Genes encoding heat shock proteins in the endoparasitoid wasp, Cotesia chilonis, and their expression in response to temperatures

热休克蛋白 生物 互补DNA 基因 热休克蛋白60 内含子 热冲击 分子生物学 冷冲击域 基因表达 冷应激 遗传学 热休克蛋白70 核糖核酸
作者
Dandan Pan,Shuang-Shuang Cao,Ming‐Xing Lu,San-bao HANG,Yu‐Zhou Du
出处
期刊:Journal of Integrative Agriculture [Elsevier BV]
卷期号:17 (5): 1012-1022 被引量:23
标识
DOI:10.1016/s2095-3119(17)61737-4
摘要

Five genes encoding heat shock proteins (HSPs), Cchsp40, Cchsp60, Cchsp70, Cchsc70 and Cchsp90, were cloned and sequenced from Cotesia chilonis using RT-PCR and RACE. The cDNA sequences of Cchsp40, Cchsp60, Cchsp70, Cchsc70 and Cchsp90 were 1 265, 2 551, 2 094, 2 297 and 2 635 bp in length, respectively, with a molecular weight (MW) of 39.1, 60.6, 71.45, 70.19 and 82.92 kDa, respectively. The predicted amino acid sequences of these proteins showed high similarities with published HSPs of other insects in Hymenoptera. Analysis of genomic DNAs indicated that Cchsp40, Cchsp60, Cchsp70 and Cchsp90 lacked introns, but Cchsc70 contained an intron. The results also suggested that CcHSP40 in C. chilonis was the Type II HSP40, CcHSP60 was a member of the mitochondrial HSP60 family, and CcHSP90 was a part of cytoplasmic HSP90A family. Expression patterns varied in the five Cchsps in response to temperature. Expression of Cchsp40 and Cchsp60 was induced significantly by cold but not heat stress. Cchsp70 and Cchsc70 showed similar response to the thermal stress and could be induced by both cold and heat, but their expression levels were consistently lower than that of Cchsp40 and Cchsp60. Cchsp90 could be induced by heat stress and mild cold, but not cold stress. In addition, the results demonstrated Cchsc70 might be constitutive and inducible protein that was expressed during normal cell functioning and also up-regulated in response to stressful stimuli while Cchsp70 was solely inducible protein induced by temperature changes. Overall, results generated from this study could significantly advance the understanding of Cchsps in response to temperature and provide important biological information for C. chilonis insects that reared under different temperatures.

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