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首页> 外文期刊>Ecology and Evolution >Wood ants produce a potent antimicrobial agent by applying formic acid on tree-collected resin
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Wood ants produce a potent antimicrobial agent by applying formic acid on tree-collected resin

机译:木蚂蚁通过在树上收集的树脂上施加甲酸来产生有效的抗菌剂

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Abstract Wood ants fight pathogens by incorporating tree resin with antimicrobial properties into their nests. They also produce large quantities of formic acid in their venom gland, which they readily spray to defend or disinfect their nest. Mixing chemicals to produce powerful antibiotics is common practice in human medicine, yet evidence for the use of such ?¢????defensive cocktails?¢???? by animals remains scant. Here, we test the hypothesis that wood ants enhance the antifungal activity of tree resin by treating it with formic acid. In a series of experiments, we document that (i) tree resin had much higher inhibitory activity against the common entomopathogenic fungus Metarhizium brunneum after having been in contact with ants, while no such effect was detected for other nest materials; (ii) wood ants applied significant amounts of endogenous formic and succinic acid on resin and other nest materials; and (iii) the application of synthetic formic acid greatly increased the antifungal activity of resin, but had no such effect when applied to inert glass material. Together, these results demonstrate that wood ants obtain an effective protection against a detrimental microorganism by mixing endogenous and plant-acquired chemical defenses. In conclusion, the ability to synergistically combine antimicrobial substances of diverse origins is not restricted to humans and may play an important role in insect societies.
机译:摘要木蚁通过将具有抗菌特性的树状树脂掺入其巢穴中来对抗病原体。它们还在其毒腺中产生大量的甲酸,可以很容易地喷洒以保护或消毒其巢。在人类医学中,将化学品混合产生强大的抗生素是很常见的做法,但是有证据表明使用了这种“防御性鸡尾酒”。动物仍然很少。在这里,我们测试了以下假设:木蚁通过用甲酸处理来增强树状树脂的抗真菌活性。在一系列实验中,我们记录了(i)树状树脂与蚂蚁接触后对常见的昆虫病原真菌小白僵菌(Metrhizium brunneum)具有更高的抑制活性,而对于其他巢穴材料则没有发现这种抑制作用; (ii)木蚁在树脂和其他巢穴材料上施加了大量的内源性甲酸和琥珀酸; (iii)合成甲酸的应用大大提高了树脂的抗真菌活性,但当应用于惰性玻璃材料时则没有这种作用。总之,这些结果表明,木蚂蚁通过混合内源性和植物获得的化学防御获得了针对有害微生物的有效保护。总之,各种来源的抗菌物质协同结合的能力不仅限于人类,而且可能在昆虫社会中发挥重要作用。

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