed to be kept turned on to protect against cancer.
Read more at Wired Science
DNA is made up of four basic building blocks — adenine, thymine, guanine, and cytosine — and the sequence of these nucleotides within a gene determines what protein it makes. Genes can be switched on and off as needed, and the regulation of genes often involves what are called epigenetic mechanisms in which chemical alterations are made to the DNA. One of the most common of these epigenetic changes involves a methyl group — one carbon atom and three hydrogen atoms — binding to a nucleotide, usually cytosine. In general, this binding, called methylation, turns off the gene in question.
Recent research suggests that changes in DNA methylation patterns as a person gets older may contribute to human diseases for which risk increases with age, including cancer. To get a better idea of how methylation patterns change with age, a team led by Manel Esteller, an epigenetics researcher at the Bellvitge Biomedical Research Institute in Barcelona, Spain, looked at two extreme cases: A newborn male baby and a man aged 103 years.
The team extracted DNA from white blood cells taken from the blood of the elderly man and from the umbilical cord blood of the baby and determined its methylation pattern using a fairly new technique called whole-genome bisulfite sequencing (WGBS). With WGBS, DNA is exposed to the chemical sodium bisulfite, which has no effect on cytosines with methyl groups bound to them but turns nonmethylated cytosines into another nucleotide called uracil. The result is an epigenetic map (see illustration) that shows exactly which DNA sites are methylated and which are not.
As the team reports online today in the Proceedings of the National Academy of Sciences, it found a significantly higher amount of cytosine methylation in the newborn than in the centenarian: 80.5 percent of all cytosine nucleotides, compared with 73 percent. To look at an intermediate case, the team also performed WGBS on the DNA of a 26-year-old male subject; the methylation level was also intermediate, about 78 percent.
Esteller and his colleagues then took a closer look at the differences between the DNA of the newborn and of the centenarian, but restricted the comparison to regions of the genome where the DNA nucleotide sequences were identical so that only the epigenetic differences would stand out. The team identified nearly 18,000 so-called differentially methylated regions (DMRs) of the genome, covering many types of genes. More than a third of the DMRs occurred in genes that have already been linked with cancer risk. Moreover, in the centenarian, 87 percent of the DMRs involved the loss of the methyl group, while only 13 percent involved the gain of one.
Finally, to expand the study, the team looked at the methylation patterns of 19 newborns and 19 people aged between 89 and 100 years old. This analysis confirmed that older people have a lower amount of cytosine methylation than newborns.
The authors conclude that the degree of methylation decreases in a cumulative fashion over time. Moreover, Esteller says, in the centenarian the loss of methyl groups, which turns genes back on, often occurred in genes that increase the risk of infection and diabetes when they are turned on during adulthood. In contrast, the small number of genes in the centenarian that had greater methylation levels were often those that needed to be kept turned on to protect against cancer.
Read more at Wired Science
Mammoths Wiped Out By Multiple Killers
Woolly mammoths were apparently driven to extinction by a multitude of culprits, with climate change, human hunters and shifting habitats all playing a part in the long decline of these giants, researchers say.
Woolly mammoths (Mammuthus primigenius) wandered the planet for about 250,000 years, ranging from Europe to Asia to North America covered in hair up to 20 inches (50 centimeters) long and possessing curved tusks up to 16 feet (4.9 meters) long. Nearly all of these giants vanished from Siberia by about 10,000 years ago, although dwarf mammoths survived on Wrangel Island in the Arctic Ocean until 3,700 years ago.
Scientists have often speculated over what might have driven the mammoths to extinction. For instance, for years researchers suspected that ancient human tribes hunted the mammoths and other ice age giants to oblivion. Others have suggested that a meteor strike might have drastically altered the climate in North America about 12,900 years ago, wiping out most of the large mammals there, the so-called "Younger Dryas impact hypothesis."
Now an analysis of thousands of fossils, artifacts and environmental sites spanning millennia suggest that no one killer is to blame for the demise of the woolly mammoths.
"These findings pretty much dispel the idea of any one factor, any one event, as dooming the mammoths," researcher Glen MacDonald, a geographer at the University of California, Los Angeles, told LiveScience.
Mammoth database
Scientists investigated the extinction of woolly mammoths living in Beringia, the last refuge of mammoths that nowadays lies mostly submerged under the icy waters of the Bering Strait. To get an idea of woolly mammoth abundance, past climate and other environmental factors, they analyzed samples from more than 1,300 woolly mammoths, nearly 450 pieces of wood, nearly 600 archaeological sites and more than 650 peatlands, compiling their ages and locations to see how these giants and their environments changed over time. They also probed mammoth genetic data found in fossils of the titans.
"There will be people talking about the incompleteness of the fossil record, and there'll always be uncertainties here, no question, but the size of our database is thousands of data points, so I think we can see the general patterns," MacDonald said.
