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Functional Analysis of the Nitrogen Metabolite Repression Regulator Gene nmrA in Aspergillus flavus

机译:黄曲霉中氮代谢抑制调节基因nmrA的功能分析

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摘要

In Aspergillus nidulans, the nitrogen metabolite repression (NMR) regulator NmrA plays a major role in regulating the activity of the GATA transcription factor AreA during nitrogen metabolism. However, the function of nmrA in A. flavus has not been previously studied. Here, we report the identification and functional analysis of nmrA in A. flavus. Our work showed that the amino acid sequences of NmrA are highly conserved among Aspergillus species and that A. flavus NmrA protein contains a canonical Rossmann fold motif. Deletion of nmrA slowed the growth of A. flavus but significantly increased conidiation and sclerotia production. Moreover, seed infection experiments indicated that nmrA is required for the invasive virulence of A. flavus. In addition, the ΔnmrA mutant showed increased sensitivity to rapamycin and methyl methanesulfonate, suggesting that nmrA could be responsive to target of rapamycin signaling and DNA damage. Furthermore, quantitative real-time reverse transcription polymerase chain reaction analysis suggested that nmrA might interact with other nitrogen regulatory and catabolic genes. Our study provides a better understanding of NMR and the nitrogen metabolism network in fungi.
机译:在构巢曲霉中,氮代谢物阻抑(NMR)调节剂NmrA在氮代谢过程中起着调节GATA转录因子AreA活性的重要作用。但是,nmrA在黄曲霉中的功能尚未得到研究。在这里,我们报告黄曲霉nmrA的鉴定和功能分析。我们的工作表明,NmrA的氨基酸序列在曲霉属物种中高度保守,而黄曲霉NmrA蛋白包含典型的Rossmann折叠基序。 nmrA的删除减慢了黄曲霉的生长,但显着增加了分生孢子和菌核的产生。此外,种子感染实验表明,nmrA是黄曲霉侵袭性所必需的。此外,ΔnmrA突变体显示出对雷帕霉素和甲磺酸甲酯的敏感性增加,表明nmrA可能对雷帕霉素信号转导靶标和DNA损伤有反应。此外,实时定量逆转录聚合酶链反应分析表明,nmrA可能与其他氮调节和分解代谢基因相互作用。我们的研究为真菌中的NMR和氮代谢网络提供了更好的理解。

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