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Comparative proteomic analysis reveals the regulatory network of the veA gene during asexual and sexual spore development of Aspergillus cristatus

机译:比较蛋白质组学分析揭示了在曲霉无性和无性孢子发育过程中veA基因的调控网络

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摘要

Aspergillus cristatus is the predominant fungal population during fermentation of Chinese Fuzhuan brick tea, and belongs to the homothallic fungal group that undergoes a sexual stage without asexual conidiation under hypotonic conditions, while hypertonic medium induces initiation of the asexual stage and completely blocks sexual development. However, the veA deletion mutant only produces conidia in hypotonic medium after a 24-h culture, but both asexual and sexual spores are observed after 72 h. The veA gene is one of the key genes that positively regulates sexual and negatively regulates asexual development in A. cristatus. To elucidate the molecular mechanism of how VeA regulates asexual and sexual spore development in A. cristatus, 2D electrophoresis (2-DE) combined with MALDI-tandem ToF MS analysis were applied to identify 173 differentially expressed proteins (DEPs) by comparing the agamotype (24 h) and teleomorph (72 h) with wild-type (WT) A. cristatus strains. Further analysis revealed that the changed expression pattern of Pmk1-MAPK and Ser/Thr phosphatase signaling, heat shock protein (Hsp) 90 (HSP90), protein degradation associated, sulphur-containing amino acid biosynthesis associated, valine, leucine, isoleucine, and arginine biosynthesis involved, CYP450 and cytoskeletal formation associated proteins were involved in the production of conidia in agamotype of A. cristatus. Furthermore, the deletion of veA in A. cristatus resulted in disturbed process of transcription, translation, protein folding, amino acid metabolism, and secondary metabolism. The carbohydrate and energy metabolism were also greatly changed, which lied in the suppression of anabolism through pentose phosphate pathway (PPP) but promotion of catabolism through glycolysis and tricarboxylic acid (TCA) cycle. The energy compounds produced in the agamotype were mainly ATP and NADH, whereas they were NADPH and FAD in the teleomorph. These results will contribute to the existing knowledge on the complex role of VeA in the regulation of spore development in Aspergillus and provide a framework for functional investigations on the identified proteins.
机译:曲霉曲霉是中国福砖砖茶发酵过程中的主要真菌种群,属于在低渗条件下经历无性无性繁殖的有性阶段的同型真菌群,而高渗介质诱导无性繁殖的开始并完全阻止性发育。但是,veA缺失突变体在培养24小时后仅在低渗培养基中产生分生孢子,但在72 h后观察到无性和有性孢子。 veA基因是积极调节性,负调节无花果无性发育的关键基因之一。为了阐明VeA如何调节cr.cristatus中无性和有性孢子发育的分子机制,通过比较agamotype(2A电泳(2-DE)和MALDI串联ToF MS分析来鉴定173种差异表达蛋白(DEP)。野生型(WT)的A. cristatus菌株24小时)和远变体(72小时)。进一步的分析表明,Pmk1-MAPK和Ser / Thr磷酸酶信号传导,热休克蛋白(Hsp)90(HSP90),蛋白质降解相关,含硫氨基酸生物合成相关,缬氨酸,亮氨酸,异亮氨酸和精氨酸的表达模式发生了变化。由于参与了生物合成,CYP450和细胞骨架形成相关蛋白参与了拟南芥无性型分生孢子的产生。此外,cr。a。cristatus中veA的缺失导致转录,翻译,蛋白质折叠,氨基酸代谢和次级代谢过程受干扰。碳水化合物和能量代谢也发生了很大变化,这主要是通过磷酸戊糖途径(PPP)抑制了合成代谢,但通过糖酵解和三羧酸(TCA)循环促进了分解代谢。 agamotype中产生的能量化合物主要是ATP和NADH,而在远晶型中它们是NADPH和FAD。这些结果将有助于了解有关VeA在曲霉孢子发育调控中的复杂作用的现有知识,并为鉴定蛋白质的功能研究提供框架。

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