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构巢曲霉对可溶性钾缺乏反应的基因表达全景

A Global View of Gene Expression of Aspergillus nidulans on Responding to the Deficiency in Soluble Potassium.

作者信息

Xiao Leilei, Sun Qibiao, Lian Bin

机构信息

Jiangsu Key Laboratory for Microbes and Functional Genomics, Jiangsu Engineering and Technology Research Center for Microbiology, College of Life Sciences, Nanjing Normal University, Nanjing, 210023, Jiangsu, China.

Key Laboratory of Coastal Biology and Utilization, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai, 264003, Shandong, China.

出版信息

Curr Microbiol. 2016 Apr;72(4):410-9. doi: 10.1007/s00284-015-0963-y. Epub 2015 Dec 22.

Abstract

Many researchers have suggested that microbes can accelerate the weathering of silicate minerals. However, many genes and metabolic pathways related to microorganisms obtaining potassium (K) from silicate remain undiscovered. It is feasible to detect the gene expression within the scope of the whole genome through high-throughput sequencing. Surprisingly, only a few reports have shown fungal weathering of silicate using this technology. This study explored differences in gene expression of Aspergillus nidulans, which was cultured with different K sources, KCl, and K-feldspar. A. nidulans RNA was extracted by the construction of a cDNA library. Identification of K-acquisition-related genes with GO and KEGG pathway analysis revealed that primarily differentially expressed genes were related to the biosynthesis of amino acids. When these genes were grouped in accordance with the physiological functions, the genes involved in the synthesis of protease, ribosome, and mitochondria, trans-membrane transport, and oxidative phosphorylation were significantly different. Moreover, 20 genes selected were further tested using RT-qPCR. One half (10 genes) exhibited differential expression, which was consistent with the results of RNA-seq. Combining the results of RNA-seq and RT-qPCR, we summarised a possible way to obtain mineral K in A. nidulans as well. The differentially expressed genes and their associated metabolic pathways revealed will improve the understanding of the molecular mechanisms of microbial weathering of silicate minerals.

摘要

许多研究人员认为,微生物能够加速硅酸盐矿物的风化。然而,许多与微生物从硅酸盐中获取钾(K)相关的基因和代谢途径仍未被发现。通过高通量测序在全基因组范围内检测基因表达是可行的。令人惊讶的是,只有少数报告显示利用该技术对硅酸盐进行真菌风化。本研究探讨了用不同钾源(氯化钾和钾长石)培养的构巢曲霉基因表达的差异。通过构建cDNA文库提取构巢曲霉RNA。利用基因本体论(GO)和京都基因与基因组百科全书(KEGG)通路分析对与钾获取相关的基因进行鉴定,结果显示主要的差异表达基因与氨基酸的生物合成有关。当根据生理功能对这些基因进行分组时,参与蛋白酶、核糖体和线粒体合成、跨膜运输以及氧化磷酸化的基因存在显著差异。此外,对选取的20个基因进一步采用逆转录定量聚合酶链反应(RT-qPCR)进行检测。其中一半(10个基因)表现出差异表达,这与RNA测序结果一致。结合RNA测序和RT-qPCR的结果,我们总结出了构巢曲霉获取矿物钾的一种可能途径。所揭示的差异表达基因及其相关代谢途径将增进对硅酸盐矿物微生物风化分子机制的理解。

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