Their results revealed woolly mammoths flourished in the open steppe of Beringia between 30,000 to 45,000 years ago, with its relatively abundant grass and willow trees. The area wasn't as warm then as today, but not as cold as the height of the ice age. "That seemed to be very favorable for mammoths, in terms of abundance," MacDonald said. Humans coexisted with mammoths back then, clearly not driving them to extinction at that time.
Later, during the iciest part of the ice age 20,000 to 25,000 years ago, the "Last Glacial Maximum," northern woolly mammoth populations declined, likely because the area became too barren to be hospitable. However, during that time, the giants became abundant in the warmer interior parts of Siberia.
"There was an old idea that cold glacial conditions like the Last Glacial Maximum were optimal for mammoths," MacDonald said. "That idea now doesn't really hold water."
Northern refuge
Northern mammoth populations grew after the Last Glacial Maximum, but then dipped again during the Younger Dryas period about 12,900 years ago. Although there is controversy as to what happened at that time, "there was certainly a very rapid and profound cooling of many regions then, followed by rapid warming," MacDonald said. "Did this cause the extinction of the mammoth? Absolutely not. They were still present in far northern sites at the end of the Younger Dryas. Right now it's not quite definitive how great an impact the Younger Dryas had."
The last mammoths seen on the continents were concentrated in the north. They apparently disappeared about 10,000 years ago as the climate warmed and peatlands, wet tundra and coniferous forests developed, environments to which mammoths were poorly suited. The long-lasting proximity between mammoths and humans suggested that our species was perhaps a factor in the beasts' decline, possibly killing off the final island populations of woolly mammoths that went extinct 3,700 years ago.
Overall, these findings suggest the mammoths experienced a long decline due to many factors.
"There was no one event that ended the mammoths," MacDonald said. "It was really the coalescence of climate changeand the habitat change that triggered [it], and also human predators on the landscape at the end."
These findings regarding mammoths could shed light on what species today might face in the future.
Read more at Discovery News
Woolly mammoths (Mammuthus primigenius) wandered the planet for about 250,000 years, ranging from Europe to Asia to North America covered in hair up to 20 inches (50 centimeters) long and possessing curved tusks up to 16 feet (4.9 meters) long. Nearly all of these giants vanished from Siberia by about 10,000 years ago, although dwarf mammoths survived on Wrangel Island in the Arctic Ocean until 3,700 years ago.
Scientists have often speculated over what might have driven the mammoths to extinction. For instance, for years researchers suspected that ancient human tribes hunted the mammoths and other ice age giants to oblivion. Others have suggested that a meteor strike might have drastically altered the climate in North America about 12,900 years ago, wiping out most of the large mammals there, the so-called "Younger Dryas impact hypothesis."
Now an analysis of thousands of fossils, artifacts and environmental sites spanning millennia suggest that no one killer is to blame for the demise of the woolly mammoths.
"These findings pretty much dispel the idea of any one factor, any one event, as dooming the mammoths," researcher Glen MacDonald, a geographer at the University of California, Los Angeles, told LiveScience.
Mammoth database
Scientists investigated the extinction of woolly mammoths living in Beringia, the last refuge of mammoths that nowadays lies mostly submerged under the icy waters of the Bering Strait. To get an idea of woolly mammoth abundance, past climate and other environmental factors, they analyzed samples from more than 1,300 woolly mammoths, nearly 450 pieces of wood, nearly 600 archaeological sites and more than 650 peatlands, compiling their ages and locations to see how these giants and their environments changed over time. They also probed mammoth genetic data found in fossils of the titans.
"There will be people talking about the incompleteness of the fossil record, and there'll always be uncertainties here, no question, but the size of our database is thousands of data points, so I think we can see the general patterns," MacDonald said.
Their results revealed woolly mammoths flourished in the open steppe of Beringia between 30,000 to 45,000 years ago, with its relatively abundant grass and willow trees. The area wasn't as warm then as today, but not as cold as the height of the ice age. "That seemed to be very favorable for mammoths, in terms of abundance," MacDonald said. Humans coexisted with mammoths back then, clearly not driving them to extinction at that time.
Later, during the iciest part of the ice age 20,000 to 25,000 years ago, the "Last Glacial Maximum," northern woolly mammoth populations declined, likely because the area became too barren to be hospitable. However, during that time, the giants became abundant in the warmer interior parts of Siberia.
"There was an old idea that cold glacial conditions like the Last Glacial Maximum were optimal for mammoths," MacDonald said. "That idea now doesn't really hold water."
Northern refuge
Northern mammoth populations grew after the Last Glacial Maximum, but then dipped again during the Younger Dryas period about 12,900 years ago. Although there is controversy as to what happened at that time, "there was certainly a very rapid and profound cooling of many regions then, followed by rapid warming," MacDonald said. "Did this cause the extinction of the mammoth? Absolutely not. They were still present in far northern sites at the end of the Younger Dryas. Right now it's not quite definitive how great an impact the Younger Dryas had."
