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首页> 外文期刊>Cell stress & chaperones >Response of heat shock protein genes of the oriental fruit moth under diapause and thermal stress reveals multiple patterns dependent on the nature of stress exposure
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Response of heat shock protein genes of the oriental fruit moth under diapause and thermal stress reveals multiple patterns dependent on the nature of stress exposure

机译:滞育和热胁迫下东方果蛾热休克蛋白基因的响应揭示了多种模式,取决于胁迫暴露的性质

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Heat shock protein gene (Hsp) families are thought to be important in thermal adaptation, but their expression patterns under various thermal stresses have still been poorly characterized outside of model systems. We have therefore characterized Hsp genes and their stress responses in the oriental fruit moth (OFM), Grapholita molesta, a widespread global orchard pest, and compared patterns of expression in this species to that of other insects. Genes from four Hsp families showed variable expression levels among tissues and developmental stages. Members of the Hsp40, 70, and 90 families were highly expressed under short exposures to heat and cold. Expression of Hsp40, 70, and Hsc70 family members increased in OFM undergoing diapause, while Hsp90 was downregulated. We found that there was strong sequence conservation of members of large Hsp families (Hsp40, Hsp60, Hsp70, Hsc70) across taxa, but this was not always matched by conservation of expression patterns. When the large Hsps as well as small Hsps from OFM were compared under acute and ramping heat stress, two groups of sHsps expression patterns were apparent, depending on whether expression increased or decreased immediately after stress exposure. These results highlight potential differences in conservation of function as opposed to sequence in this gene family and also point to Hsp genes potentially useful as bioindicators of diapause and thermal stress in OFM.
机译:热休克蛋白基因(Hsp)家族被认为在热适应中很重要,但是在模型系统之外,它们在各种热应力下的表达模式仍然很差。因此,我们已经鉴定了Hsp基因及其在东方果蛾(Grapholita molesta)(一种普遍的全球果园害虫)中的胁迫反应,并将该物种中的表达模式与其他昆虫进行了比较。来自四个Hsp家族的基因在组织和发育阶段显示出可变的表达水平。 Hsp40、70和90家庭的成员在短暂受热和受冷的情况下受到高度表达。在滞育的OFM中,Hsp40、70和Hsc70家族成员的表达增加,而Hsp90被下调。我们发现整个类群中的大型Hsp家族成员(Hsp40,Hsp60,Hsp70,Hsc70)具有很强的序列保守性,但这并不总是与表达模式的保守性相匹配。当比较来自OFM的大Hsps和小Hsps在急性和渐增热胁迫下时,两组sHsps表达模式是明显的,具体取决于应力暴露后表达是增加还是减少。这些结果突出了与该基因家族中的序列相反的功能保守性的潜在差异,并且还指出了Hsp基因潜在地可用作OFM中的滞育和热应激的生物指标。

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