大麦晚花ppd-H1等位基因的起源研究。

IF 4.2 1区 农林科学 Q1 AGRONOMY
Rajiv Sharma, Salar Shaaf, Kerstin Neumann, Peter Civan, Yu Guo, Martin Mascher, Michal David, Adnan Al-Yassin, Hakan Özkan, Tom Blake, Sariel Hübner, Nora P Castañeda-Álvarez, Stefania Grando, Salvatore Ceccarelli, Michael Baum, Andreas Graner, George Coupland, Klaus Pillen, Ehud Weiss, Ian J Mackay, Wayne Powell, Benjamin Kilian
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引用次数: 0

摘要

为了培育适应气候变化的作物,了解影响适应的遗传和环境因素至关重要。大麦为研究适应气候变化提供了一种模式物种。在此,我们详细分析了一个主要光周期响应位点的遗传变异,并将其与大麦的驯化历史和传播联系起来。PPD-H1基因座(一个伪响应调节器7)在长日照条件下促进开花,该基因座的自然突变导致隐性、开花晚的PPD-H1等位基因。这种突变在北欧等高纬度环境中被证明是有益的,在那里它可以在漫长的春季延长营养生长。研究人员通过对942个自发性大麦、5个农业大麦和1110个驯化大麦(Hordeum vulgare)进行重新测序,推断出突变的晚花期ppd-H1等位基因的起源。我们证明,晚花表型起源于南部黎凡特的沙漠型野生大麦,并提供证据表明突变ppd-H1等位基因的驯化后起源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the origin of the late-flowering ppd-H1 allele in barley.

To breed for climate resilient crops, an understanding of the genetic and environmental factors influencing adaptation is critical. Barley provides a model species to study adaptation to climate change. Here we present a detailed analysis of genetic variation at a major photoperiod response locus and relate this to the domestication history and dispersal of barley. The PPD-H1 locus (a PSEUDO-RESPONSE REGULATOR 7) promotes flowering under long-day conditions, and a natural mutation at this locus resulted in a recessive, late-flowering ppd-H1 allele. This mutation proved beneficial in high-latitude environments such as Northern Europe, where it allows extended vegetative growth during long spring days. We infer the origin of the mutated late-flowering ppd-H1 allele by re-sequencing a large geo-referenced collection of 942 Hordeum spontaneum, 5 Hordeum agriocrithon and 1110 domesticated (Hordeum vulgare) barleys. We demonstrate that the late-flowering phenotype originated from Desert-type wild barley in the Southern Levant and present evidence suggesting a post-domestication origin of the mutated ppd-H1 allele.

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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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