The last mammoths seen on the continents were concentrated in the north. They apparently disappeared about 10,000 years ago as the climate warmed and peatlands, wet tundra and coniferous forests developed, environments to which mammoths were poorly suited. The long-lasting proximity between mammoths and humans suggested that our species was perhaps a factor in the beasts' decline, possibly killing off the final island populations of woolly mammoths that went extinct 3,700 years ago.
Overall, these findings suggest the mammoths experienced a long decline due to many factors.
"There was no one event that ended the mammoths," MacDonald said. "It was really the coalescence of climate changeand the habitat change that triggered [it], and also human predators on the landscape at the end."
These findings regarding mammoths could shed light on what species today might face in the future.
Read more at Discovery News
Galaxy Close Encounter Created Giant Gas Bridge
Two galaxies near our own Milky Way may have had a close encounter billions of years ago that created a vast bridge of gas that links them together to this day, a new study finds.
Observations from the National Science Foundation's Green Bank Telescope, a massive radio instrument in Green Bank, W.Va., indicate that hydrogen gas may be streaming between the colossal Andromeda Galaxy, or M31, and its neighboring Triangulum Galaxy, or M33.
"The properties of this gas indicate that these two galaxies may have passed close together in the distant past," Jay Lockman, of the National Radio Astronomy Observatory (NRAO), said in a statement. "Studying what may be a gaseous link between the two can give us a new key to understanding the evolution of both galaxies."
These results were hinted at in a 2004 discovery, made by astronomers using the Westerbork Synthesis Radio Telescope in the Netherlands, but these early observations of a gaseous link between M31 and M33 were largely contested on technical grounds, the researchers said.
The new results, however, seem to indicate that astronomers' hunch eight years ago may have been correct. The highly sensitive Green Bank Telescope has not only confirmed the existence of the gaseous bridge, but has also found six dense clumps of gas within it.
Lockman and his colleagues examined these clumps and found that they share roughly the same relative velocity with respect to Earth as they do to the Andromeda and Triangulum galaxies. This indicates that they could be part of a bridge between the two neighboring structures, the researchers said.
The Andromeda and Triangulum galaxies are located approximately 2.6 and 3 million light-years from Earth, respectively. Both are members of the so-called Local Group of galaxies, which is made up of our own Milky Way and roughly 30 other galaxies.
When two galaxies pass close to one another, the encounter can cause gas from the galaxies being strewn across intergalactic space, creating a lengthy "tidal tail" between them.
Read more at Discovery News
Observations from the National Science Foundation's Green Bank Telescope, a massive radio instrument in Green Bank, W.Va., indicate that hydrogen gas may be streaming between the colossal Andromeda Galaxy, or M31, and its neighboring Triangulum Galaxy, or M33.
"The properties of this gas indicate that these two galaxies may have passed close together in the distant past," Jay Lockman, of the National Radio Astronomy Observatory (NRAO), said in a statement. "Studying what may be a gaseous link between the two can give us a new key to understanding the evolution of both galaxies."
These results were hinted at in a 2004 discovery, made by astronomers using the Westerbork Synthesis Radio Telescope in the Netherlands, but these early observations of a gaseous link between M31 and M33 were largely contested on technical grounds, the researchers said.
The new results, however, seem to indicate that astronomers' hunch eight years ago may have been correct. The highly sensitive Green Bank Telescope has not only confirmed the existence of the gaseous bridge, but has also found six dense clumps of gas within it.
Lockman and his colleagues examined these clumps and found that they share roughly the same relative velocity with respect to Earth as they do to the Andromeda and Triangulum galaxies. This indicates that they could be part of a bridge between the two neighboring structures, the researchers said.
The Andromeda and Triangulum galaxies are located approximately 2.6 and 3 million light-years from Earth, respectively. Both are members of the so-called Local Group of galaxies, which is made up of our own Milky Way and roughly 30 other galaxies.
When two galaxies pass close to one another, the encounter can cause gas from the galaxies being strewn across intergalactic space, creating a lengthy "tidal tail" between them.
Read more at Discovery News
Jun 11, 2012
Lessons from Epigenome Evolution
The sequencing of the human genome has provided a wealth of genetic information, yet the goal of understanding the function of every gene remains outstanding. New research from the University of Illinois published in Cell suggests determining the purpose of genes through a new method they call "comparative epigenomics."
"Comparative epigenomics is to use interspecies comparison of DNA and histone modifications -- as an approach for annotation of the regulatory genome," says Sheng Zhong, of the Institute for Genomic Biology and Department of Bioengineering at the University of Illinois.
While the genome of an organism contains all its genes, it is the epigenome that decides which are expressed, or "turned on." Though genomic science has long focused on comparative genomics -- comparing the genomes of similar species and finding the commonalities to determine how common traits are regulated -- comparative epigenetics provides a more in-depth look at regulatory functions.
