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Genetically altering the expression of neutral trehalase gene affects conidiospore thermotolerance of the entomopathogenic fungus Metarhizium acridum

机译:遗传改变中性海藻糖酶基因的表达会影响昆虫病原性真菌Meta蚊的分生孢子耐热性

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Background The entomopathogenic fungus Metarhizium acridum has been used as an important biocontrol agent instead of insecticides for controlling crop pests throughout the world. However, its virulence varies with environmental factors, especially temperature. Neutral trehalase (Ntl) hydrolyzes trehalose, which plays a role in environmental stress response in many organisms, including M. acridum. Demonstration of a relationship between Ntl and thermotolerance or virulence may offer a new strategy for enhancing conidiospore thermotolerance of entomopathogenic fungi through genetic engineering. Results We selected four Ntl over-expression and four Ntl RNA interference (RNAi) transformations in which Ntl expression is different. Compared to the wild-type, Ntl mRNA expression was reduced to 35-66% in the RNAi mutants and increased by 2.5-3.5-fold in the over-expression mutants. The RNAi conidiospores exhibited less trehalase activity, accumulated more trehalose, and were much more tolerant of heat stress than the wild-type. The opposite effects were found in conidiospores of over-expression mutants compared to RNAi mutants. Furthermore, virulence was not altered in the two types of mutants compared to the wild type. Conclusions Ntl controlled trehalose accumulation in M. acridum by degrading trehalose, and thus affected conidiospore thermotolerance. These results offer a new strategy for enhancing conidiospore thermotolerance of entomopathogenic fungi without affecting virulence.
机译:背景技术在世界范围内,昆虫病原性真菌a螨已被用作重要的生物防治剂,而不是用于控制农作物害虫的杀虫剂。但是,其毒性随环境因素(尤其是温度)而变化。中性海藻糖酶(Ntl)水解海藻糖,海藻糖在许多生物中都在环境应激反应中发挥作用,包括a霉。 Ntl与耐热性或毒力之间关系的证明可能为通过基因工程增强昆虫病原真菌的分生孢子耐热性提供了新的策略。结果我们选择了四个Ntl过表达和四个Ntl表达不同的Ntl RNA干扰(RNAi)转化。与野生型相比,在RNAi突变体中Ntl mRNA表达降低至35-66%,而在过表达突变体中增加2.5-3.5倍。与野生型相比,RNAi分生孢子的海藻糖酶活性较低,海藻糖积累较多,并且对热胁迫的耐受性更高。与RNAi突变体相比,在过表达突变体的分生孢子孢子中发现了相反的作用。此外,与野生型相比,在两种类型的突变体中毒力没有改变。结论Ntl通过降解海藻糖来控制cri藜中海藻糖的积累,从而影响分生孢子的耐热性。这些结果提供了新的策略来增强昆虫病原真菌的分生孢子耐热性而不影响毒力。

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