首页> 外文期刊>Archives of Microbiology >Addition of exogenous carbon and nitrogen sources to aphid exuviae modulates synthesis of proteases and chitinase by germinating conidia of Beauveria bassiana
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Addition of exogenous carbon and nitrogen sources to aphid exuviae modulates synthesis of proteases and chitinase by germinating conidia of Beauveria bassiana

机译:通过将球孢白僵菌的分生孢子萌发,将外源碳源和氮源添加到蚜虫类葡萄球菌中,可以调节蛋白酶和几丁质酶的合成。

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Secretion of catabolic extracellular enzymes (ECE) is the hallmark of the infection of insects through the cuticle by entomopathogenic fungi (EPF). In this paper, we show that germinating conidia of Beauveria bassiana (Bb) regulate the synthesis of ECE through a multiple control mode during the initial stages of germination. We tested Bb conidial growth on aphid exuviae with or without supplementation of additional carbon and/or nitrogen (C/N) compounds. To understand the interrelation between conidial germination during growth, the synthesis of ECE activity, free amino nitrogen (FAN), glucose and fungal dry weight biomass were measured. Immediately (0.25 h) upon incubation of conidia, activity of subtilisin-like Pr1 and trypsin-like Pr2 enzymes and chitinase (NAGase) was observed in the culture filtrates. At 0.25 h, addition of exogenous C-source resulted in higher activities of Pr1 and Pr2, respectively. Conversely at 0.25 h, addition of N-sources repressed the synthesis of Pr2, but that of Pr1. C/N repression was observed only for exponentially growing mycelia. NAGase activity remained at basal level and unaffected by added C/N. We conclude that C/N repression occurs only when it is necessary for the Bb infective structures to establish a nutritional relationship with the host structures.
机译:分解代谢的细胞外酶(ECE)的分泌是昆虫被病原性真菌(EPF)通过表皮感染的标志。在本文中,我们显示了球孢白僵菌(Bb)的萌发分生孢子在发芽初期通过多种控制模式调节ECE的合成。我们在添加或不添加其他碳和/或氮(C / N)化合物的情况下,测试了Bb孢子在蚜虫exuviae上的生长。为了了解分生孢子萌发之间的相互关系,测量了ECE活性,游离氨基氮(FAN),葡萄糖和真菌干重生物量的合成。分生孢子温育后立即(0.25 h),在培养滤液中观察到枯草杆菌蛋白酶样Pr1和胰蛋白酶样Pr2酶以及几丁质酶(NAGase)的活性。在0.25小时,添加外源碳源分别导致Pr1和Pr2的较高活性。相反,在0.25小时,添加N源会抑制Pr2的合成,但会抑制Pr1的合成。仅对指数增长的菌丝体观察到了C / N抑制。 NAGase活性保持在基础水平,不受C / N的影响。我们得出结论,只有当Bb感染结构必须与宿主结构建立营养关系时,才会发生C / N抑制。

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