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转录组分析探究了子实体发育过程中差异基因的表达。

Transcriptome Analysis Explored the Differential Genes' Expression During the Development of the Fruiting Body.

作者信息

Wang Cui, Zhang Xunjie, Zeng Zhiheng, Song Feifei, Lin Zhen, Chen Liangjun, Cai Zhixin

机构信息

Department of Health and Food, Fujian Vocational College of Bioengineering, Fuzhou, China.

Institute of Edible Mushroom, Fujian Academy of Agricultural Sciences, Fuzhou, China.

出版信息

Front Genet. 2022 Jun 29;13:924050. doi: 10.3389/fgene.2022.924050. eCollection 2022.

Abstract

(. ) is a fungus with great edible and nutritional values; however, the development mechanism of its fruiting body has not been studied. Thus, this study aimed to analyze the differentially expressed genes (DEGs) in four stages; primordia stage (Sra1), young mushroom stage (Sra2), picking stage (Sra3), and opening umbrella stage (Sra4). Therefore, total RNA was extracted for further RNA-sequencing analysis. In three pairwise comparison groups (PCGs), Sra1 vs. Sra2, Sra2 vs. Sra3, and Sra3 vs. Sra4, a total of 3,112 DEGs were identified among the three PCGs. A GO analysis of the DEGs showed that there were 21 terms significantly enriched in Sra1 vs. Sra2 PCG. There was no significantly enriched GO term in the other two PCGs. Furthermore, KEGG pathway analysis showed that these DEGs were mainly enriched in glucose and amino acid metabolisms. Moreover we found that intron retention (IR) and the alternative 3' splice site (A3SS) accounted for more than 80%. The development of the . fruiting body mainly involved glucose and amino acid metabolisms. IR and A3SS were the two main types of ASE, which played an important role in the development and maturation of the . fruiting body.

摘要

(.)是一种具有很高食用和营养价值的真菌;然而,其子实体的发育机制尚未得到研究。因此,本研究旨在分析四个阶段(原基期(Sra1)、幼菇期(Sra2)、采摘期(Sra3)和开伞期(Sra4))的差异表达基因(DEG)。因此,提取了总RNA用于进一步的RNA测序分析。在三个成对比较组(PCG),即Sra1与Sra2、Sra2与Sra3以及Sra3与Sra4中,在这三个PCG中共鉴定出3112个DEG。对这些DEG的GO分析表明,在Sra1与Sra2的PCG中有21个术语显著富集。在其他两个PCG中没有显著富集的GO术语。此外,KEGG通路分析表明,这些DEG主要富集在葡萄糖和氨基酸代谢中。而且我们发现内含子保留(IR)和可变3'剪接位点(A3SS)占比超过80%。(.)子实体的发育主要涉及葡萄糖和氨基酸代谢。IR和A3SS是可变剪接的两种主要类型,它们在(.)子实体的发育和成熟中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f490/9318406/abab2c335a61/fgene-13-924050-g001.jpg

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