矮化基因 Rht27 的天然变体可提高小麦的产量潜力。

IF 4.2 1区 农林科学 Q1 AGRONOMY
Xiaolin Liu, Shusong Zheng, Shuiquan Tian, Yaoqi Si, Shengwei Ma, Hong-Qing Ling, Jianqing Niu
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引用次数: 0

摘要

关键信息:Rht27是小麦中的矮秆基因,它的发现显示了通过降低株高提高谷物产量的潜力。植株高度在作物结构和谷物产量中起着至关重要的作用,半矮小的降低株高(Rht)等位基因有助于抗倒伏,在 "绿色革命 "中非常重要。然而,在某些环境中,使用这些等位基因会产生一些负面影响,如减少胚轴长度、降低氮素利用效率和减少产量。因此,需要新的矮化基因资源来为克服这些副作用铺平另一条道路。本研究通过诱变 G1812(Triticum urartu,普通小麦 A 亚基因组的祖先)获得了超级矮小突变体 rht27。遗传分析表明,矮小表型受单一隐性遗传因子调控。Rht27 的候选区域被缩小到 3 号染色体上的 1.55 Mb 区域,我们在该区域内发现了两个潜在的候选基因,这些基因在突变体和非突变的 G1812 之间表现出多态性。此外,我们还在普通小麦的自然群体中调查了这两个候选基因的自然变异和精英单倍型。结果表明,自然变异会影响谷物产量成分,而矮化单倍型则显示出改善农艺性状和谷物产量的潜力。虽然 Rht27 的突变会导致 T. urartu 严重矮化,但普通小麦中的天然变异却表现出理想的表型,这表明 Rht27 有潜力通过利用其弱等位基因突变或微调其表达水平来提高小麦产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Natural variant of Rht27, a dwarfing gene, enhances yield potential in wheat.

Natural variant of Rht27, a dwarfing gene, enhances yield potential in wheat.

Key message: Discovery of Rht27, a dwarf gene in wheat, showed potential in enhancing grain yield by reducing plant height. Plant height plays a crucial role in crop architecture and grain yield, and semi-dwarf Reduced Height (Rht) alleles contribute to lodging resistance and were important in "Green Revolution." However, the use of these alleles is associated with some negative side effects in some environments, such as reduced coleoptile length, low nitrogen use efficiency, and reduced yield. Therefore, novel dwarf gene resources are needed to pave an alternative route to overcome these side effects. In this study, a super-dwarf mutant rht27 was obtained by the mutagenesis of G1812 (Triticum urartu, the progenitor of the A sub-genome of common wheat). Genetic analysis revealed that the dwarf phenotype was regulated by a single recessive genetic factor. The candidate region for Rht27 was narrowed to a 1.55 Mb region on chromosome 3, within which we found two potential candidate genes that showed polymorphisms between the mutant and non-mutagenized G1812. Furthermore, the natural variants and elite haplotypes of the two candidates were investigated in a natural population of common wheat. The results showed that the natural variants affect grain yield components, and the dwarf haplotypes show the potential in improving agronomic traits and grain yield. Although the mutation in Rht27 results in severe dwarf phenotype in T. urartu, the natural variants in common wheat showed desirable phenotype, which suggests that Rht27 has the potential to improve wheat yield by utilizing its weak allelic mutation or fine-tuning its expression level.

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来源期刊
CiteScore
9.60
自引率
7.40%
发文量
241
审稿时长
2.3 months
期刊介绍: Theoretical and Applied Genetics publishes original research and review articles in all key areas of modern plant genetics, plant genomics and plant biotechnology. All work needs to have a clear genetic component and significant impact on plant breeding. Theoretical considerations are only accepted in combination with new experimental data and/or if they indicate a relevant application in plant genetics or breeding. Emphasizing the practical, the journal focuses on research into leading crop plants and articles presenting innovative approaches.
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