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植物次生代谢物和温度决定了蚜虫种群中内共生菌 arsenophonus 的流行程度。

Plant secondary metabolite and temperature determine the prevalence of Arsenophonus endosymbionts in aphid populations.

机构信息

Department of Entomology, Nanjing Agricultural University, Nanjing, 210095, China.

出版信息

Environ Microbiol. 2022 Aug;24(8):3764-3776. doi: 10.1111/1462-2920.15929. Epub 2022 Feb 14.

Abstract

Transmission rate and role in hosts contribute to the prevalence of an endosymbiont. However, factors affecting transmission and role of facultative endosymbionts are still not well understood. Here, we illustrated that host plants and environmental temperatures affected the transmission, relative abundance and role of Arsenophonus in the cotton aphid Aphis gossypii. The transmission rate of this endosymbiont from mother aphids to offspring was relatively lower. High temperatures impeded the transmission, and infection rates declined as aphids were exposed to 30°C. Contents of amino acids and secondary metabolites were remarkably different among host plants. Aphids feeding on zucchini leaves containing a higher titre of amino acids and lower secondary metabolites harboured a relatively lower abundance of Arsenophonus. Concentrations of an amino acid and a plant secondary metabolite, cucurbitacin B, in aphid diet were not associated with Arsenophonus abundance. However, gossypol, another plant secondary metabolite, was strongly related with the abundance. Arsenophonus imparted a fitness benefit to aphids, and the benefit was dependent on host plants and gossypol concentration. In sum, plant secondary metabolite and environmental temperature affect transmission, relative abundance and role of Arsenophonus, which determine the endosymbiont prevalence in aphid populations.

摘要

传播率和在宿主中的作用有助于共生体的流行。然而,影响兼性共生体传播和作用的因素仍未得到很好的理解。在这里,我们说明了宿主植物和环境温度影响了棉蚜(Aphis gossypii)中阿普松氏菌(Arsenophonus)的传播、相对丰度和作用。这种内共生体从母蚜虫到后代的传播率相对较低。高温阻碍了传播,当蚜虫暴露在 30°C 时,感染率下降。氨基酸和次生代谢物的含量在宿主植物之间有显著差异。取食含有更高氨基酸和更低次生代谢物的南瓜叶片的蚜虫携带的阿普松氏菌相对较少。蚜虫饮食中的氨基酸和植物次生代谢物葫芦素 B 的浓度与阿普松氏菌丰度无关。然而,另一种植物次生代谢物棉酚与丰度有很强的相关性。阿普松氏菌赋予了蚜虫适应性优势,这种优势取决于宿主植物和棉酚浓度。总之,植物次生代谢物和环境温度影响阿普松氏菌的传播、相对丰度和作用,从而决定了共生体在蚜虫种群中的流行程度。

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