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首页> 外文期刊>Journal of Experimental Botany >Cotton CENTRORADIALIS/TERMINAL FLOWER 1/SELF-PRUNING genes functionally diverged to differentially impact plant architecture
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Cotton CENTRORADIALIS/TERMINAL FLOWER 1/SELF-PRUNING genes functionally diverged to differentially impact plant architecture

机译:棉花Centroradialis /末端花1 /自我修剪基因在功能上发散到差异影响植物建筑

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Genes of the CENTRORADIALIS/TERMINAL FLOWER 1/SELF-PRUNING (CETS) family influence meristem identity by controlling the balance between indeterminate and determinate growth, thereby profoundly impacting plant architecture. Artificial selection during cotton (Gossypium hirsutum) domestication converted photoperiodic trees to the day-neutral shrubs widely cultivated today. To understand the regulation of cotton architecture and exploit these principles to enhance crop productivity, we characterized the CETS gene family from tetraploid cotton. We demonstrate that genes of the TERMINAL FLOWER 1 (TFL1)-like Glade show different roles in regulating growth patterns. Cotton has five TFL1-like genes: SELF-PRUNING (GhSP) is a single gene whereas there are two TFL1-like and BROTHER OF FT (BFT)-like genes, and these duplications are specific to the cotton lineage. All genes of the cotton TFL1-like Glade delay flowering when ectopically expressed in transgenic Arabidopsis, with the strongest phenotypes failing to produce functional flowers. GhSP, GhTFL1-L2, and GhBFT-L2 rescue the early flowering Attfl1-14 mutant phenotype, and the encoded polypeptides interact with a cotton FD protein. Heterologous promoter::GUS fusions illustrate differences in the regulation of these genes, suggesting that genes of the GhTFL1-like Glade may not act redundantly. Characterizations of the GhCETS family provide strategies for nuanced control of plant growth.
机译:Centroradialis /终端花的基因/自我修剪(CETS)家庭通过控制不确定和确定生长之间的平衡来影响分娩标识,从而深受植物建筑。棉花(Gossypium hirsutum)驯化期间的人工选择转化为今天广泛种植的日中立灌木。要了解棉花建筑的调节并利用这些原则来提高作物生产力,我们将来自四倍体棉的CETS基因家族特征。我们证明了终端花1(TFL1)的基因(TFL1) - 般的林石在调节生长模式方面表现出不同的作用。棉花有五个TFL1样基因:自我修剪(GHSP)是单一基因,而有两种TFL1样和FT(BFT)的基因兄弟,则这些重复是棉谱的特异性。当在转基因拟南芥中异常表达时,棉花TFL1样纱布延迟开花的所有基因,具有最强的表型未能产生功能性花。 GHSP,GHTFL1-L2和GHBFT-L2拯救早期开花的attfl1-14突变表型,并且编码的多肽与棉FD蛋白相互作用。异源启动子:: GUS融合说明了这些基因调节的差异,表明GHTFL1样GLADE的基因可能不会冗余。 GHCETS家族的特色为植物生长的细微控制提供了差异的策略。

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