The researchers, led by Zhong, in collaboration with Ting Wang at Washington University, Harris Lewin, and Franklin West at University of Georgia, focused their work on three species: humans, mice, and pigs. By analyzing 9 epigenomic marks in pluripotent stem cells, they were able to create an epigenomic map for each which they could then compare.
The team concluded that, with proper analysis procedures, traces of interspecies epigenomic conservation could be identified. They then demonstrated that the conserved epigenetic markers can be effectively used to annotate the genome, clarifying the genome's regulatory function.
Read more at Science Daily
"Comparative epigenomics is to use interspecies comparison of DNA and histone modifications -- as an approach for annotation of the regulatory genome," says Sheng Zhong, of the Institute for Genomic Biology and Department of Bioengineering at the University of Illinois.
While the genome of an organism contains all its genes, it is the epigenome that decides which are expressed, or "turned on." Though genomic science has long focused on comparative genomics -- comparing the genomes of similar species and finding the commonalities to determine how common traits are regulated -- comparative epigenetics provides a more in-depth look at regulatory functions.
The researchers, led by Zhong, in collaboration with Ting Wang at Washington University, Harris Lewin, and Franklin West at University of Georgia, focused their work on three species: humans, mice, and pigs. By analyzing 9 epigenomic marks in pluripotent stem cells, they were able to create an epigenomic map for each which they could then compare.
The team concluded that, with proper analysis procedures, traces of interspecies epigenomic conservation could be identified. They then demonstrated that the conserved epigenetic markers can be effectively used to annotate the genome, clarifying the genome's regulatory function.
Read more at Science Daily
China Unearths Over 100 New Terracotta Warriors
Chinese archaeologists have unearthed 110 new terracotta warriors that laid buried for centuries, an official said Monday, part of the famed army built to guard the tomb of China's first emperor.
The life-size figures were excavated near the Qin Emperor's mausoleum in China's northern Xi'an city over the course of three years, and archaeologists also uncovered 12 pottery horses, parts of chariots, weapons and tools.
"The... excavation on the 200-square-metre (2,152-square-feet) site has found a total of 110 terracotta figurines," Shen Maosheng from the Qin Shihuang Terracotta Warriors and Horses Museum -- which oversees the tomb -- told AFP.
"The most significant discovery this time around is that the relics that were found were well-preserved and colourfully painted," Shen, deputy head of the museum's archaeology department, said.
He added that archaeologists had pinpointed the location of another 11 warriors but had yet to unearth them.
The discovery is the latest in China's cultural sector, after experts found that the Great Wall of China -- which like the Terracotta Army is a UNESCO World Heritage site -- was much longer than previously thought.
Shen said experts had expected the colours on some of the warriors and wares uncovered at the site to have faded over the centuries, and were surprised to see how well preserved they still were.
The finds also included a shield that was reportedly used by soldiers in the Qin Dynasty (221-206 BC), with red, green and white geometric patterns.
Qin Shihuang -- the Qin emperor who had the army built -- presided over the unification of China in 221 BC and is seen as the first emperor of the nation.
The ancient terracotta army was discovered in 1974 by a peasant digging a well. It represents one of the greatest archaeological finds of modern times, and was listed as a World Heritage Site in 1987.
The news comes after a five-year archaeological survey found the Great Wall of China was more than double the previously estimated length.
Read more at Discovery News
The life-size figures were excavated near the Qin Emperor's mausoleum in China's northern Xi'an city over the course of three years, and archaeologists also uncovered 12 pottery horses, parts of chariots, weapons and tools.
"The... excavation on the 200-square-metre (2,152-square-feet) site has found a total of 110 terracotta figurines," Shen Maosheng from the Qin Shihuang Terracotta Warriors and Horses Museum -- which oversees the tomb -- told AFP.
"The most significant discovery this time around is that the relics that were found were well-preserved and colourfully painted," Shen, deputy head of the museum's archaeology department, said.
He added that archaeologists had pinpointed the location of another 11 warriors but had yet to unearth them.
The discovery is the latest in China's cultural sector, after experts found that the Great Wall of China -- which like the Terracotta Army is a UNESCO World Heritage site -- was much longer than previously thought.
Shen said experts had expected the colours on some of the warriors and wares uncovered at the site to have faded over the centuries, and were surprised to see how well preserved they still were.
The finds also included a shield that was reportedly used by soldiers in the Qin Dynasty (221-206 BC), with red, green and white geometric patterns.
Qin Shihuang -- the Qin emperor who had the army built -- presided over the unification of China in 221 BC and is seen as the first emperor of the nation.
The ancient terracotta army was discovered in 1974 by a peasant digging a well. It represents one of the greatest archaeological finds of modern times, and was listed as a World Heritage Site in 1987.
The news comes after a five-year archaeological survey found the Great Wall of China was more than double the previously estimated length.
