1. Overexpression of UGT74E2, an Arabidopsis IBA Glycosyltransferase, Enhances Seed Germination and Modulates Stress Tolerance via ABA Signaling in Rice
- Author
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Shang-Hui Jin, Pan Li, Ting Wang, Bing-Kai Hou, Yan-Jie Li, Guang-Rui Dong, Chengchao Zheng, Tian-Jiao Mu, and Ting-ting Chen
- Subjects
0106 biological sciences ,0301 basic medicine ,Arabidopsis ,indole-3-butyric acid ,drought ,01 natural sciences ,abscisic acid ,lcsh:Chemistry ,chemistry.chemical_compound ,Plant Growth Regulators ,Gene Expression Regulation, Plant ,Gene expression ,salt ,Abscisic acid ,lcsh:QH301-705.5 ,Spectroscopy ,chemistry.chemical_classification ,biology ,food and beverages ,General Medicine ,Plants, Genetically Modified ,Droughts ,Computer Science Applications ,Cell biology ,Germination ,Seeds ,glycosylation ,Article ,Catalysis ,Inorganic Chemistry ,03 medical and health sciences ,Stress, Physiological ,Auxin ,UDP-glycosyltransferases ,Glycosyltransferase ,Physical and Theoretical Chemistry ,Molecular Biology ,Gene ,Indoleacetic Acids ,Organic Chemistry ,fungi ,Glycosyltransferases ,Oryza ,biology.organism_classification ,Indole-3-butyric acid ,030104 developmental biology ,chemistry ,lcsh:Biology (General) ,lcsh:QD1-999 ,Seedlings ,biology.protein ,010606 plant biology & botany - Abstract
UDP-glycosyltransferases (UGTs) play key roles in modulating plant development and responses to environmental challenges. Previous research reported that the Arabidopsis UDP-glucosyltransferase 74E2 (AtUGT74E2), which transfers glucose to indole-3-butyric acid (IBA), is involved in regulating plant architecture and stress responses. Here, we show novel and distinct roles of UGT74E2 in rice. We found that overexpression of AtUGT74E2 in rice could enhance seed germination. This effect was also observed in the presence of IBA and abscisic acid (ABA), as well as salt and drought stresses. Further investigation indicated that the overexpression lines had lower levels of free IBA and ABA compared to wild-type plants. Auxin signaling pathway gene expression such as for OsARF and OsGH3 genes, as well as ABA signaling pathway genes OsABI3 and OsABI5, was substantially downregulated in germinating seeds of UGT74E2 overexpression lines. Consistently, due to reduced IBA and ABA levels, the established seedlings were less tolerant to drought and salt stresses. The regulation of rice seed germination and stress tolerance could be attributed to IBA and ABA level alterations, as well as modulation of the auxin/ABA signaling pathways by UGT74E2. The distinct roles of UGT74E2 in rice implied that complex and different molecular regulation networks exist between Arabidopsis and rice.
- Published
- 2020