Journal of Jilin University Science Edition ›› 2023, Vol. 61 ›› Issue (2): 426-436.

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Molecular Mechanism of Eeffect of sgf73 Gene Deletion on  Growth and Metabolism of Schizosaccharomyces pombe by Transcriptome Analysis

LIU Xinlan1, YE Ziyu2,  LU Yan2, HOU Yiling2, ZHOU Liqian2, PU Dihong2, DING Xiang1   

  1. 1. College of Environmental Science and Engineering,  China West Normal University,  Nanchong 637009, Sichuan Province, China;   2. Key Laboratory of Southwest China Wildlife Resources Conservation of the Ministry  of Education, College of Life Science,  China West Normal University,  Nanchong 637009, Sichuan Province, China
  • Received:2022-06-11 Online:2023-03-26 Published:2023-03-26

Abstract: In order to study the key genes and key metabolic pathways after the sgf73 gene was knocked out in Schizosaccharomyces pombe,  the wild\|type yeast strains and sgf73Δ  gene-deficient strains were sequenced and bioinformatics analyzed by RNA-Seq sequencing technology, and the GO and KEGG functional enrichment analysis were carried out.  The results show that in the sgf73Δ gene-deficient strains,  there are 1 834 highly expressed genes,  including 6 extremely highly expressed genes,  and 1 714 differentially expressed genes,  of which 934 genes are up-regulated and 780 genes are down-regulated. The  sgf73 gene knockout leads to  abnormal changes in cellular metabolism and transmembrane transport. The  down-regulation of cki1,cki2 and cdc25 genes involved in cycle regulation in the MAPK signaling pathway leads to prolongation of mitotic time in sgf73Δ strain,  the down-regulation of regulatory cytoskeleton rgf2,rho1 and stt4 genes leads to abnormal contraction  of actin ring of  sgf73Δ strain.

Key words: Schizosaccharomyces pombe,  , RNA-Seq sequencing,  , sgf73 gene,  , differentially expressed genes (DEGs),  , MAPK signaling pathway

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