首页> 外文期刊>Applied Microbiology >The Intermediates in Branched-Chain Amino Acid Biosynthesis Are Indispensable for Conidial Germination of the Insect-Pathogenic Fungus Metarhiziumrobertsii
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The Intermediates in Branched-Chain Amino Acid Biosynthesis Are Indispensable for Conidial Germination of the Insect-Pathogenic Fungus Metarhiziumrobertsii

机译:支链氨基酸生物合成中的中间体对于昆虫致病真菌元毛细血管的分析萌发是必不可少的

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Metarhizium spp. are well-known biocontrol agents used worldwide to control different insect pests. Keto-acid reductoisomerase (ILVC) is a key enzyme for branched-chain amino acid (BCAA) biosynthesis, and it regulates many physiological activities. However, its functions in insect-pathogenic fungi are poorly understood. In this work, we identified MrilvC in M. robertsii and dissected its roles in fungal growth, conidiation, germination, destruxin biosynthesis, environmental stress response, and insecticidal virulence. BCAA metabolism affects conidial yields and germination. However, BCAAs cannot recover the conidial germination of an MrilvC -deficient strain. Further feeding assays with intermediates showed that some conidia of the Δ MrilvC mutant start to germinate. Therefore, it is the germination defect that causes the complete failures of conidial penetration and pathogenicity in the Δ MrilvC mutant. In conclusion, we found intermediates in BCAA biosynthesis are indispensable for Metarhizium robertsii conidial germination. This study will advance our understanding of the fungal germination mechanism.IMPORTANCE Branched-chain amino acid (BCAA) metabolism plays a significant role in many biological activities beyond protein synthesis. Spore germination initiates the first stage of vegetative growth, which is critical for the virulence of pathogenic fungi. In this study, we demonstrated that the keto-acid reductoisomerase MrILVC, a key enzyme for BCAA biosynthesis, from the insect-pathogenic fungus Metarhizium robertsii is associated with conidial germination and fungal pathogenicity. Surprisingly, the germination of the Δ MrilvC mutant was restored when supplemented with the intermediates of BCAA metabolism rather than three BCAAs. The result was significantly different from that of plant-pathogenic fungi. Therefore, this report highlights that the intermediates in BCAA biosynthesis are indispensable for conidial germination of M. robertsii .
机译:Metarhizium spp。是全球使用的众所周知的生物管制剂,以控制不同的害虫。酮酸还原异构酶(ILVC)是支链氨基酸(BCAA)生物合成的关键酶,并调节许多生理活性。然而,其在昆虫致病真菌中的功能被理解得很差。在这项工作中,我们鉴定了M. Robertsii的MRILVC,解剖了其作用在真菌生长,结合,萌发,破坏生物合成,环境应激反应和杀虫毒力中。 BCAA新陈代谢影响分枝产量和发芽。然而,BCAA不能回收MRILVC -DEFIST菌株的分析萌发。具有中间体的进一步进料测定表明,δMRILVC突变体的一些分类开始发芽。因此,它是萌发缺陷,导致δmrILVC突变体中的结合渗透和致病性的完全失败。总之,我们发现BCAA生物合成中的中间体对于Metarhizium Robertsii分析萌发是必不可少的。该研究将推进我们对真菌萌发机制的理解。分枝链氨基酸(BCAA)代谢在超出蛋白质合成之外的许多生物学活动中起着重要作用。孢子萌发引发了营养生长的第一阶段,这对于致病真菌的毒力至关重要。在这项研究中,我们证明,来自昆虫致病菌性的BCAA生物合成的酮酸还原异构酶MRILVC是与昆虫致病性真菌组织罗伯希·罗伯索伊的分析萌发和真菌致病性有关。令人惊讶的是,当补充BCAA代谢而不是三个BCAA的中间体时,恢复ΔMRILVC突变体的发芽。结果与植物病原真菌的结果有显着差异。因此,本报告突出显示BCAA生物合成中的中间体对于M. Robertsii的分析萌发是必不可少的。

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