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采取防御措施会有效果吗?——季节性平衡选择、温度和寄生蜂塑造了豌豆蚜现实世界中的保护性共生菌动态。

Does getting defensive get you anywhere?-Seasonal balancing selection, temperature, and parasitoids shape real-world, protective endosymbiont dynamics in the pea aphid.

作者信息

Smith Andrew H, O'Connor Michael P, Deal Brooke, Kotzer Coleman, Lee Amanda, Wagner Barrett, Joffe Jonah, Woloszynek Stephen, Oliver Kerry M, Russell Jacob A

机构信息

Department of Biology, Drexel University, Philadelphia, PA, USA.

Department of Biodiversity, Earth, and Environmental Science, Drexel University, Philadelphia, PA, USA.

出版信息

Mol Ecol. 2021 May;30(10):2449-2472. doi: 10.1111/mec.15906. Epub 2021 Apr 20.

Abstract

Facultative, heritable endosymbionts are found at intermediate prevalence within most insect species, playing frequent roles in their hosts' defence against environmental pressures. Focusing on Hamiltonella defensa, a common bacterial endosymbiont of aphids, we tested the hypothesis that such pressures impose seasonal balancing selection, shaping a widespread infection polymorphism. In our studied pea aphid (Acyrthosiphon pisum) population, Hamiltonella frequencies ranged from 23.2% to 68.1% across a six-month longitudinal survey. Rapid spikes and declines were often consistent across fields, and we estimated that selection coefficients for Hamiltonella-infected aphids changed sign within this field season. Prior laboratory research suggested antiparasitoid defence as the major Hamiltonella benefit, and costs under parasitoid absence. While a prior field study suggested these forces can sometimes act as counter-weights in a regime of seasonal balancing selection, our present survey showed no significant relationship between parasitoid wasps and Hamiltonella prevalence. Field cage experiments provided some explanation: parasitoids drove modest ~10% boosts to Hamiltonella frequencies that would be hard to detect under less controlled conditions. They also showed that Hamiltonella was not always costly under parasitoid exclusion, contradicting another prediction. Instead, our longitudinal survey - and two overwintering studies - showed temperature to be the strongest predictor of Hamiltonella prevalence. Matching some prior lab discoveries, this suggested that thermally sensitive costs and benefits, unrelated to parasitism, can shape Hamiltonella dynamics. These results add to a growing body of evidence for rapid, seasonal adaptation in multivoltine organisms, suggesting that such adaptation can be mediated through the diverse impacts of heritable bacterial endosymbionts.

摘要

兼性遗传内共生菌在大多数昆虫物种中的感染率处于中等水平,在宿主抵御环境压力方面发挥着重要作用。以蚜虫常见的细菌内共生菌汉密尔顿ella defensa为研究对象,我们验证了这样一种假说:这些压力会施加季节性平衡选择,形成广泛的感染多态性。在我们研究的豌豆蚜(Acyrthosiphon pisum)种群中,在为期六个月的纵向调查中,汉密尔顿ella的频率在23.2%至68.1%之间波动。田间的快速波动和下降通常是一致的,我们估计在这个田间季节里,感染汉密尔顿ella的蚜虫的选择系数会发生正负变化。先前的实验室研究表明,抵御寄生蜂是汉密尔顿ella的主要益处,而在没有寄生蜂的情况下存在代价。虽然之前的一项田间研究表明,这些力量有时会在季节性平衡选择机制中起到制衡作用,但我们目前的调查显示,寄生蜂与汉密尔顿ella的感染率之间没有显著关系。田间网笼实验提供了一些解释:寄生蜂使汉密尔顿ella的频率适度提高了约10%,在控制较差的条件下很难检测到这种变化。实验还表明,在排除寄生蜂的情况下,汉密尔顿ella并不总是有代价的,这与另一个预测相矛盾。相反,我们的纵向调查以及两项越冬研究表明,温度是汉密尔顿ella感染率的最强预测因素。这与之前一些实验室的发现相符,表明与寄生无关的对温度敏感的成本和益处可以影响汉密尔顿ella的动态变化。这些结果为多化性生物的快速季节性适应提供了越来越多的证据,表明这种适应可以通过可遗传的细菌内共生菌的多种影响来介导。

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