Read more at Discovery News
Tortoise Couple 'Divorces' After 115 Years
After 115 years of partnership, two tortoises from the Reptilien Zoo Happ in Austria can no longer stand each other and are now living in separate enclosures, according to an Austrian Times report.
The fallout between the two tortoises, Bibi and Poldi, ends what was the world's oldest known animal "marriage."
As the zoo's director Helga Happ told the Austrian Times, "We get the feeling they can't stand the sight of each other anymore."
Signs of the breakup were not hard to detect. Bibi, seemingly tired of Poldi's attentions, hauled off and bit his shell one day. She later attacked him again, forcing the puzzled staff to move him to a separate enclosure.
The good news is that they did not decide to kill each other. Tortoises don't have teeth, but they do possess a horn-rimmed mouth and extremely powerful jaws. They could have easily done each other in. The zoo staff did not want to wait around for that to possibly happen.
Happ said, "They are both 115 years old -- they have been together since they were young and grew up together, eventually becoming a pair. But for no reason that anyone can discover they seem to have fallen out, they just can't stand each other."
She and other zoo staff are trying everything to save the marriage. They have given the pair "counseling," "romantic good food," and have tried to get the tortoises interested in "joint games," but all to no avail so far.
Bibi appears to be enjoying her new life as a single tortoise gal.
She and Poldi first met at the Basel Zoo in Switzerland. They then were moved together to the Austrian zoo in Klagenfurt, where were together for 36 years. Their routine hasn't changed much over the years.
Read more at Discovery News
The fallout between the two tortoises, Bibi and Poldi, ends what was the world's oldest known animal "marriage."
As the zoo's director Helga Happ told the Austrian Times, "We get the feeling they can't stand the sight of each other anymore."
Signs of the breakup were not hard to detect. Bibi, seemingly tired of Poldi's attentions, hauled off and bit his shell one day. She later attacked him again, forcing the puzzled staff to move him to a separate enclosure.
The good news is that they did not decide to kill each other. Tortoises don't have teeth, but they do possess a horn-rimmed mouth and extremely powerful jaws. They could have easily done each other in. The zoo staff did not want to wait around for that to possibly happen.
Happ said, "They are both 115 years old -- they have been together since they were young and grew up together, eventually becoming a pair. But for no reason that anyone can discover they seem to have fallen out, they just can't stand each other."
She and other zoo staff are trying everything to save the marriage. They have given the pair "counseling," "romantic good food," and have tried to get the tortoises interested in "joint games," but all to no avail so far.
Bibi appears to be enjoying her new life as a single tortoise gal.
She and Poldi first met at the Basel Zoo in Switzerland. They then were moved together to the Austrian zoo in Klagenfurt, where were together for 36 years. Their routine hasn't changed much over the years.
Read more at Discovery News
Largest 'Dark Sky' Reserve Named
A huge portion of New Zealand's South Island has been designated as the world's largest International Dark Sky Reserve, making it one of the best places for stargazing on the globe.
"The new reserve is coming in at a 'Gold' level status," said the International Dark-Sky Association's executive director Bob Parks in a statement. "That means the skies there are almost totally free from light pollution. To put it simply, it is one of the best stargazing sites on Earth."
To qualify to be a reserve, areas need to be endowed with dark skies and virtually no light pollution.
The new reserve includes Aoraki/Mt. Cook National Park and the Mackenzie Basin, and has been dubbed the "Aoraki Mackenzie International Dark Sky Reserve." It is the fourth such dark sky reserve in the world and covers more than 1,600 square miles (4,144 square kilometers).
This week's announcement coincides with the Third International Starlight Conference, a United Nations-led effort that emphasizes a star-filled night sky is part of the common heritage of mankind and that protections are necessary to ensure that present and future generations will be able to see the stars.
Last month, the IDSA announced the formation of the first such spot in Africa, the NamibRand Nature Reserve, a private nature reserve in southern Namibia.
Organizers of the new reserve in New Zealand recognize that the night sky played a critical role in the area's history as its first residents, the Maori, used it not only to navigate to the island but also made astronomy and star lore a part of their culture and daily lives. Mackenzie Basin has the clearest, darkest and most spectacular night sky in New Zealand, according to the IDSA statement.
Read more at Discovery News
"The new reserve is coming in at a 'Gold' level status," said the International Dark-Sky Association's executive director Bob Parks in a statement. "That means the skies there are almost totally free from light pollution. To put it simply, it is one of the best stargazing sites on Earth."
To qualify to be a reserve, areas need to be endowed with dark skies and virtually no light pollution.
The new reserve includes Aoraki/Mt. Cook National Park and the Mackenzie Basin, and has been dubbed the "Aoraki Mackenzie International Dark Sky Reserve." It is the fourth such dark sky reserve in the world and covers more than 1,600 square miles (4,144 square kilometers).
This week's announcement coincides with the Third International Starlight Conference, a United Nations-led effort that emphasizes a star-filled night sky is part of the common heritage of mankind and that protections are necessary to ensure that present and future generations will be able to see the stars.
