机构地区:[1]State Key Laboratory of Plant Genomics and National Center for Plant Gene Research(Beijing),Institute of Genetics and Developmental Biology,Chinese Academy of Sciences,Beijing 100101,China [2]CAS Center for Excellence in Molecular Plant Sciences,Chinese Academy of Sciences,Shanghai 200032,China [3]Innovation Academy for Seed Design,Chinese Academy of Sciences,Beijing 100101,China [4]University of Chinese Academy of Sciences,Beijing 100049,China [5]National Center for Gene Research,Institute of Plant Physiology and Ecology,Shanghai Institutes for Biological Sciences,Chinese Academy of Sciences,Shanghai 200233,China [6]College of Resources and Environment,Fujian Agriculture and Forestry University,Fuzhou 350002,China [7]Shanghai Key Laboratory of Plant Molecular Sciences,College of Life Sciences,Shanghai Normal University,Shanghai 200234,China [8]College of Life Sciences,Shandong Agricultural University,Taian,Shandong 271018,China
出 处:《Molecular Plant》2021年第6期997-1011,共15页分子植物(英文版)
基 金:supported by grants from the National Natural Science Foundation of China(91935301,31930006,31601276);the National Key Research and Development Program of China(2016YFD0100403);the Strategic Priority Research Program"Molecular Mechanism of Plant Growth and Development"of CAS(XDB27010100);the Top Talents Program"One Case One Discussion(Yishiyiyi)"of Shandong Province,China.
摘 要:Grain number per panicle(GNP)is an important agronomic trait that contributes to rice grain yield.Despite its importance in rice breeding,the molecular mechanism underlying GNP regulation remains largely unknown.In this study,we identified a previously unrecognized regulatory gene that controls GNP in rice,Oryza sativa REPRODUCTIVE MERISTEM 20(OsREM20),which encodes a B3 domain transcription factor.Through genetic analysis and transgenic validation we found that genetic variation in the CArG box-containing inverted repeat(IR)sequence of the OsREM20 promoter alters its expression level and contributes to GNP variation among rice varieties.Furthermore,we revealed that the IR sequence regulates OsREM20 expression by affecting the direct binding of OsMADS34 to the CArG box within the IR sequence.Interestingly,the divergent pOsREM20IR and pOsREM20ΔIR alleles were found to originate from different Oryza rufipogon accessions,and were independently inherited into the japonica and indica subspecies,respectively,during domestication.Importantly,we demonstrated that IR sequence variations in the OsREM20 promoter can be utilized for germplasm improvement through either genome editing or traditional breeding.Taken together,our study characterizes novel genetic variations responsible for GNP diversity in rice,reveals the underlying molecular mechanism in the regulation of agronomically important gene expression,and provides a promising strategy for improving rice production by manipulating the cis-regulatory element-containing IR sequence.
关 键 词:rice(Oryza sativa L.) OsREM20 grain number inverted repeat sequence c/s-regulatory element transcriptional regulation
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