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在肥须亚麻蝇(Ssarcophaga crassipalpis)蛹滞育期间,诱导型hsp70转录本而非同源形式出现发育上调。

Developmental upregulation of inducible hsp70 transcripts, but not the cognate form, during pupal diapause in the flesh fly, Ssarcophaga crassipalpis.

作者信息

Rinehart J P, Yocum G D, Denlinger D L

机构信息

Department of Entomology, The Ohio State University, 103 Botany and Zoology Building, 1735 Neil Avenue, Columbus 43210, USA.

出版信息

Insect Biochem Mol Biol. 2000 Jun;30(6):515-21. doi: 10.1016/s0965-1748(00)00021-7.

Abstract

Partial clones of the Sarcophaga crassipalpis heat shock protein 70 (hsp70) and of heat shock cognate 70 (hsc70) were developed by RT-PCR and library screening respectively. These clones were used to probe total RNA northern blots for the expression of transcripts in response to high and low temperature stress and in conjunction with the entry into an overwintering pupal diapause. In nondiapausing individuals, hsp70 was highly expressed in response to a 40 degrees C heat shock, while hsc70 was unaffected by the heat stress. In contrast, both hsp70 and hsc70 were upregulated in nondiapausing flies following a -10 degrees C cold shock. In diapausing pupae, hsp70 was highly upregulated during diapause, even at a non-stress temperature of 20 degrees C. Upregulation was initiated at the onset of diapause and persisted throughout diapause. During diapause, heat shock did not further elevate the level of hsp70 expression. Within 12 h after diapause was terminated, hsp70 ceased to be expressed. The expression of hsc70 was unaltered by diapause. The developmental regulation of hsp70 in relation to diapause suggests a critical role for this stress protein during insect dormancy.

摘要

分别通过逆转录聚合酶链反应(RT-PCR)和文库筛选技术,获得了肥须亚麻蝇热休克蛋白70(hsp70)和热休克同源蛋白70(hsc70)的部分克隆。利用这些克隆对总RNA进行Northern杂交,以检测转录本在高温和低温胁迫下以及进入越冬蛹滞育过程中的表达情况。在非滞育个体中,hsp70在40℃热休克时高表达,而hsc70不受热胁迫影响。相反,在非滞育果蝇中,-10℃冷休克后hsp70和hsc70均上调。在滞育蛹中,即使在20℃的非胁迫温度下,hsp70在滞育期间也高度上调。上调在滞育开始时启动,并在整个滞育期间持续。在滞育期间,热休克并未进一步提高hsp70的表达水平。滞育终止后12小时内,hsp70停止表达。滞育对hsc70的表达没有影响。hsp70在滞育过程中的发育调控表明,这种应激蛋白在昆虫休眠期间起着关键作用。

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