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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Shoot branching control by reduced culm number 4 in rice (Oryza sativa L.).
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Shoot branching control by reduced culm number 4 in rice (Oryza sativa L.).

机译:水稻中减少的茎数4 控制芽的分枝。

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Shoot branching is a major factor in plant architecture and an important agronomic trait for productivity. In the present study, we characterized reduced culm number 4 (rcn4) mutants in rice, namely rcn4-1 and rcn4-2. rcn4 developed axillary buds precisely at each leaf node, but the outgrowth of these buds was inhibited. To determine whether rcn4 is involved in a branch-inhibiting strigolactone pathway, we characterized the double mutant of rcn4 and a tillering dwarf mutant, dwarf10 (d10), which is defective in strigolactone synthesis. The axillary bud activity of rcn4d10 double mutant was between that of the rcn4 and d10 mutants suggesting that Rcn4 controls axillary bud activity and is independent of D10 in the strigolactone associated branching inhibition pathway. Molecular mapping study demonstrated that Rcn4 is located between simple sequence repeat markers RM6581 and RM6608 on the long arm of rice chromosome 1. We suggest that Rcn4 is a good candidate for further investigation of the strigolactone independent branching pathway.
机译:枝条分支是植物结构的主要因素,也是生产力的重要农艺性状。在本研究中,我们表征了水稻中 4减少的茎秆编号( rcn4 )突变体,即 rcn4-1 和 rcn4-2 。 rcn4 精确地在每个叶节上发育腋芽,但这些芽的生长受到抑制。为了确定 rcn4 是否参与抑制分支的strigolactone途径,我们表征了 rcn4 的双突变体和分er矮化突变体 dwarf10 ( d10 ),其在磺基内酯合成中存在缺陷。 rcn4d10 双重突变体的腋芽活性介于 rcn4 和 d10 突变体之间,这表明 Rcn4 控制腋芽芽的活性,并独立于strigolactone相关分支抑制途径中的 D10 。分子作图研究表明 Rcn4 位于水稻1号染色体长臂上的简单序列重复标记RM6581和RM6608之间。我们建议 Rcn4 是进一步研究的良好候选者内酯内酯独立的分支途径。

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