Transcriptome and Differentially Expressed Gene Profiles in Mycelium, Primordium and Fruiting Body Development in Stropharia rugosoannulata
文献类型: 外文期刊
作者: Hao, Haibo 1 ; Zhang, Jinjing 1 ; Wang, Qian 1 ; Huang, Jianchun 1 ; Juan, Jiaxiang 1 ; Kuai, Benke 2 ; Feng, Zhiyong 1 ; Chen, Hui 1 ;
作者机构: 1.Shanghai Acad Agr Sci, Natl Res Ctr Edible Fungi Biotechnol & Engn, Inst Edible Fungi,Minist Agr,Shanghai Key Lab Agr, Key Lab Appl Mycol Resources & Utilizat, Shanghai 201403, Peoples R China
2.Fudan Univ, State Key Lab Genet Engn, Shanghai 200438, Peoples R China
3.Fudan Univ, Fudan Ctr Genet Divers & Designing Agr, Sch Life Sci, Inst Plant Biol, Shanghai 200438, Peoples R China
4.Nanjing Agr Univ, Coll Life Sci, Nanjing 210095, Peoples R China
关键词: Stropharia rugosoannulata; differentially expressed genes; carbohydrate enzyme genes; environmental factors; transcription factors; fruiting body development
期刊名称:GENES ( 影响因子:4.141; 五年影响因子:4.474 )
ISSN:
年卷期: 2022 年 13 卷 6 期
页码:
收录情况: SCI
摘要: Stropharia rugosoannulata uses straw as a growth substrate during artificial cultivation and has been widely promoted in China. However, its fruiting body formation and development processes have not been elucidated. In this study, the developmental transcriptomes were analyzed at three stages: the mycelium (G-S), primordium (P-S) and fruiting body (M-F) stages. A total of 9690 differentially expressed genes (DEGs) were identified in the different developmental stages. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses showed that these DEGs were involved mainly in hydrolase activity, structural molecule activity and oxidoreductase activity as well as xenobiotic biodegradation and metabolism and energy metabolism pathways. We further found that the higher expression of most carbohydrate enzyme (i.e., GH, CE, CBM, AA and PL) genes in the hyphal (i.e., G-S) stage was related mainly to substrate degradation, while the upregulation of glycosyltransferase (GT) gene expression in the P-S and M-F stages may be related to cell wall synthesis. In addition, we found that CO2-sensing-related genes (i.e., CA-2, CA-3, PKA-1 and PKA-2) were upregulated in the P-S and M-F stages, heat shock protein genes (HSP60 and HSP90) were significantly downregulated in the P-S stage and upregulated in the M-F stage and the transcription factors (i.e., steA, MYB, nosA, HAP1, and GATA-4/5/6) involved in growth and development were significantly upregulated in the P-S stage. These results suggest that environmental factors (i.e., CO2 and temperature) and transcription factors may play a key role in primordium formation. In short, this study provides new insights into the study of stimulating primordia formation affecting the development of fruiting bodies of S. rugosoannulata.
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