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Flexible metabolism in Metarhizium anisopliae and Beauveria bassiana: role of the glyoxylate cycle during insect pathogenesis

机译:柔软性代谢在Metarhizium Anisopliae和Beauveria bassiana:甘油酯循环在昆虫发病机制期间的作用

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Insect pathogenic fungi such as Metarhizium anisopliae and Beauveria bassiana have an increasing role in the control of agricultural insect pests and vectors of human diseases. Many of the virulence factors are well studied but less is known of the metabolism of these fungi during the course of insect infection or saprobic growth. Here, we assessed enzyme activity and gene expression in the central carbon metabolic pathway, including isocitrate dehydrogenase, aconitase, citrate synthase, malate synthase (MLS) and isocitrate lyase (ICL), with particular attention to the glyoxylate cycle when M. anisopliae and B. bassiana were grown under various conditions. We observed that ICL and MLS, glyoxylate cycle intermediates, were upregulated during growth on 2-carbon compounds (acetate and ethanol) as well as in insect haemolymph. We fused the promoter of the M. anisopliae ICL gene (Ma-icl) to a marker gene (mCherry) and showed that Ma-icl was upregulated when M. anisopliae was grown in the presence of acetate. Furthermore, Ma-icl was upregulated when fungi were engulfed by insect haemocytes as well as during appressorium formation. Addition of the ICL inhibitor 3-nitroproprionate delayed conidial germination and inhibited appressorium formation. These results show that these insect pathogenic fungi have a flexible metabolism that includes the glyoxylate cycle as an integral part of germination, pathogenesis and saprobic growth.
机译:昆虫致病性真菌,如Metarhizium Anisopliae和Beauveria Bassiana在控制农业害虫和人类疾病载体中具有越来越大的作用。许多毒力因子进行了很好的研究,但在昆虫感染或皂生长过程中,这些真菌的代谢较低。在此,我们评估中央碳代谢途径中的酶活性和基因表达,包括异柠檬酸脱氢酶,浅析酶,柠檬酸酯合酶,苹果酸合酶(MLS)和异柠檬酸裂解酶(ICL),特别注意当M.Anisopliae和B时对乙醛酸循环循环。 。巴西亚人在各种条件下种植。我们观察到ICL和MLS,甘油酯循环中间体在2-碳化合物(乙酸盐和乙醇)以及昆虫血小麦体上进行上调。我们将M.Anisopliae ICL基因(MA-ICL)的启动子融为标记基因(MCHERRY)并显示了当在乙酸盐存在下生长氨基次肌片的时,上调MA-ICL。此外,当真菌被昆虫血细胞和沉淀形成期间吞噬真菌时,MA-ICL被上调。添加ICL抑制剂3-硝力加法延迟分析萌发和抑制抑制沉淀。这些结果表明,这些昆虫致病性真菌具有柔性代谢,其包括拟甲氧基化循环作为发芽,发病和皂生长的组成部分。

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