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Functional Studies of Heading Date-Related Gene TaPRR73 a Paralog of Ppd1 in Common Wheat

机译:抽穗期相关基因TaPRR73(Ppd1在普通小麦中的同源物)的功能研究

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摘要

Photoperiod response-related genes play a crucial role in duration of the plant growth. In this study, we focused on TaPRR73, a paralog of “Green Revolution” gene Ppd1 (TaPRR37). We found that overexpression of the truncated TaPRR73 form lacking part of the N-terminal PR domain in transgenic rice promoted heading under long day conditions. Association analysis in common wheat verified that TaPRR73 was an important agronomic photoperiod response gene that significantly affected heading date and plant height; expression analysis proved that specific alleles of TaPRR73-A1 had highly expressed levels in earlier heading lines; the distribution of haplotypes indicated that one of these alleles had been selected in breeding programs. Our results demonstrated that TaPRR73 contributed to regulation of heading date in wheat and could be useful in wheat breeding and in broadening adaptation of the crop to new regions.
机译:光周期反应相关基因在植物生长过程中起着至关重要的作用。在这项研究中,我们专注于TaPRR73,它是“绿色革命”基因Ppd1(TaPRR37)的旁系同源物。我们发现,在长日条件下,转基因水稻中截短的TaPRR73形式的过量表达缺乏N端PR结构域的一部分促进了抽穗。普通小麦的关联分析证实,TaPRR73是重要的农艺光周期反应基因,可显着影响抽穗期和株高。表达分析证明,TaPRR73-A1的特定等位基因在较早的标题中具有高表达水平;单倍型的分布表明这些等位基因之一已在育种程序中选择。我们的结果表明,TaPRR73有助于调节小麦的抽穗期,并可能有助于小麦育种和扩大作物适应新区域的范围。

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