Chilo suppressalis 中一种诱导型 HSP70 基因的特征及在环境和生物压力下的表达。

Cell Stress and Chaperones Pub Date : 2020-01-01 Epub Date: 2019-12-02 DOI:10.1007/s12192-019-01047-2
Peng Gao, Ming-Xing Lu, Dan-Dan Pan, Yu-Zhou Du
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引用次数: 0

摘要

高度保守的热休克蛋白 70(HSP70)有助于细胞水平的生存,并大大提高了许多生物的抗逆性。在这项研究中,我们分离并鉴定了 Cshsp702,它编码水稻二化螟抑制型 HSP70 的一种诱导形式。Cshsp702 不含内含子;翻译产物由 629 个氨基酸组成,等电点为 5.69。实时定量 PCR 显示,Cshsp702 在血细胞中的表达量最高,而在中肠中的表达量最低。Cshsp702 在一系列温度(-11 至 43 °C)下的表达表明,极冷和极热的温度会显著诱导 Cshsp702 的表达,在 42 °C下 2 小时后表达量最大。还研究了 Cshsp702 对内寄生虫 Cotesia chilonis 的诱导作用;有趣的是,C. suppressalis 中的 Cshsp702 表达在 24 小时和 5 天时被显著诱导,而这两个时间分别对应于 C. chilonis 摄食和生长的预测时间。本文讨论了 Cshsp702 作为寄生虫应激引起的炎症反应的潜在诱导作用。总之,Cshsp702 是对环境和生物胁迫的诱导反应,并在抑尾蝇蛆的生理适应过程中发挥着重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of an inducible HSP70 gene in Chilo suppressalis and expression in response to environmental and biological stress.

The highly conserved heat shock protein 70 (HSP70) contributes to survival at a cellular level and greatly enhances stress tolerance in many organisms. In this study, we isolate and characterize Cshsp702, which encodes an inducible form of HSP70 in the rice stem borer, Chilo suppressalis. Cshsp702 does not contain introns; the translational product is comprised of 629 amino acids with an isoelectric point of 5.69. Real-time quantitative PCR revealed that Cshsp702 was expressed at maximal levels in hemocytes and was minimally expressed in the midgut. Expression of Cshsp702 in response to a range of temperatures (-11 to 43 °C) indicated significant induction by extreme cold and hot temperatures, with maximum expression after 2 h at 42 °C. The induction of Cshsp702 in response to the endoparasite Cotesia chilonis was also studied; interestingly, Cshsp702 expression in C. suppressalis was significantly induced at 24 h and 5 days, which correspond to predicted times of C. chilonis feeding and growth, respectively. The potential induction of Cshsp702 as an inflammatory response due to parasitic stress is discussed. In conclusion, Cshsp702 is induced in response to both environmental and biotic stress and plays an important role in the physiological adaptation of C. suppressalis.

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