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Transcriptome Analysis and Its Application in Identifying Genes Associated with Fruiting Body Development in Basidiomycete Hypsizygus marmoreus

机译:转录组分析及其在鉴定马氏担子菌Hypsizygus marmoreus子实体发育相关基因中的应用

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摘要

To elucidate the mechanisms of fruit body development in H. marmoreus, a total of 43609521 high-quality RNA-seq reads were obtained from four developmental stages, including the mycelial knot (H-M), mycelial pigmentation (H-V), primordium (H-P) and fruiting body (H-F) stages. These reads were assembled to obtain 40568 unigenes with an average length of 1074 bp. A total of 26800 (66.06%) unigenes were annotated and analyzed with the Kyoto Encyclopedia of Genes and Genomes (KEGG), Gene Ontology (GO), and Eukaryotic Orthologous Group (KOG) databases. Differentially expressed genes (DEGs) from the four transcriptomes were analyzed. The KEGG enrichment analysis revealed that the mycelium pigmentation stage was associated with the MAPK, cAMP, and blue light signal transduction pathways. In addition, expression of the two-component system members changed with the transition from H-M to H-V, suggesting that light affected the expression of genes related to fruit body initiation in H. marmoreus. During the transition from H-V to H-P, stress signals associated with MAPK, cAMP and ROS signals might be the most important inducers. Our data suggested that nitrogen starvation might be one of the most important factors in promoting fruit body maturation, and nitrogen metabolism and mTOR signaling pathway were associated with this process. In addition, 30 genes of interest were analyzed by quantitative real-time PCR to verify their expression profiles at the four developmental stages. This study advances our understanding of the molecular mechanism of fruiting body development in H. marmoreus by identifying a wealth of new genes that may play important roles in mushroom morphogenesis.
机译:为了阐明H. marmoreus子实体发育的机制,从四个发育阶段(包括菌丝体结(HM),菌丝体色素沉着(HV),原基(HP)和子实体(HF)阶段。组装这些读段以获得平均长度为1074bp的40568个单基因。共有26800(66.06%)个单基因被注释并通过《京都基因与基因组百科全书》(KEGG),基因本体论(GO)和真核直系同源基因组(KOG)数据库进行了分析。分析了来自四个转录组的差异表达基因(DEG)。 KEGG富集分析显示菌丝体色素沉着阶段与MAPK,cAMP和蓝光信号转导途径相关。此外,两组分系统成员的表达随从H-M到H-V的转变而改变,这表明光影响了与马尔默螺旋藻中子实体起始相关的基因的表达。在从H-V过渡到H-P的过程中,与MAPK,cAMP和ROS信号相关的应激信号可能是最重要的诱导剂。我们的数据表明,氮饥饿可能是促进子实体成熟的最重要因素之一,而氮代谢和mTOR信号通路与此过程有关。另外,通过定量实时PCR分析了30个目的基因,以验证它们在四个发育阶段的表达谱。这项研究通过鉴定可能在蘑菇形态发生中起重要作用的大量新基因,提高了我们对马氏毛果子实体发育的分子机制的理解。

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