Last month, the IDSA announced the formation of the first such spot in Africa, the NamibRand Nature Reserve, a private nature reserve in southern Namibia.
Organizers of the new reserve in New Zealand recognize that the night sky played a critical role in the area's history as its first residents, the Maori, used it not only to navigate to the island but also made astronomy and star lore a part of their culture and daily lives. Mackenzie Basin has the clearest, darkest and most spectacular night sky in New Zealand, according to the IDSA statement.
Read more at Discovery News
Jun 10, 2012
New Anti-Cancer Vaccine Developed and Tested
Researchers at Moffitt Cancer Center have developed and tested in mice a synthetic vaccine and found it effective in killing human papillomavirus-derived cancer, a virus linked to cervical cancers among others.
The research was published in a recent issue of Cancer Immunology, Immunotherapy.
"Vaccines for cancer can be good alternatives to conventional therapies that result in serious side-effects and are rarely effective against advanced disease," said Esteban Celis, M.D., Ph.D., senior member and professor in Moffitt's Immunology Program. "The human papillomavirus, or HPV, is known to cause 99 percent of cervical cancers and annually causes more than 250,000 deaths worldwide." In addition, HPV is the causative agent of a large proportion of head and neck and genital cancers.
Although two approved prophylactic vaccines against strains of HPV that cause cervical cancer are now in wide use as a measure to prevent HPV infections, these vaccines cannot be used to treat HPV-induced cancers. Thus, there is a need to develop therapeutic vaccines for HPV-related tumors.
In an effort to find an effective HPV-cancer vaccine that would eliminate existing HPV-induced cancer, Celis and Kelly Barrios-Marrugo, Ph.D., of the University of South Florida College of Medicine's Molecular Medicine program, designed a peptide vaccination strategy called TriVax-HPV.
The TriVax vaccine strategy was designed to generate large numbers of cytotoxic T-cells that would seek out the proteins preferentially expressed in the tumors. The HPV16-E6 and E7 proteins function as oncogenic proteins inducing cancer. Thus, according to Celis and Barrios-Marrugo, a vaccine targeting these viral proteins is an "ideal candidate" to create strong immune responses, with the additional benefit of not generating autoimmune-related pathologies.
When they tested their vaccine in mice with HPV16-induced tumors, they found that TriVax containing a small synthetic fragment (peptide) of the E7 protein "induced tumor clearance in 100 percent of the treated mice" while the unvaccinated mice with HPV-induced tumors had their tumors grow "at a fast rate."
"Although the magnitude of the T-cell responses achieved with TriVax in mice is impressive," Barrios-Marrugo said," we do not know whether similar effects can be accomplished in humans."
Celis and Barrios-Marrugo point out that current therapies for cervical cancer can be devastating, highly toxic and associated with a 10 percent chance of recurrence. Additionally, a significant proportion of women in the Third World will not receive the approved prophylactic vaccine to prevent HPV infection and, thus, will continue at high risk for cervical and other cancers related to HPV.
Read more at Science Daily
The research was published in a recent issue of Cancer Immunology, Immunotherapy.
"Vaccines for cancer can be good alternatives to conventional therapies that result in serious side-effects and are rarely effective against advanced disease," said Esteban Celis, M.D., Ph.D., senior member and professor in Moffitt's Immunology Program. "The human papillomavirus, or HPV, is known to cause 99 percent of cervical cancers and annually causes more than 250,000 deaths worldwide." In addition, HPV is the causative agent of a large proportion of head and neck and genital cancers.
Although two approved prophylactic vaccines against strains of HPV that cause cervical cancer are now in wide use as a measure to prevent HPV infections, these vaccines cannot be used to treat HPV-induced cancers. Thus, there is a need to develop therapeutic vaccines for HPV-related tumors.
In an effort to find an effective HPV-cancer vaccine that would eliminate existing HPV-induced cancer, Celis and Kelly Barrios-Marrugo, Ph.D., of the University of South Florida College of Medicine's Molecular Medicine program, designed a peptide vaccination strategy called TriVax-HPV.
The TriVax vaccine strategy was designed to generate large numbers of cytotoxic T-cells that would seek out the proteins preferentially expressed in the tumors. The HPV16-E6 and E7 proteins function as oncogenic proteins inducing cancer. Thus, according to Celis and Barrios-Marrugo, a vaccine targeting these viral proteins is an "ideal candidate" to create strong immune responses, with the additional benefit of not generating autoimmune-related pathologies.
When they tested their vaccine in mice with HPV16-induced tumors, they found that TriVax containing a small synthetic fragment (peptide) of the E7 protein "induced tumor clearance in 100 percent of the treated mice" while the unvaccinated mice with HPV-induced tumors had their tumors grow "at a fast rate."
"Although the magnitude of the T-cell responses achieved with TriVax in mice is impressive," Barrios-Marrugo said," we do not know whether similar effects can be accomplished in humans."
