Alternative splicing of a barley gene results in an excess-tillering and semi-dwarf mutant

被引:0
作者
Wei Hua
Cong Tan
Jingzhong Xie
Jinghuan Zhu
Yi Shang
Jianming Yang
Xiao-Qi Zhang
Xiaojian Wu
Junmei Wang
Chengdao Li
机构
[1] Zhejiang Academy of Agricultural Sciences,Western Barley Genetics Alliance
[2] Murdoch University,State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology
[3] Chinese Academy of Sciences,Hubei Collaborative Innovation Centre for Grain Industry
[4] Department of Primary Industry and Regional Development,undefined
[5] Yangtze University,undefined
来源
Theoretical and Applied Genetics | 2020年 / 133卷
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页码:163 / 177
页数:14
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  • [1] Alqudah AM(2016)The Genetic Architecture of Barley Plant Stature Front Genet 7 117-1029
  • [2] Koppolu R(2007), an Plant J 51 1019-1424
  • [3] Wolde GM(2009) ortholog, controls lateral bud outgrowth in rice Plant Cell Physiol 50 1416-857
  • [4] Graner A(2003), a strigolactone-insensitive mutant of rice, shows an accelerated outgrowth of tillers Theor Appl Genet 106 846-2120
  • [5] Schnurbusch T(2014)Genetic and morphological characterization of the barley uniculm2 ( Bioinformatics 30 2114-281
  • [6] Arite T(2009)) mutant Nucleic Acids Res 37 e106-1219
  • [7] Iwata H(2014)Trimmomatic: a flexible trimmer for illumina sequence data Plant Mol Biol Rep 32 270-92
  • [8] Ohshima K(2003)Detection of single nucleotide variations in expressed exons of the human genome using RNA-Seq Plant Physiol 133 1209-716
  • [9] Maekawa M(2012)Rice Fly 6 80-1360
  • [10] Nakajima M(2012) regulates leaf and adventitious root development Nature 491 711-715