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Developing superior alleles of yield genes in rice by artificial mutagenesis using the CRISPR/Cas9 system 被引量:9
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作者 Liyu Huang Ru Zhang +8 位作者 Guangfu Huang Yanxia Li getachew melaku Shilai Zhang Haitao Chen Yanjuan Zhao Jing Zhang Yesheng Zhang Fengyi Hu 《The Crop Journal》 SCIE CAS CSCD 2018年第5期475-481,共7页
Rice yield is an important and complex agronomic trait controlled by multiple genes.In recent decades,dozens of yield-associated genes in rice have been cloned,many of which can increase production in the form of loss... Rice yield is an important and complex agronomic trait controlled by multiple genes.In recent decades,dozens of yield-associated genes in rice have been cloned,many of which can increase production in the form of loss or degeneration of function.However,mutations occurring randomly under natural conditions have provided very limited genetic resources for yield increases.In this study,potentially yield-increasing alleles of two genes closely associated with yield were edited artificially.The recently developed CRISPR/Cas9system was used to edit two yield genes:Grain number 1a(Gn1a)and DENSE AND ERECT PANICLE1(DEP1).Several mutants were identified by a target sequence analysis.Phenotypic analysis confirmed one mutant allele of Gn1a and three of DEP1 conferring yield superior to that conferred by other natural high-yield alleles.Our results demonstrate that favorable alleles of the Gnla and DEP1 genes,which are considered key factors in rice yield increases,could be developed by artificial mutagenesis using genome editing technology. 展开更多
关键词 RICE CRISPR/Cas9 Gn1a DEP1 Gene EDITING
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长寿与短命:十字花科植物中MADS-box基因的长袖善舞
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作者 廉小平 getachew melaku +1 位作者 张石来 胡凤益 《植物学报》 CAS CSCD 北大核心 2024年第3期351-354,共4页
开花基因决定植物的一年生或多年生开花习性。已在不同植物中鉴定到多个开花基因,然而关于开花基因如何驱动十字花科植物一年生与多年生生活史策略转变的进化机制仍不清楚。最近一项研究聚焦十字花科不同属的自然变异,发现3个亲缘关系... 开花基因决定植物的一年生或多年生开花习性。已在不同植物中鉴定到多个开花基因,然而关于开花基因如何驱动十字花科植物一年生与多年生生活史策略转变的进化机制仍不清楚。最近一项研究聚焦十字花科不同属的自然变异,发现3个亲缘关系密切的MADS-box类转录因子编码基因(即FLC、FLM和MAF)与其一年生/多年生习性转变相关,并解析了其分子机制,提出十字花科植物生活史策略(即多年生/二年生/一年生之间的转换)是由FLC类MADS-box基因剂量叠加所决定的连续过程。研究结果初步明确了十字花科植物一年生与多年生生活史策略转换的进化机制和轨迹,为培育多年生油菜品种奠定了理论基础,也为其它十字花科作物的多年生化遗传改良提供借鉴。 展开更多
关键词 十字花科 生活史策略 MADS-BOX 多年生 一年生 转换
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