Celis and Barrios-Marrugo point out that current therapies for cervical cancer can be devastating, highly toxic and associated with a 10 percent chance of recurrence. Additionally, a significant proportion of women in the Third World will not receive the approved prophylactic vaccine to prevent HPV infection and, thus, will continue at high risk for cervical and other cancers related to HPV.
Read more at Science Daily
Microbes Discovered in Extreme Environment On South American Volcanoes
A team led by the University of Colorado Boulder looking for organisms that eke out a living in some of the most inhospitable soils on Earth has found a hardy few.
A new DNA analysis of rocky soils in the Martian-like landscape on some volcanoes in South America has revealed a handful of bacteria, fungi and other rudimentary organisms called archaea, which seem to have a different way of converting energy than their cousins elsewhere in the world.
"We haven't formally identified or characterized the species," said Ryan Lynch, a CU-Boulder doctoral student involved in the study. "But these are very different than anything else that has been cultured. Genetically, they're at least 5 percent different than anything else in the DNA database of 2.5 million sequences."
Life gets little encouragement on the incredibly dry slopes of the tallest volcanoes in the Atacama region, where CU-Boulder Professor Steve Schmidt and his team collected soil samples. Much of the sparse snow that falls on the terrain sublimates back to the atmosphere soon after it hits the ground, and the soil is so depleted of nutrients that nitrogen levels in the scientists' samples were below detection limits.
Ultraviolet radiation in the high-altitude environment can be twice as intense as in a low-elevation desert, said Schmidt of CU-Boulder's ecology and evolutionary biology department. While the researchers were on site, temperatures dropped to 14 degrees Fahrenheit one night and spiked to 133 F the next day.
How the newfound organisms survive under such circumstances remains a mystery. Although Ryan, Schmidt and their colleagues looked for genes known to be involved in photosynthesis and peered into the cells using fluorescent techniques to look for chlorophyll, they couldn't find evidence that the microbes were photosynthetic.
Instead, they think the microbes might slowly generate energy by means of chemical reactions that extract energy and carbon from wisps of gases such as carbon monoxide and dimethylsulfide that blow into the desolate mountain area. The process wouldn't give the bugs a high-energy yield, Lynch said, but it could be enough as it adds up over time. A paper on the findings has been accepted by the Journal of Geophysical Research-Biogeosciences, published by the American Geophysical Union.
While normal soil has thousands of microbial species in just a gram of soil, and garden soils even more, remarkably few species have made their home in the barren Atacama mountain soil, the new research suggests. "To find a community dominated by less than 20 species is pretty amazing for a soil microbiologist," Schmidt said.
He has studied sites in the Peruvian Andes where, four years after a glacier retreats, there are thriving, diverse microbe communities. But on these volcanoes on the Chile-Argentina border, which rise to altitudes of more than 19,685 feet and which have been ice-free for 48,000 years, the bacterial and fungal ecosystems have not undergone succession to more diverse communities. "It's mostly due to the lack of water, we think," he said. "Without water, you're not going to develop a complex community."
"Overall, there was a good bit lower diversity in the Atacama samples than you would find in most soils, including other mountainous mineral soils," Lynch said. That makes the Atacama microbes very unusual, he added. They probably had to adapt to the extremely harsh environment, or may have evolved in different directions than similar organisms elsewhere due to long-term geographic isolation.
Growth on the mountain might be intermittent, Schmidt suggested, especially if soils only have water for a short time after snowfall. In those situations, there could be microbes that grow when it snows, then fall dormant, perhaps for years, before they grow again. High-elevation sites are great places to study simple microbial communities, ecosystems that haven't evolved past the very basics of a few bacteria and fungi, Schmidt said.
"There are a lot of areas in the world that haven't been studied from a microbial perspective, and this is one of the main ones," he said. "We're interested in discovering new forms of life, and describing what those organisms are doing, how they make a living."
Schmidt's lab, along with others, is studying how microorganisms travel from one site to another. One common method of microbe transport is through the air -- they're caught up in winds, sucked up into clouds, form rain droplets and then fall back to the ground somewhere else as precipitation.
But on mountains like Volcán Llullaillaco and Volcán Socompa, the high UV radiation and extreme temperatures make the landscape inhospitable to outside microbes. "This environment is so restrictive, most of those things that are raining down are killed immediately," Schmidt said. "There's a huge environmental filter here that's keeping most of these things from growing."
The next steps for the researchers are laboratory experiments using an incubator that can mimic the extreme temperature fluctuations to better understand how any organism can live in such an unfriendly environment. Studying the microbes and finding out how they can live at such an extreme can help set boundaries for life on Earth, Schmidt said, and tells scientists what life can stand. There's a possibility that some of the extremophiles might utilize completely new forms of metabolism, converting energy in a novel way.
