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Colonisation and competition dynamics can explain incomplete sterilisation parasitism in ant-plant symbioses

机译:定植和竞争动力学可以解释蚂蚁-植物共生体中不完全的绝育寄生

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摘要

Sterilisation of parasites prevents host reproduction, thereby diverting host resources to their own benefit. Previous theory predicts that parasites should evolve maximum virulence, yet hosts are often incompletely sterilised. Whereas prior attempts to resolve this paradox have sought evolutionary explanations, we present theory and experiments showing that incomplete sterilisation can arise from ecologically driven fluctuations in parasite load. The African ant-plant Acacia drepanolobium reproduced more when occupied by small colonies of the sterilising symbiont Crematogaster nigriceps. In nature, small colonies result from interference competition between ant colonies; these territorial conflicts thus provide intermittent windows of opportunity for host reproduction. Our mean-field model shows that numerical insufficiency of parasites can produce partial sterilisation of host populations, creating the appearance of reduced virulence even if ants have evolved to sterilise completely. This general framework helps explain both the apparent ubiquity of partial sterilisation parasitism and the ability of these symbiotic associations to persist.
机译:寄生虫的灭菌会阻止宿主繁殖,从而使宿主资源挪用自己。先前的理论预测,寄生虫应发展出最大的毒力,但宿主通常未完全灭菌。尽管先前试图解决这一悖论的尝试都寻求了进化的解释,但是我们提出的理论和实验表明,不完全灭菌可能是由寄生虫负荷的生态驱动波动引起的。非洲蚂蚁植物相思树被无菌共生小克氏菌的小菌落占据时繁殖更多。在自然界中,小殖民地是蚂蚁殖民地之间的竞争竞争所致。这些领土冲突因此为宿主繁殖提供了间歇性的机会之窗。我们的平均场模型表明,寄生虫的数量不足会导致宿主种群部分灭菌,即使蚂蚁进化为完全灭菌也能降低毒力。这个总体框架有助于解释部分绝育寄生虫的表面普遍性以及这些共生关联持续存在的能力。

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