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Genome-Wide Association Study of Brown Rice Weight Identifies an RNA-Binding Protein Antagonistically Regulating Grain Weight and Panicle Number
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作者 ZHOU Lin jiANG Hong +11 位作者 HUANG Long LI Ziang YAO Zhonghao LI Linhan ji kangwei LI Yijie TANG Haijuan CHENG jinping BAO Yongmei HUANG ji ZHANG Hongsheng CHEN Sunlu 《Rice science》 2025年第4期525-536,I0050-I0065,共28页
Rice grain yield is primarily determined by three key agronomic traits:panicle number,grain number per panicle,and grain weight(GW).However,the inherent tradeoffs among these yield components remain a persistent chall... Rice grain yield is primarily determined by three key agronomic traits:panicle number,grain number per panicle,and grain weight(GW).However,the inherent tradeoffs among these yield components remain a persistent challenge in rice breeding programs.Notably,compared with GW,brown rice weight(BRW)provides a more direct metric associated with actual grain yield potential.In this study,we conducted a two-year replicated genome-wide association study to elucidate the genetic architecture of BRW and identify new loci regulating GW.Among seven consistently detected loci across experimental replicates,four were not co-localized with previously reported genes associated with BRW or GW traits.BRW1.1,one of the four newly identified loci,was found to encode a novel RNA-binding protein.Functional characterization revealed that BRW1.1 acts as a negative regulator of BRW,potentially through modulating mRNA translation processes.Intriguingly,through integrated analysis of mutant phenotypes and haplotype variations,we demonstrated that BRW1.1 mediates the physiological tradeoff between GW and panicle number.This study not only delineates the genetic determinants of BRW but also identifies BRW1.1 as a promising molecular target for breaking the yield component tradeoff in precision rice breeding. 展开更多
关键词 genome-wide association study brown rice weight RNA-binding protein TRADEOFF grain weight panicle number grain number rice yield
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提高作物转基因效率方法研究进展
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作者 王臣臣 王丽华 +5 位作者 刘言龙 纪康伟 申震 梁坤 詹秋文 李杰勤 《分子植物育种》 CAS CSCD 北大核心 2019年第11期3585-3592,共8页
近年来,随着植物基因工程的快速发展,利用转基因技术进行育种和基因功能研究成为了一种重要研究手段。作物转基因方法经过三十年的不断发展,不管在方法上还是体系方面都取得了显著的进展。本综述主要对目前在作物上应用最广泛的农杆菌... 近年来,随着植物基因工程的快速发展,利用转基因技术进行育种和基因功能研究成为了一种重要研究手段。作物转基因方法经过三十年的不断发展,不管在方法上还是体系方面都取得了显著的进展。本综述主要对目前在作物上应用最广泛的农杆菌介导法和基因枪法分别从化学因素(氨基酸,乙酰丁香酮,共培养pH)和物理因素(预培养天数,菌株类型,热激和干燥,髙渗负压处理等)在提高作物转基因效率方法上进行了梳理,以及两种转基因方法都适用的外植体类型和大小,不同继代时间和基因型等方面在提高作物转基因效率方法上进行了梳理;比较了农杆菌介导法和基因枪法优缺点以及限制因素,并总结了相应策略。同时阐明了目前提高作物转基因效率方法面临的问题,展望了其未来发展方向,给作物转基因研究提供理论支撑。 展开更多
关键词 转基因效率 农杆菌介导法 基因枪法 研究进展
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