典型文献
Elite sd1 alleles in japonica rice and their breeding applications in northeast China
文献摘要:
The Green Revolution gene sd1 has been used extensively in modern rice breeding, especially in indica cultivars. However, elite sd1 alleles and related germplasm resources used for japonica rice breeding have not been identified, and extensive efforts are needed for japonica rice breeding to obtain new dwarfing sources. Data from MBKbase-Rice revealed seven sd1 haplotypes in indica and four in japonica rice. Two new sd1 alleles were identified in indica rice. In 295 japonica accessions from northeast Asia, except for the weak functional allele SD1-EQ, sd1-r was the major allele, reducing plant height in comparison with SD1-EQ. Japonica germplasm resources carrying reported sd1 alleles were identified by genotype searching and further verified by literature search, genealogical analysis, and dCaps markers. Pedigrees and geographic distribution showed that sd1-r is an excellent allele widely used in northern China and Tohoku in Japan, and sd1-j is commonly used in east China and Kyushu in Japan. Dongnong- and Xiushui-series cultivars carrying sd1-r and sd1-j, respectively, are essential branches of the backbone par-ents of Chinese japonica rice, Akihikari and Ce21, with the largest number of descendants and derived generations. In semi-dwarf japonica rice breeding, sd1-d was introgressed into Daohuaxiang 2 (DHX2). Dwarf and semi-dwarf lines carrying sd1-d were selected and designated as 1279 and 1280, respectively, after withstanding typhoon-induced strong winds and heavy rains in 2020, and are anticipated to become useful intermediate materials for future genetic research and breeding. This work will facilitate the intro-duction, parental selection, and marker-assisted breeding, and provide a material basis for the next step in identifying favorable genes that selected together with the sd1 alleles in japonica backbone parents.
文献关键词:
中图分类号:
作者姓名:
Hanjing Sha;Hualong Liu;Guangxin Zhao;Zhongmin Han;Huilin Chang;Jingguo Wang;Hongliang Zheng;Jifeng Zhang;Yang Yu;Yuqiang Liu;Detang Zou;Shoujun Nie;Jun Fang
作者机构:
Key Laboratory of Soybean Molecular Design Breeding,Northeast Institute of Geography and Agroecology,Chinese Academy of Sciences,Harbin 150081,Heilongjiang,China;Key Laboratory of Germplasm Enhancement,Physiology and Ecology of Food Crops in Cold Region,Ministry of Education,Northeast Agricultural University,Harbin 150030,Heilongjiang,China;University of Chinese Academy of Sciences,Beijing 100049,China;Innovation Center,Suihua Branch of Heilongjiang Academy of Agricultural Sciences,Suihua 152052,Heilongjiang,China;College of Life Science and Engineering,Shenyang University,Shenyang 110044,Liaoning,China;The Innovative Academy for Seed Design,Chinese Academy of Sciences,Beijing 100101,China
文献出处:
引用格式:
[1]Hanjing Sha;Hualong Liu;Guangxin Zhao;Zhongmin Han;Huilin Chang;Jingguo Wang;Hongliang Zheng;Jifeng Zhang;Yang Yu;Yuqiang Liu;Detang Zou;Shoujun Nie;Jun Fang-.Elite sd1 alleles in japonica rice and their breeding applications in northeast China)[J].作物学报(英文版),2022(01):224-233
A类:
MBKbase,genealogical,dCaps,Pedigrees,Dongnong,Xiushui,Akihikari,Ce21,introgressed,Daohuaxiang,DHX2,Dwarf
B类:
Elite,sd1,alleles,japonica,rice,their,breeding,applications,northeast,China,Green,Revolution,has,been,used,extensively,modern,especially,indica,cultivars,However,elite,related,germplasm,resources,have,identified,efforts,needed,obtain,new,dwarfing,Data,from,Rice,revealed,seven,haplotypes,four,Two,were,In,accessions,Asia,except,weak,functional,SD1,EQ,was,major,reducing,plant,height,comparison,Japonica,carrying,reported,by,genotype,searching,further,verified,literature,analysis,markers,geographic,distribution,showed,that,excellent,widely,northern,Tohoku,Japan,commonly,Kyushu,series,respectively,essential,branches,backbone,Chinese,largest,number,descendants,derived,generations,semi,into,lines,selected,designated,after,withstanding,typhoon,induced,strong,winds,heavy,rains,anticipated,become,useful,intermediate,materials,future,genetic,research,This,work,will,facilitate,duction,parental,selection,assisted,provide,basis,next,step,identifying,favorable,genes,together,parents
AB值:
0.453544
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