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Sanitizing the fortress: protection of ant brood and nest material by worker antibiotics.

机译:对堡垒进行消毒:通过工人抗生素保护蚁窝和巢状材料。

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摘要

Social groups are at particular risk for parasite infection, which is heightened in eusocial insects by the low genetic diversity of individuals within a colony. To combat this, adult ants have evolved a suite of defenses to protect each other, including the production of antimicrobial secretions. However, it is the brood in a colony that are most vulnerable to parasites because their individual defenses are limited, and the nest material in which ants live is also likely to be prone to colonization by potential parasites. Here, we investigate in two ant species whether adult workers use their antimicrobial secretions not only to protect each other but also to sanitize the vulnerable brood and nest material. We find that, in both leaf-cutting ants and weaver ants, the survival of the brood was reduced and the sporulation of parasitic fungi from them increased, when the workers nursing them lacked functional antimicrobial-producing glands. This was the case for both larvae that were experimentally treated with a fungal parasite ( Metarhizium) and control larvae which developed infections of an opportunistic fungal parasite ( Aspergillus). Similarly, fungi were more likely to grow on the nest material of both ant species if the glands of attending workers were blocked. The results show that the defense of brood and sanitization of nest material are important functions of the antimicrobial secretions of adult ants and that ubiquitous, opportunistic fungi may be a more important driver of the evolution of these defenses than rarer, specialist parasites.
机译:社会群体特别容易受到寄生虫感染的危险,在正常社会的昆虫中,由于殖民地内个体的遗传多样性低,这种感染加剧了。为了解决这个问题,成年蚂蚁进化出一套防御系统,以保护彼此,包括产生抗菌素分泌物。但是,由于其个体的防御能力有限,最容易受到寄生虫侵害的是殖民地的巢穴,而蚂蚁所生活的巢穴材料也很容易被潜在的寄生虫定殖。在这里,我们研究了两种蚂蚁物种,成年工人是否使用其抗菌素分泌不仅可以互相保护,还可以对脆弱的巢穴和巢穴材料进行消毒。我们发现,在切叶蚁和织叶蚁中,当护理它们的工人缺少产生功能性抗菌素的工人时,育雏的存活率降低,寄生真菌的孢子形成增加。对于用真菌寄生虫(金属根)进行实验处理的幼虫和发生机会性真菌寄生虫(曲霉)感染的对照幼虫都是这种情况。同样,如果阻塞了工人的腺体,则真菌更可能在两种蚂蚁的巢状材料上生长。结果表明,育雏巢的防御和巢物质的消毒是成年蚂蚁抗菌分泌的重要功能,并且与稀有的专业寄生虫相比,无处不在的机会性真菌可能是这些防御进化的重要驱动力。

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