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首页> 外文期刊>Nature reviews Drug discovery >Role of TRP channels and HSPs in thermal stress response in the aphid parasitoid Aphelinus asychis (Hymenoptera: Aphelinidae)
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Role of TRP channels and HSPs in thermal stress response in the aphid parasitoid Aphelinus asychis (Hymenoptera: Aphelinidae)

机译:TRP通道和HSP在蚜虫寄生虫APHELINUS Asychis中的热应力反应中的作用(Hymenoptera:aphelinidae)

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Aphelinus asychis is an important aphid endoparasitoid. Under field and greenhouse conditions, high temperature is one of the factors limiting the application of A. asychis for biological pest control. To explore the potential role of transient receptor potential (TRP) channels and heat shock proteins (HSPs) in this process, we identified 11 genes encoding TRP channels and nine genes encoding HSPs. Three proteins (AasyTRPA5, AasyPyrexia, AasyPainless) that belong to transient receptor potential ankyrin (TRPA) subfamily and nine HSPs are involved in the response to high temperature. We also investigated the survival of A. asychis and the response of the identified TRP channels and HSPs to high temperature. The results showed that the maximum temperature that allowed A. asychis survival was approximately 41 degrees C; females had higher survival rates than that of the males at 40 and 41 degrees C. Short-term heat-shock resulted in increased expression of Aasyshsp in males, and Aasyhsp40, Aasyhsp68, Aasyhsp70-4, Aasyhsp70-5 and Aasyhsp90 were upregulated and then downregulated, whereas Aasyhsp70-3 was upregulated at 41 degrees C. Moreover, Aasyhsp40 and Aasyhsp90 showed higher expression levels in females, while Aasyshsp and Aasyhsp70-3 presented opposite expression patterns. At temperature above 35 degrees C, expression of AasyPyrexia in females was significant higher than that in males, whereas AasyPainless and AasyTRPA5 presented higher expression in males at 40 and 41 degrees C, respectively. Altogether, these results indicate that protection against thermal stress in A. asychis is coordinated by TRP channels and HSPs. These findings provide a basis for understanding the potential mechanism of A. asychis in response to high temperatures.
机译:Aphelinus Asychis是一个重要的蚜虫内甲酰碱。在场和温室条件下,高温是限制A. Asychis用于生物害虫控制的因素之一。为了探讨瞬态受体电位(TRP)通道和热休克蛋白(HSP)在该过程中的潜在作用,我们鉴定了编码TRP通道的11个基因和编码HSP的九个基因。属于瞬态受体潜在的肛库(TRPA)亚家族和九个HSP的三种蛋白质(Aasytrpa5,含溶含油)涉及高温的响应。我们还研究了A asychis的存活率以及所识别的TRP通道和HSP对高温的响应。结果表明,允许A. Asychis存活率的最高温度约为41℃;女性的存活率高于40%和41摄氏度的雄性。短期热冲击导致αSyshsp在男性中的表达增加,而Aasyhsp40,Aasyhsp68,Aasyhsp70-4,AasyHSP70-5和AASYHSP90被上调,然后下调,而Aasyhsp70-3在41℃下升高。此外,Aasyhsp40和Aasyhsp90显示出女性的表达水平更高,而Aasyshsp和Aasyhsp70-3呈现出相反的表达模式。在高于35摄氏度的温度下,女性含有含有的含有含有的含油蛋白的表达显着高于雄性,而含亚型和Aasytrpa5分别在40%和41摄氏度下呈现出更高的表达。总共,这些结果表明,ASYSCHIS在TRP通道和HSPS协调的保护中的保护。这些发现提供了理解A. Asychis响应高温的潜在机制的基础。

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