Ants clean their nest box with formic acid. Special paper that turns pink on contact with acids was used to see when and how much formic acid the ants spray. |
Many ants produce highly acidic chemicals from specialized glands in their body. For a long time, researchers assumed that ants only spray this poison, which is made mostly of formic acid, to fight other ants and would-be predators. But in two studies published in 2013 and 2018, Sylvia Cremer and her team showed that ants use acidic chemicals to disinfect nest-mates contaminated and infected with pathogens. In the current study, published by Pull et al., Cremer's research team show that Lasius neglectus ants also spray their nests prophylactically with their acidic poison, likely ensuring that the nest is clean for first-time occupancy. But, given the poison doubles-up as a chemical weapon, the use of the poison within the nest raises further questions, as Sylvia Cremer explains: "How can ants spray this aggressive acid in their nest, whilst leaving their sensitive brood in the acidic fog?" Whilst adult ants are protected from the poison by a thick skin (the cuticle) and eggs by a protective "shell" (the corion), the cuticle of the pupae is thin and fragile, and so very susceptible to damage. However, pupae of the Lasius neglectus species are also covered in a silk cocoon, which Pull et al hypothesized may offer them protection.
Through a series of experiments, the research team searched for the answer. First, they removed the protective silk cocoon from some pupae and found that these nude pupae survived just as well alone as pupae wrapped in a cocoon. But when they placed nude pupae and worker ants into a nest together, more nude pupae died than cocooned pupae. Is the increased death a result of the acidic poison? To test this, the researchers glued shut the poison glands of the worker ants with superglue. "We created a 'functional knock-out' ant by creating animals that could not spray formic acid," explains Cremer. In a nest with ants unable to spray their acid, nude and wrapped pupae had the same chance of survival. "So it is the formic acid that kills nude pupae, but pupae in a cocoon are protected from it," Cremer concludes -- and we behave similarly: "When we use harmful cleaning products, we protect ourselves with gloves. The cocoon has a similar function to protective gloves."
The current study provides the first example at colony level of so-called immunopathology, a phenomenon also known from the human immune system. The immune system often fights pathogens with toxic substances, but at the same time, it must limit damage to its own body cells. The immune system, therefore, faces the challenge of fighting pathogens as aggressively as possible, while protecting the body's own cells and organs from collateral damage. The same happens in ants on the colony level: they protect the most sensitive parts of their colony from the harmful side effects of cleaning with a caustic poison.
Read more at Science Daily
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