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脱水诱导调节[具体生物]中的中肠感染。 (注:原文中“in.”后内容缺失,导致翻译不够完整准确)

Dehydration induced regulates midgut infection in .

作者信息

Accoti Anastasia, Becker Margaret, Abu Angel Elma I, Vulcan Julia, Yun Ruimei, Widen Steven, Sylla Massamba, Popov Vsevolod L, Weaver Scott C, Dickson Laura B

出版信息

bioRxiv. 2023 Oct 12:2023.10.11.561962. doi: 10.1101/2023.10.11.561962.

Abstract

In the face of climate change, mosquitoes will experience evolving climates including longer periods of drought. An important physiological response to dry environments is the protection against water loss or dehydration, here defined as desiccation tolerance. Various environmental factors including temperature are known to alter interactions between the mosquito, , and the arboviruses it transmits, but little is known about how low humidity impacts arboviral infection. Here, we report that a gene upregulated in response to desiccation is important for controlling midgut infection. We have identified two genetically diverse lines of with marked differences in desiccation tolerance. To understand if the genetic basis underlying desiccation tolerance is the same between the contrasting lines, we compared gene expression profiles between desiccant treated and non-desiccant treated individuals in both the desiccation tolerant and susceptible lines by RNAseq. Gene expression analysis demonstrates that different genes are differentially expressed in response to desiccation stress between desiccation tolerant and susceptible lines. The most highly expressed transcript under desiccation stress in the desiccation susceptible line encodes a peritrophin protein, Per50. Peritrophins play a crucial role in peritrophic matrix formation after a bloodmeal. Gene silencing of Per50 by RNAi demonstrates that expression of Per50 is required for survival of the desiccation susceptible line under desiccation stress, but not for the desiccation tolerant line. Moreover, the knockdown of Per50 results in higher infection rates and viral replication rates of ZIKV and higher infection rates of CHIKV. Finally, following a bloodmeal, the desiccation susceptible line develops a thicker peritrophic matrix than the desiccation tolerant line. Together these results provide a functional link between the protection against desiccation and midgut infection which has important implications in predicting how climate change will impact mosquito-borne viruses.

摘要

面对气候变化,蚊子将经历不断变化的气候,包括更长时间的干旱期。对干燥环境的一种重要生理反应是防止水分流失或脱水,这里定义为耐干燥性。已知包括温度在内的各种环境因素会改变蚊子与其传播的虫媒病毒之间的相互作用,但关于低湿度如何影响虫媒病毒感染却知之甚少。在此,我们报告一个因应对干燥而上调的基因对于控制中肠感染很重要。我们已经鉴定出两个在耐干燥性方面有显著差异的基因多样化品系。为了了解耐干燥性的遗传基础在这两个对比品系之间是否相同,我们通过RNA测序比较了耐干燥品系和敏感品系中经干燥剂处理和未经干燥剂处理的个体之间的基因表达谱。基因表达分析表明,在耐干燥品系和敏感品系中,不同的基因对干燥胁迫有不同的表达差异。在干燥敏感品系中,干燥胁迫下表达量最高的转录本编码一种围食膜蛋白Per50。围食膜蛋白在吸血后围食膜的形成中起关键作用。通过RNA干扰使Per50基因沉默表明,在干燥胁迫下,Per50的表达是干燥敏感品系存活所必需的,但对耐干燥品系则不是。此外,敲低Per50会导致寨卡病毒(ZIKV)的感染率和病毒复制率升高,以及基孔肯雅病毒(CHIKV)的感染率升高。最后,吸血后,干燥敏感品系形成的围食膜比耐干燥品系更厚。这些结果共同揭示了耐干燥性与中肠感染之间的功能联系,这对于预测气候变化将如何影响蚊媒病毒具有重要意义。

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Dehydration-induced regulates midgut infection in mosquitoes.脱水诱导调节蚊子中肠感染。
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