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热应激诱导杀虫剂抗性和敏感[昆虫]中[相关基因或蛋白]的表达 。(原文中“and”前后内容缺失,翻译不太完整准确,这是根据现有内容尽量完善的译文)

Heat stress-induced expression of and in insecticide-resistant and -susceptible .

作者信息

Wang Yu, Wang Jing Nan, Chen Xue Zhun, Hu Qi Xing, Liu Qi Qing, Wu Gang

机构信息

Key Laboratory of Biopesticide and Chemical Biology (Ministry of Education), Fujian Agriculture and Forestry University, Fuzhou, China.

出版信息

Bull Entomol Res. 2020 Apr;110(2):177-184. doi: 10.1017/S0007485319000543. Epub 2019 Sep 27.

Abstract

p53, DNA damage regulated gene (PDRG) and apoptosis-stimulating p53 protein 2 (ASPP2) are p53-related genes which can promote apoptosis. The full-length cDNA sequence of the Px-pdrg and Px-aspp2 genes were characterized and their mRNA expression dynamics under heat stress were studied in diamondback moth (DBM) Plutella xylostella collected from Fuzhou, China. The full-length cDNA of Px-pdrg and Px-aspp2 spans 721 and 4201 bp, containing 395 and 3216 bp of the open reading frame, which encode a putative protein comprising 130 and 1072 amino acids with a calculated molecular weight of 14.58 and 118.91 kDa, respectively. As compared to 25°C, both Px-pdrg and Px-aspp2 were upregulated in chlorpyrifos-resistant (Rc) and -susceptible (Sm) strains of DBM adults and pupae under heat stress. In addition, Rc DBM showed a significantly higher expression level of Px-pdrg and Px-aspp2 in contrast to Sm DBM. The results indicate that high temperature can significantly promote apoptosis process, especially in Rc-DBM. Significant fitness cost in Rc-DBM might be associated with drastically higher transcript abundance of Px-pdrg and Px-aspp2 under the heat stress.

摘要

p53、DNA损伤调节基因(PDRG)和凋亡刺激蛋白p53-2(ASPP2)是与p53相关的基因,可促进细胞凋亡。对采自中国福州的小菜蛾中Px-pdrg和Px-aspp2基因的全长cDNA序列进行了表征,并研究了它们在热胁迫下的mRNA表达动态。Px-pdrg和Px-aspp2的全长cDNA分别为721和4201 bp,包含395和3216 bp的开放阅读框,分别编码一个由130和1072个氨基酸组成的假定蛋白,计算分子量分别为14.58和118.91 kDa。与25°C相比,在热胁迫下,小菜蛾成虫和蛹的抗毒死蜱(Rc)和敏感(Sm)品系中Px-pdrg和Px-aspp2均上调。此外,与Sm小菜蛾相比,Rc小菜蛾中Px-pdrg和Px-aspp2的表达水平显著更高。结果表明,高温可显著促进细胞凋亡过程,尤其是在Rc小菜蛾中。Rc小菜蛾显著的适合度代价可能与热胁迫下Px-pdrg和Px-aspp2的转录丰度大幅升高有关。

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