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基于CRISPR/Cas9技术对水稻细胞质分裂关键基因OsMAP65-3s的编辑 被引量:2
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作者 林小丽 姜志树 +5 位作者 贺榕 胡嘉敏 朱昌兰 周大虎 贺浩华 徐杰 《核农学报》 CAS CSCD 北大核心 2022年第4期716-727,共12页
MAP65-3是植物胞质分裂的重要调节因子。为探究水稻OsMAP65-3基因的功能,本研究采用CRISPR/Cas9技术对水稻中OsMAP65-3基因(OsMAP65-3.1和OsMAP65-3.2)进行编辑。针对每个基因各设计了2个不同的靶位点,并将OsMAP65-3.1与OsMAP65-3.2的... MAP65-3是植物胞质分裂的重要调节因子。为探究水稻OsMAP65-3基因的功能,本研究采用CRISPR/Cas9技术对水稻中OsMAP65-3基因(OsMAP65-3.1和OsMAP65-3.2)进行编辑。针对每个基因各设计了2个不同的靶位点,并将OsMAP65-3.1与OsMAP65-3.2的靶位点放在同一个载体上,构建了CSMAP65-3A和CSMAP65-3B 2个双基因编辑载体。通过农杆菌介导的遗传转化分别获得17和21个植株,PCR鉴定阳性植株分别为16和20株。对T_(0)代植株靶位点附近序列进行测序分析,结果表明OsMAP65-3s基因均被成功编辑,OsMAP65-3.12个位点编辑效率为17.50%和9.38%,OsMAP65-3.2编辑效率为15.62%和45.00%;T_(0)代已获得osmap65-3.2、osmap65-3.2/OsMAP65-3.1(+/-)和OsMAP65-3.2(+/-)/OsMAP65-3.1(+/-)材料。本研究为进一步创制OsMAP65-3s突变体,开展基因功能研究和水稻胞质分裂分子机制解析奠定了理论基础。 展开更多
关键词 水稻 胞质分裂 OsMAP65-3 CRISPR/Cas9 基因编辑
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Characterization of a Novel Weak Allele of RGA1/D1 and Its Potential Application in Rice Breeding 被引量:2
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作者 LIU Yantong LI Ting +12 位作者 jiang zhishu ZENG Chuihai HE Rong QIU Jiao LIN Xiaoli PENG Limei SONG Yongping ZHOU Dahu CAI Yicong ZHU Changlan FU Junru HE Haohua XU Jie 《Rice science》 SCIE CSCD 2022年第6期522-534,I0021,I0022,共15页
Semi-dwarfing improves the lodging resistance and yield of rice,and the vast majority of modern rice varieties harbor the sd1 allele to decrease plant height,resulting in reduced genetic diversity and negative agronom... Semi-dwarfing improves the lodging resistance and yield of rice,and the vast majority of modern rice varieties harbor the sd1 allele to decrease plant height,resulting in reduced genetic diversity and negative agronomic traits.Thus,exploring alternative sources of dwarfism is imperative for rice breeding.Here,we identified a novel RGA1 allele,d1-w,from a local indica variety Xiaolixiang(XLX)using a map-based cloning approach.Compared with other rice varieties,RGA1 in XLX contained a unique single nucleotide polymorphism that resulted in an additional transcript and reduced functional RGA1 transcript level.The RGA1 from Nipponbare was introduced into XLX to estimate the value of d1-w in rice breeding.Compared with transgenic XLX plants(XLX^(D1)),XLX exhibited reduced plant height,increased stem strength,lower reactive oxygen species accumulation,delayed senescence,stronger photosynthesis,higher grain yield and quality(including external,milling and nutritional qualities),and enhanced resistance to drought and Rhizoctonia solani.Therefore,we proposed that the d1-w allele has potential as an excellent dwarfism resource for rice breeding. 展开更多
关键词 rice weak allele RGA1 dwarf germplasm resource yield grain quality drought resistance sheath blight
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