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Disruption of a rice pentatricopeptide repeat protein causes a seedling-specific albino phenotype and its utilization to enhance seed purity in hybrid rice production

机译:水稻五肽重复序列蛋白的破坏导致幼苗特异的白化病表型及其在提高杂交水稻生产中的种子纯度中的利用

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The pentatricopeptide repeat (PPR) gene family represents one of the largest gene families in higher plants. Accumulating data suggest that PPR proteins play a central and broad role in modulating the expression of organellar genes in plants. Here we report a rice (Oryza sativa) mutant named young seedling albino (ysa) derived from the rice thermo/photoperiod-sensitive genic male-sterile line Pei'ai64S, which is a leading male-sterile line for commercial two-line hybrid rice production. The ysa mutant develops albino leaves before the three-leaf stage, but the mutant gradually turns green and recovers to normal green at the sixleaf stage. Further investigation showed that the change in leaf color in ysa mutant is associated with changes in chlorophyll content and chloroplast development. Map-based cloning revealed that YSA encodes a PPR protein with 16 tandem PPR motifs. YSA is highly expressed in young leaves and stems, and its expression level is regulated by light. We showed that the ysa mutation has no apparent negative effects on several important agronomic traits, such as fertility, stigma extrusion rate, selfed seed-setting rate, hybrid seed-setting rate, and yield heterosis under normal growth conditions. We further demonstrated that ysa can be used as an early marker for efficient identification and elimination of false hybrids in commercial hybrid rice production, resulting in yield increases by up to approximately 537 kg ha ~(-1).
机译:五肽重复序列(PPR)基因家族是高等植物中最大的基因家族之一。越来越多的数据表明,PPR蛋白在调节植物细胞器基因的表达中起着核心和广泛的作用。在这里,我们报道了一个水稻(Oryza sativa)突变体,名为水稻幼苗白化病(ysa),该突变体来自水稻对热/光周期敏感的雄性不育系Pei'ai64S,这是商业两系杂交水稻的领先雄性不育系生产。 ysa突变体在三叶阶段之前发育出白化病叶子,但该突变体逐渐变绿并在六叶阶段恢复到正常绿色。进一步的研究表明,ysa突变体中叶片颜色的变化与叶绿素含量和叶绿体发育的变化有关。基于图谱的克隆显示,YSA编码具有16个串联PPR基序的PPR蛋白。 YSA在幼叶和茎中高表达,其表达水平受光照调节。我们表明,在正常生长条件下,ysa突变对几种重要的农艺性状没有明显的负面影响,例如生育力,柱头膨化率,自种结实率,杂种结实率和产量杂种优势。我们进一步证明,ysa可以用作在商业杂交水稻生产中有效鉴定和消除假杂种的早期标记,从而使产量增加多达537 kg ha〜(-1)。

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