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Use of 1H Nuclear Magnetic Resonance To Measure Intracellular Metabolite Levels during Growth and Asexual Sporulation in Neurospora crassa▿†

机译:使用1H核磁共振来测量神经孢菌在生长和无性孢子形成过程中的细胞内代谢物水平

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摘要

Conidiation is an asexual sporulation pathway that is a response to adverse conditions and is the main mode of dispersal utilized by filamentous fungal pathogens for reestablishment in a more favorable environment. Heterotrimeric G proteins (consisting of α, β, and γ subunits) have been shown to regulate conidiation in diverse fungi. Previous work has demonstrated that all three of the Gα subunits in the filamentous fungus Neurospora crassa affect the accumulation of mass on poor carbon sources and that loss of gna-3 leads to the most dramatic effects on conidiation. In this study, we used 1H nuclear magnetic resonance (NMR) to profile the metabolome of N. crassa in extracts isolated from vegetative hyphae and conidia from cultures grown under conditions of high or low sucrose. We compared wild-type and Δgna-3 strains to determine whether lack of gna-3 causes a significant difference in the global metabolite profile. The results demonstrate that the global metabolome of wild-type hyphae is influenced by carbon availability. The metabolome of the Δgna-3 strain cultured on both high and low sucrose is similar to that of the wild type grown on high sucrose, suggesting an overall defect in nutrient sensing in the mutant. However, analysis of individual metabolites revealed differences in wild-type and Δgna-3 strains cultured under conditions of low and high sucrose.
机译:分生孢子是无性孢子形成途径,是对不利条件的反应,是丝状真菌病原体利用散布的主要模式,可以在更有利的环境中重建。异三聚体G蛋白(由α,β和γ亚基组成)已显示出可调节各种真菌中的构象的作用。先前的工作表明,丝状真菌芥菜神经孢子中的所有三个Gα亚基均会影响不良碳源上的物质积累,而gna-3的损失会导致对分生孢子的影响最大。在这项研究中,我们使用1 H核磁共振(NMR)描绘了从营养菌丝和分生孢子中分离的提取物中克雷萨猪笼草的代谢组,该蔗糖在高或低蔗糖条件下生长。我们比较了野生型和Δgna-3菌株,以确定是否缺乏gna-3是否会导致全球代谢物谱的显着差异。结果表明,野生型菌丝的全球代谢组受到碳利用率的影响。在高蔗糖和低蔗糖上培养的Δgna-3菌株的代谢组与在高蔗糖上生长的野生型的代谢组相似,表明该突变体在营养感测上存在总体缺陷。但是,对单个代谢物的分析显示,在低蔗糖和高蔗糖条件下培养的野生型和Δgna-3菌株存在差异。

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