![]() |
个人信息Personal Information
正高级
博士生导师
硕士生导师
教师英文名称:Chen Chen
教师拼音名称:Chen Chen
电子邮箱:
所在单位:农学院
学历:博士研究生毕业
办公地点:文汇路校区推广楼(22#楼)110 Room 110, Bldg. 22, Wenhui Rd. Campus
联系方式:文汇东路12号,扬大农学院 E.12th Wenhui Rd. College of Agriculture, Yangzhou University, China 225009, TEL:0514-87153385 Email:chenchen[at]yzu.edu.cn
学位:理学博士学位
毕业院校:Institute of Plant Physiology and Ecology, CAS
OsYUC11-mediated auxin biosynthesis is essential for endosperm development of rice
点击次数:
发表刊物:Plant Physiology
摘要:Auxin is a phytohormone essential for plant development. However, our understanding of auxin-regulated endosperm development remains limited. Here, we described rice YUCCA (YUC) flavin-containing monooxygenase encoding gene OsYUC11 as a key contributor to auxin biosynthesis in rice (Oryza sativa) endosperm. Grain filling or storage product accumulation was halted by mutation of OsYUC11, but the deficiencies could be recovered by the exogenous application of auxin. A rice transcription factor (TF) yeast library was screened, and 41 TFs that potentially bind to the OsYUC11 promoter were identified, of which OsNF-YB1, a member of the nuclear factor Y family, is predominantly expressed in the endosperm. Both osyuc11 and osnf-yb1 mutants exhibited reduced seed size and increased chalkiness, accompanied by a reduction in indole-3-acetic acid biosynthesis. OsNF-YB1 can bind the OsYUC11 promoter to induce gene expression in vivo. We also found that OsYUC11 was a dynamically imprinted gene that predominantly expressed the paternal allele in the endosperm up to 10 d after fertilization (DAF) but then became a non-imprinted gene at 15 DAF. A functional maternal allele of OsYUC11 was able to recover the paternal defects of this gene. Overall, the findings indicate that OsYUC11-mediated auxin biosynthesis is essential for endosperm development in rice.
卷号:185
期号:3
页面范围:934-950
是否译文:否