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Molecular characteristics of the HSP70 gene and its differential expression in female and male golden apple snails (Pomacea canaliculata) under temperature stimulation

机译:温度刺激下雌性和雄性金苹果蜗牛HSP70基因的分子特征及其差异表达

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摘要

Heat-shock protein 70 (HSP70) is one of the most important heat-shock proteins that helps organisms to modulate stress response via over-expression. The HSP70 gene from Pomacea canaliculata was cloned using the RACE approach; the gene is 2,767 bp in length and contains an open reading frame of 1,932 bp, which is encoded by a polypeptide of 643 amino acids. BLAST analysis showed that the predicted amino acid sequence of the P. canaliculata HSP70 gene shared a relatively high similarity with that of other known eukaryotic species that display conserved HSP characteristics. The phylogeny demonstrated a separate clustering of the apple snail HSP70 with other constitutive members from other mollusk species. Quantitative real-time RT-PCR was used to detect the differential expression of HSP70 in both sexes of P. canaliculata at different temperature conditions. These results showed that HSP70 transcript levels decreased slightly under cold shock and increased significantly under heat-shock conditions in both sexes compared to normal temperatures (26 °C). Under cold-shock treatment, the sex effect was not significant. With heat treatment, HSP70 expression could be induced at 36 °C in both females and males, and it peaked at 42 and 39 °C in females and males, respectively. In addition, a clear time-dependent HSP70 expression pattern of the apple snail exposed to the same high temperature (36 °C) was observed at different time points. The maximal induction of HSP70 expression appeared at 12 and 48 h in males and females after heat shock, respectively. The maximal induction in females was significantly higher compared to males under heat stimulus. Taken together, these results strongly suggested that males were more susceptible to heat than females and provided useful molecular information for the ecological adaptability of P. canaliculata against extreme environmental stress.
机译:热休克蛋白70(HSP70)是最重要的热休克蛋白之一,可帮助生物体通过过度表达调节应激反应。利用RACE方法克隆了来自Pomacea canaliculata的HSP70基因。该基因长度为2767 bp,包含一个1932 bp的开放阅读框,由643个氨基酸的多肽编码。 BLAST分析表明,P。canaliculata HSP70基因的预测氨基酸序列与其他已知的具有保守HSP特性的真核生物具有相对较高的相似性。系统发育学表明,苹果蜗牛HSP70与其他软体动物的其他组成成员是单独的簇。采用实时定量RT-PCR技术检测了在不同温度条件下小菜蛾(P. canaliculata)两性中HSP70的差异表达。这些结果表明,与正常温度(26°C)相比,男女冷热休克时HSP70转录水平均略有下降,而在热激条件下HSP70转录水平显着增加。在冷休克治疗下,性别影响不明显。热处理后,雌性和雄性均可在36°C诱导HSP70表达,雌性和雄性分别在42和39°C达到高峰。此外,在不同的时间点观察到了暴露于相同高温(36°C)的苹果蜗牛的清晰的HSP70表达模式。热休克后雄性和雌性分别在12h和48h出现HSP70表达的最大诱导。在热刺激下,雌性的最大诱导明显高于雄性。综上所述,这些结果强烈表明雄性比雌性更易受热,并为小菜蛾对极端环境胁迫的生态适应性提供了有用的分子信息。

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