首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Nulliplex-branch, a TERMINAL FLOWER 1 ortholog, controls plant growth habit in cotton
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Nulliplex-branch, a TERMINAL FLOWER 1 ortholog, controls plant growth habit in cotton

机译:Nulliplex-Branch,终端花1 ortholog,控制棉花植物生长习性

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Key messageNulliplex-branch (nb) mutants in cotton display a specific architecture. The gene responsible for the nb phenotype was identified, and its modulation mode was further studied.AbstractPlant architecture is an important agronomic factor influencing various traits such as yield and variety adaptability in crop plants. Cotton (Gossypium) simultaneously displays monopodial and sympodial growth. Nulliplex-branch (nb) mutants showing determinate sympodial shoots have been reported in both G. hirsutum (Ghnb) and G. barbadense (Gbnb). In this study, the gene responsible for the nb phenotype was identified. GhNB and GbNB were found to be allelic loci and are TERMINAL FLOWER 1 orthologs on the Dt subgenome, though the At copies remain native. Sequencing and association analyses identified four (Gh-nb1-Gh-nb4) and one (Gb-nb1) type of point mutation in the coding sequences of Ghnb and Gbnb, respectively. The NB gene was mainly expressed in the root and shoot apex, and expression rhythms were also observed in these tissues, suggesting that the expression of the NB gene could be regulated by photoperiod. Constitutive overexpression of GhNB suppresses the differentiation of the reproductive shoots. Knockout of both copies of GhNB caused the main and lateral shoots to terminate in flowers, which is a more determinate architecture than that of the nb mutants and implies that its function might be dosage dependent. A protein lipid overlay assay indicated that the amino acid substitutions in Gh-nb1 and Gb-nb1 weaken the ligand-binding activity of the NB protein in vitro. These findings suggest that the NB gene plays crucial roles in regulating the determinacy of shoots, and the modulation of this gene should constitute an effective crop improvement approach through adjusting the growth habit of cotton.
机译:棉花中的key messagenulliplex-branch(nb)突变体显示特定的架构。鉴定了对Nb表型负责的基因,并进一步研究了调节模式.AbstractPlant架构是影响各种特征的重要农艺因素,例如作物植物中的产量和品种适应性。棉花(Gossypium)同时显示单涂层和Sympodial的生长。在G. Hirsutum(GHNB)和G. Barbadense(GBNB​​)中报告了显示确定对称芽的无数次分支(Nb)突变体。在该研究中,鉴定了对Nb表型负责的基因。发现GHNB和GBNB是等位基因座,并且在DT亚基因组上是末端花1 orthologs,但在副本保持原生。测序和关联分析分别鉴定了GHNB和GBNB的编码序列中的四种(GH-NB1-GB4)和一种(GB-NB1)的点突变。 Nb基因主要在根和芽顶部表达,并且在这些组织中也观察到表达节律,表明Nb基因的表达可以通过光周期调节。 GHNB的组成型过表达抑制了生殖芽的分化。 GHNB的两份拷贝引起了主要和横向芽以终止于花朵,这是比NB突变体的更加确定的结构,并意味着其功能可能是依赖性的剂量。蛋白质脂质覆盖测定结果表明GH-NB1和GB-NB1中的氨基酸取代削弱了体外Nb蛋白的配体结合活性。这些发现表明,Nb基因在调节芽的测定性方面发挥关键作用,并且通过调节棉花的生长习性,该基因的调节应构成有效的作物改善方法。

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    Chinese Acad Agr Sci State Key Lab Cotton Biol Inst Cotton Res Anyang 455000 Peoples R China;

    Chinese Acad Agr Sci State Key Lab Cotton Biol Inst Cotton Res Anyang 455000 Peoples R China;

    Chinese Acad Agr Sci State Key Lab Cotton Biol Inst Cotton Res Anyang 455000 Peoples R China;

    Chinese Acad Agr Sci State Key Lab Cotton Biol Inst Cotton Res Anyang 455000 Peoples R China;

    Chinese Acad Agr Sci State Key Lab Cotton Biol Inst Cotton Res Anyang 455000 Peoples R China;

    Chinese Acad Agr Sci State Key Lab Cotton Biol Inst Cotton Res Anyang 455000 Peoples R China;

    Chinese Acad Agr Sci State Key Lab Cotton Biol Inst Cotton Res Anyang 455000 Peoples R China;

    Chinese Acad Agr Sci State Key Lab Cotton Biol Inst Cotton Res Anyang 455000 Peoples R China;

    Univ Saskatchewan Art &

    Sci Coll Saskatoon S7N 5A5 SK Canada;

    Chinese Acad Agr Sci State Key Lab Cotton Biol Inst Cotton Res Anyang 455000 Peoples R China;

    Chinese Acad Agr Sci State Key Lab Cotton Biol Inst Cotton Res Anyang 455000 Peoples R China;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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