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Rapid spread of the defensive endosymbiont Spiroplasma in Drosophila hydei under high parasitoid wasp pressure

机译:高寄生虫黄蜂压力下果蝇的防御性endosymbiont螺旋状肌肉快速传播

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摘要

Maternally transmitted endosymbionts of insects are ubiquitous in nature and play diverse roles in the ecology and evolution of their hosts. To persist in host lineages, many symbionts manipulate host reproduction to their advantage (e. g. cytoplasmic incompatibility and male-killing), or confer fitness benefits to their hosts (e. g. metabolic provisioning and defense against natural enemies). Recent studies suggest that strains of the bacterial genus Spiroplasma protect their host (flies in the genus Drosophila) against parasitoid attack. The Spiroplasma-conferred protection is partial and flies surviving a wasp attack have reduced adult longevity and fecundity. Therefore, it is unclear whether protection against wasps alone can counter Spiroplasma loss by imperfect maternal transmission and any possible fitness costs to harboring Spiroplasma. To address this question, we conducted a population cage study comparing Spiroplasma frequencies over time (host generations) under conditions of high wasp pressure and no wasp pressure. A dramatic increase of Spiroplasma prevalence was observed under high wasp pressure. In contrast, Spiroplasma prevalence in the absence of wasps did not change significantly over time; a pattern consistent with random drift. Thus, the defensive mechanism may contribute to the high prevalence of Spiroplasma in host populations despite imperfect vertical transmission.
机译:母体传播的昆虫的内酯是无处不在的,并在其主持人的生态和演变中发挥不同的角色。为了持续到主机谱系,许多共生操纵主机再现到它们的优势(例如细胞质不相容性和男性杀戮),或者对其主持人的赋予健身利益(例如,代谢供应和防御自然敌人)。最近的研究表明,细菌属的菌株螺皮肌肉保护其宿主(果蝇在果蝇属中)免受寄生虫发作。螺旋类赋予的保护是偏袒的,苍蝇幸存下来的是成人寿命和繁殖力。因此,目前尚不清楚对单独的黄蜂的保护是否可以通过不完美的母体传输和窝藏螺旋状物的任何可能的健身成本来利用螺旋状损失。为了解决这个问题,我们在高黄蜂压力和无黄色压力的条件下,进行了一项人口笼式研究比较时间(宿主世代)的时间(主持人)。在高黄蜂压力下观察到螺旋血糖患病率的显着增加。相比之下,在没有WASP的情况下,螺皮血汗普及率随着时间的推移而没有显着变化;与随机漂移一致的模式。因此,尽管垂直传输不完美,但防御机制可能有助于宿主群中螺皮螺皮的普及率。

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