Chromosomal mapping of a major genetic locus from Agropyron cristatum chromosome 6P that influences grain number and spikelet number in wheat.

IF 4.2 1区 农林科学 Q1 AGRONOMY
Yida Lin, Shenghui Zhou, Wenjing Yang, Bing Han, Xuezhong Liang, Yuxin Zhang, Jinpeng Zhang, Haiming Han, Baojin Guo, Weihua Liu, Xinming Yang, Xiuquan Li, Lihui Li
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引用次数: 0

Abstract

Key message: A novel locus on Agropyron cristatum chromosome 6P that increases grain number and spikelet number was identified in wheat-A. cristatum derivatives and across 3 years. Agropyron cristatum (2n = 4x = 28, PPPP), which has the characteristics of high yield with multiple flowers and spikelets, is a promising gene donor for wheat high-yield improvement. Identifying the genetic loci and genes that regulate yield could elucidate the genetic variations in yield-related traits and provide novel gene sources and insights for high-yield wheat breeding. In this study, cytological analysis and molecular marker analysis revealed that del10a and del31a were wheat-A. cristatum chromosome 6P deletion lines. Notably, del10a carried a segment of the full 6PS and 6PL bin (1-13), while del31a carried a segment of the full 6PS and 6PL bin (1-8). The agronomic characterization and genetic population analysis confirmed that the 6PL bin (9-13) brought about an increase in grain number per spike (average increase of 10.43 grains) and spikelet number per spike (average increase of 3.67) over the three growing seasons. Furthermore, through resequencing, a multiple grain number locus was mapped to the physical interval of 593.03-713.89 Mb on chromosome 6P of A. cristatum Z559. The RNA-seq analysis revealed the expression of 537 genes in the del10a young spike tissue, with the annotation indicating that 16 of these genes were associated with grain number and spikelet number. Finally, a total of ten A. cristatum-specific molecular markers were developed for this interval. In summary, this study presents novel genetic material that is useful for high-yield wheat breeding initiatives to meet the challenge of global food security through enhanced agricultural production.

Abstract Image

影响小麦粒数和小穗数的 Agropyron cristatum 染色体 6P 的一个主要遗传位点的染色体图谱。
关键信息:在Agropyron cristatum染色体6P上发现了一个新的基因座,该基因座可增加小麦-A. cristatum衍生物的粒数和穗数,并可跨越3年。Agropyron cristatum(2n = 4x = 28,PPPP)具有多花多穗的高产特性,是小麦高产改良的理想基因供体。鉴定调控产量的基因位点和基因可以阐明产量相关性状的遗传变异,为小麦高产育种提供新的基因来源和见解。本研究通过细胞学分析和分子标记分析发现,del10a和del31a是小麦-A. cristatum染色体6P缺失系。值得注意的是,del10a带有完整的6PS和6PL区段(1-13),而del31a带有完整的6PS和6PL区段(1-8)。农艺特征和遗传群体分析证实,在三个生长季中,6PL 仓(9-13)增加了每穗粒数(平均增加 10.43 粒)和每穗小穗数(平均增加 3.67 个)。此外,通过重测序,一个多粒数基因座被映射到 A. cristatum Z559 的 6P 染色体上 593.03-713.89 Mb 的物理区间。RNA-seq分析显示,在del10a幼穗组织中有537个基因表达,注释表明其中16个基因与粒数和小穗数有关。最后,针对该区间共开发了 10 个 A. cristatum 特异性分子标记。总之,这项研究提供了新的遗传材料,有助于高产小麦育种计划,通过提高农业产量来应对全球粮食安全的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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