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The homology gene BtDnmt1 is Essential for Temperature Tolerance in Invasive Bemisia tabaci Mediterranean Cryptic Species

机译:同源基因BtDnmt1对烟粉虱入侵的地中海隐性物种的温度耐受性至关重要

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摘要

The Bemisia tabaci Mediterranean (MED) cryptic species has been rapidly invading most parts of the world owing to its strong ecological adaptability, particularly its strong resistance to temperature stress. Epigenetic mechanisms play important roles in mediating ecological plasticity. In particular, DNA methylation has been the focus of attempts to understand the mechanism of phenotypic plasticity. The relationship between temperature and DNA methylation and how it affects the adaptability of invasive insects remain unknown. To investigate the temperature resistance role of DNA methyltransferase 1 (Dnmt1) in MED, we cloned and sequenced BtDnmt1 homology and identified its functions under various temperature conditions. The full-length cDNA of MED BtDnmt1 homology was 5,958 bp and has a 4,287 bp open reading frame that encodes a 1,428-amino-acid protein. BtDnmt1 mRNA expression levels were significantly down-regulated after feeding with dsRNA. Furthermore, after feeding with dsBtDnmt1, the MED adults exhibited significantly higher mortality under temperature stress conditions than the controls, suggesting that MED BtDnmt1 homology plays an essential role in the temperature tolerance capacity of MED. Our data improve our understanding of the temperature resistance and temperature adaptability mechanisms that have allowed the successful invasion and colonization of various environments by this alien species.
机译:由于其强大的生态适应性,特别是其对温度胁迫的强大抵抗力,烟粉虱(Bemisia tabaci Mediterranean(MED))的隐性物种已迅速入侵世界大部分地区。表观遗传机制在调节生态可塑性中起重要作用。特别是,DNA甲基化一直是试图了解表型可塑性机制的重点。温度和DNA甲基化之间的关系以及它如何影响入侵昆虫的适应性仍然未知。为了研究DNA甲基转移酶1(Dnmt1)在MED中的耐热作用,我们克隆并测序了BtDnmt1同源性,并确定了其在各种温度条件下的功能。 MED BtDnmt1同源性的全长cDNA是5958 bp,具有一个4287 bp的开放阅读框,编码一个1,428个氨基酸的蛋白质。饲喂dsRNA后,BtDnmt1 mRNA表达水平显着下调。此外,用dsBtDnmt1喂养后,MED成年人在温度胁迫条件下的死亡率比对照组高得多,这表明MED BtDnmt1同源性在MED的温度耐受能力中起着至关重要的作用。我们的数据提高了我们对耐热性和温度适应性机制的理解,这些机制已允许该外来物种成功入侵和定居各种环境。

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