Schmidt also is working with astrobiologists to model what past conditions were like on Mars. With their rocky terrain, thin atmosphere and high radiation, the Atacama volcanoes are some of the most similar places on Earth to the Red Planet.
"If we know, on Earth, what the outer limits for life were, and they know what the paleoclimates on Mars were like, we may have a better idea of what could have lived there," he said.
Read more at Science Daily
A new DNA analysis of rocky soils in the Martian-like landscape on some volcanoes in South America has revealed a handful of bacteria, fungi and other rudimentary organisms called archaea, which seem to have a different way of converting energy than their cousins elsewhere in the world.
"We haven't formally identified or characterized the species," said Ryan Lynch, a CU-Boulder doctoral student involved in the study. "But these are very different than anything else that has been cultured. Genetically, they're at least 5 percent different than anything else in the DNA database of 2.5 million sequences."
Life gets little encouragement on the incredibly dry slopes of the tallest volcanoes in the Atacama region, where CU-Boulder Professor Steve Schmidt and his team collected soil samples. Much of the sparse snow that falls on the terrain sublimates back to the atmosphere soon after it hits the ground, and the soil is so depleted of nutrients that nitrogen levels in the scientists' samples were below detection limits.
Ultraviolet radiation in the high-altitude environment can be twice as intense as in a low-elevation desert, said Schmidt of CU-Boulder's ecology and evolutionary biology department. While the researchers were on site, temperatures dropped to 14 degrees Fahrenheit one night and spiked to 133 F the next day.
How the newfound organisms survive under such circumstances remains a mystery. Although Ryan, Schmidt and their colleagues looked for genes known to be involved in photosynthesis and peered into the cells using fluorescent techniques to look for chlorophyll, they couldn't find evidence that the microbes were photosynthetic.
Instead, they think the microbes might slowly generate energy by means of chemical reactions that extract energy and carbon from wisps of gases such as carbon monoxide and dimethylsulfide that blow into the desolate mountain area. The process wouldn't give the bugs a high-energy yield, Lynch said, but it could be enough as it adds up over time. A paper on the findings has been accepted by the Journal of Geophysical Research-Biogeosciences, published by the American Geophysical Union.
While normal soil has thousands of microbial species in just a gram of soil, and garden soils even more, remarkably few species have made their home in the barren Atacama mountain soil, the new research suggests. "To find a community dominated by less than 20 species is pretty amazing for a soil microbiologist," Schmidt said.
He has studied sites in the Peruvian Andes where, four years after a glacier retreats, there are thriving, diverse microbe communities. But on these volcanoes on the Chile-Argentina border, which rise to altitudes of more than 19,685 feet and which have been ice-free for 48,000 years, the bacterial and fungal ecosystems have not undergone succession to more diverse communities. "It's mostly due to the lack of water, we think," he said. "Without water, you're not going to develop a complex community."
"Overall, there was a good bit lower diversity in the Atacama samples than you would find in most soils, including other mountainous mineral soils," Lynch said. That makes the Atacama microbes very unusual, he added. They probably had to adapt to the extremely harsh environment, or may have evolved in different directions than similar organisms elsewhere due to long-term geographic isolation.
Growth on the mountain might be intermittent, Schmidt suggested, especially if soils only have water for a short time after snowfall. In those situations, there could be microbes that grow when it snows, then fall dormant, perhaps for years, before they grow again. High-elevation sites are great places to study simple microbial communities, ecosystems that haven't evolved past the very basics of a few bacteria and fungi, Schmidt said.
"There are a lot of areas in the world that haven't been studied from a microbial perspective, and this is one of the main ones," he said. "We're interested in discovering new forms of life, and describing what those organisms are doing, how they make a living."
Schmidt's lab, along with others, is studying how microorganisms travel from one site to another. One common method of microbe transport is through the air -- they're caught up in winds, sucked up into clouds, form rain droplets and then fall back to the ground somewhere else as precipitation.
But on mountains like Volcán Llullaillaco and Volcán Socompa, the high UV radiation and extreme temperatures make the landscape inhospitable to outside microbes. "This environment is so restrictive, most of those things that are raining down are killed immediately," Schmidt said. "There's a huge environmental filter here that's keeping most of these things from growing."
The next steps for the researchers are laboratory experiments using an incubator that can mimic the extreme temperature fluctuations to better understand how any organism can live in such an unfriendly environment. Studying the microbes and finding out how they can live at such an extreme can help set boundaries for life on Earth, Schmidt said, and tells scientists what life can stand. There's a possibility that some of the extremophiles might utilize completely new forms of metabolism, converting energy in a novel way.
Schmidt also is working with astrobiologists to model what past conditions were like on Mars. With their rocky terrain, thin atmosphere and high radiation, the Atacama volcanoes are some of the most similar places on Earth to the Red Planet.
"If we know, on Earth, what the outer limits for life were, and they know what the paleoclimates on Mars were like, we may have a better idea of what could have lived there," he said.
Read more at Science Daily
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