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首页> 外文期刊>The New Phytologist >Rice shoot branching requires an ATP-binding cassette subfamily G protein
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Rice shoot branching requires an ATP-binding cassette subfamily G protein

机译:水稻芽分支需要ATP结合盒亚家族G蛋白

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摘要

Shoot branching is important for the establishment of plant architecture and productivity. Here, characterization of rice (Oryza sativa) reduced culm number 1 (rcn1) mutants revealed that Rcn1 positively controls shoot branching by promoting the outgrowth of lateral shoots. Molecular studies revealed that Rcn1 encodes a novel member of ATP-binding cassette protein subfamily G (ABCG subfamily), also known as the white-brown complex (WBC) subfamily, and is designated OsABCG5. Rcn1 is expressed in leaf primordia of main and axillary shoots, and in the vascular cells and leaf epidermis of older leaves. In addition, Rcn1 is expressed in the crown root primordia, endodermis, pericycle and stele in the root. No effect on Rcn1 expression in shoots or roots was seen when the roots were treated with auxins. Phenotypic analyses of rcn1 and tillering dwarf 3 (d3) double mutants at the seedling stage clarified that Rcn1 works independently of D3 in the branching inhibitor pathway. Rcn1 is the first functionally defined plant ABCG protein gene that controls shoot branching and could thus be significant in future breeding for high-yielding rice.
机译:枝条分支对于建立工厂架构和提高生产力很重要。在此,对水稻(Oryza sativa)减少了茎数1(rcn1)突变体的鉴定表明,Rcn1通过促进侧芽的生长而积极控制芽的分支。分子研究表明,Rcn1编码ATP结合盒蛋白亚家族G(ABCG家族)的一个新成员,也称为白棕色复合物(WBC)亚家族,并命名为OsABCG5。 Rcn1在主要和腋生芽的原基以及老叶的维管细胞和叶表皮中表达。此外,Rcn1在根的原基,内胚层,周生周期和石碑中表达。用生长素处理根时,未观察到对芽或根中Rcn1表达的影响。对rcn1和分er矮矮3(d3)双重突变体在苗期的表型分析表明,Rcn1在分支抑制剂途径中独立于D3起作用。 Rcn1是第一个功能定义的植物ABCG蛋白基因,它控制枝条的分支,因此在未来高产水稻育种中可能具有重要意义。

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