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Natural Variations in SLG7 Regulate Grain Shape in Rice

机译:SLG7的自然变异调节水稻的籽粒形状

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Rice ( Oryza sativa ) grain shape, which is controlled by quantitative trait loci (QTL), has a strong effect on yield production and quality. However, the molecular basis for grain development remains largely unknown. In this study, we identified a novel QTL, Slender grain on chromosome 7 ( SLG7 ), that is responsible for grain shape, using backcross introgression lines derived from 9311 and Azucena. The SLG7 allele from Azucena produces longer and thinner grains, although it has no influence on grain weight and yield production. SLG7 encodes a protein homologous to LONGIFOLIA 1 and LONGIFOLIA 2, both of which increase organ length in Arabidopsis . SLG7 is constitutively expressed in various tissues in rice, and the SLG7 protein is located in plasma membrane. Morphological and cellular analyses suggested that SLG7 produces slender grains by longitudinally increasing cell length, while transversely decreasing cell width, which is independent from cell division. Our findings show that the functions of SLG7 family members are conserved across monocots and dicots and that the SLG7 allele could be applied in breeding to modify rice grain appearance.
机译:受数量性状基因座(QTL)控制的水稻(Oryza sativa)粒形对单产和品质有很大影响。但是,晶粒发育的分子基础仍是未知之数。在这项研究中,我们使用源自9311和Azucena的回交渐渗系,鉴定了一个新的QTL,即第7号染色体上的细长粒(SLG7),其负责粒的形状。来自阿祖那的SLG7等位基因可产生更长和更薄的谷粒,尽管它对谷物重量和产量没有影响。 SLG7编码一种与LONGIFOLIA 1和LONGIFOLIA 2同源的蛋白质,两者均会增加拟南芥的器官长度。 SLG7在水稻的各种组织中组成性表达,并且SLG7蛋白位于质膜中。形态学和细胞分析表明,SLG7通过纵向增加细胞长度而横向减少细胞宽度来产生细长晶粒,而细胞宽度独立于细胞分裂。我们的发现表明,SLG7家族成员的功能在单子叶植物和双子叶植物中是保守的,并且SLG7等位基因可用于育种以修饰稻米外观。

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