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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Up-regulation of heat shock proteins is essential for cold survival during insect diapause
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Up-regulation of heat shock proteins is essential for cold survival during insect diapause

机译:热休克蛋白的上调对于昆虫滞育期间的寒冷生存至关重要

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摘要

Diapause, the dormancy common to overwintering insects, evokes a unique pattern of gene expression. In the flesh fly, most, but not all, of the fly's heat shock proteins (Hsps) are up-regulated. The diapause up-regulated Hsps include two members of the Hsp70 family, one member of the Hsp60 family (TCP-1), at least four members of the small Hsp family, and a small Hsp pseudogene. Expression of an Hsp70 cognate, Hsc70, is uninfluenced by diapause, and Hsp90 is actually down-regulated during diapause, thus diapause differs from common stress responses that elicit synchronous up-regulation of all Hsps. Up-regulation of the Hsps begins at the onset of diapause, persists throughout the overwintering period, and ceases within hours after the fly receives the signal to reinitiate development. The up-regulation of Hsps appears to be common to diapause in species representing diverse insect orders including Diptera, Lepidoptera, Coleoptera, and Hymenoptera as well as in diapauses that occur in different developmental stages (embryo, larva, pupa, adult). Suppressing expression of Hsp23 and Hsp70 in flies by using RNAi did not alter the decision to enter diapause or the duration of diapause, but it had a profound effect on the pupa's ability to survive low temperatures. We thus propose that up-regulation of Hsps during diapause is a major factor contributing to cold-hardiness of overwintering insects.
机译:滞育是越冬昆虫常见的休眠方式,它唤起了独特的基因表达模式。在果蝇中,大多数但不是全部的果蝇的热激蛋白(Hsps)被上调。滞育上调的Hsps包括Hsp70家族的两名成员,Hsp60家族(TCP-1)的一名成员,Hsp小家族的至少四名成员和小Hsp假基因。滞育不会影响Hsp70同源基因Hsc70的表达,滞育期间Hsp90实际上会下调,因此滞育不同于引起所有Hsps同步上调的常见应激反应。 Hsps的上调始于滞育开始,在整个越冬期间持续,并在果蝇收到重新启动发育的信号后数小时内停止。 Hsps的上调似乎是滞育在代表各种昆虫纲(包括双翅目,鳞翅目,鞘翅目和膜翅目)的物种中以及在不同发育阶段(胚,幼虫,pu,成虫)发生的滞育中普遍存在的。通过使用RNAi抑制果蝇中Hsp23和Hsp70的表达并没有改变进入滞育的决定或滞育的持续时间,但是它对to的低温生存能力产生了深远的影响。因此,我们提出滞育期间Hsps的上调是导致越冬昆虫的抗寒性的主要因素。

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