4.7 Article

Comparative Transcriptome Analysis Reveals Hormone Signal Transduction and Sucrose Metabolism Related Genes Involved in the Regulation of Anther Dehiscence in Photo-Thermo-Sensitive Genic Male Sterile Wheat

Journal

BIOMOLECULES
Volume 12, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/biom12081149

Keywords

anther dehiscence; hormone; sucrose; male sterility; wheat

Funding

  1. National Natural Science Foundation of China [31872881]
  2. Foundation for Youths of BAAFS [QNJJ202212]
  3. Outstanding Scientist Cultivation Program of BAAFS [JKZX201907]
  4. National Science Foundation for Young Scientists of China [32001534]
  5. Postdoctoral Foundation of BAAFS [2021-ZZ-003]
  6. Natural Science Foundation of Beijing [6222016]

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This study analyzed the transcriptome of wheat PTGMS line BS366 during anther dehiscence under fertile and sterile conditions using RNA-sequencing. The differentially expressed genes (DEGs) were mainly related to hormone signal transduction pathway and starch and sucrose metabolism. qRT-PCR validation demonstrated the expression differences of critical DEGs in different conditions, suggesting their involvement in the regulation of anther dehiscence in BS366. A hypothesis model was proposed to reveal the regulation pathway of hormones and sucrose on anther dehiscence. These findings provide new insights into the molecular mechanisms of anther dehiscence in wheat and improve wheat hybrid breeding.
Anther dehiscence is an important process to release pollen and then is a critical event in pollination. In the wheat photo-thermo-sensitive genic male sterility (PTGMS) line, pollen cannot release from anther since the anther cannot dehisce during anther dehiscence stage in a sterile condition. In this study, we carried out RNA-sequencing to analyze the transcriptome of one wheat PTGMS line BS366 during anther dehiscence under fertile and sterile conditions to explore the mechanism. We identified 6306 differentially expressed genes (DEGs). Weighted gene co-expression network analysis (WGCNA) and KEGG analysis showed that DEGs were mainly related to hormone signal transduction pathway and starch and sucrose metabolism. We identified 35 and 23 DEGs related hormone signal transduction and sucrose metabolism, respectively. Compared with conventional wheat Jing411, there were some changes in the contents of hormones, including JA, IAA, BR, ABA and GA3, and sucrose, during three anther dehiscence stages in the sterile condition in BS366. We performed qRT-PCR to verify the expression levels of some critical DEGs of the hormone signaling pathway and the starch and sucrose metabolism pathway. The results showed disparate expression patterns of the critical DEGs of the hormone signaling pathway and the starch and sucrose metabolism pathway in different conditions, suggesting these genes may be involved in the regulation of the anther dehiscence in BS366. Finally, we conducted a hypothesis model to reveal the regulation pathway of hormones and sucrose on anther dehiscence. The information provided new clues to the molecular mechanisms of anther dehiscence in wheat and improved wheat hybrid breeding.

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