4.7 Article

Genome-Wide Analysis of the Banana WRKY Transcription Factor Gene Family Closely Related to Fruit Ripening and Stress

期刊

PLANTS-BASEL
卷 11, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/plants11050662

关键词

WRKY; banana; stress; expression analysis

资金

  1. Hainan Provincial Natural Science Foundation of China [319MS091]
  2. National Nonprofit Institute Research Grant of CATAS [1630052020006]
  3. China Agriculture Research System of MOF and MARA [CARS-31]

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This study identified members of the WRKY transcription factor family in the Musa acuminata genome and categorized them into three subfamilies. Expression analysis showed that most WRKY transcription factors exhibited diverse expression patterns during fruit development, ripening, and in response to various stressors.
WRKY transcription factors (TFs) play an important role in plant responses to biotic and abiotic stress as well as in plant growth and development. In the present study, bioinformatics methods were used to identify members of the WRKY transcription factor family in the Musa acuminata (DH-Pahang) genome (version 2). A total of 164 MaWRKYs were identified and phylogenetic analysis showed that MaWRKYs could be categorized into three subfamilies. Overall, the 162 MaWRKYs were distributed on 11 chromosomes, and 2 genes were not located on the chromosome. There were 31 collinear genes from segmental duplication and 7 pairs of genes from tandem duplication. RNA-sequencing was used to analyze the expression profiles of MaWRKYs in different fruit development, ripening stages, under various abiotic and biotic stressors. Most of the MaWRKYs showed a variety of expression patterns in the banana fruit development and ripening stages. Some MaWRKYs responded to abiotic stress, such as low temperature, drought, and salt stress. Most differentially expressed MaWRKYs were downregulated during banana's response to Foc TR4 infection, which plays an important role in physiological regulation to stress. Our findings indicate that MaWRKY21 directly binds to the W-box of the MaICS promoter to decrease MaICS transcription and then reduce the enzyme activity. These studies have improved our understanding of the molecular basis for the development and stress resistance of an important banana variety.

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