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鉴定与小麦灌浆持续期和抽穗期相关的 QTL。

Identification of QTLs associated with grain-filling duration and heading date in wheat.

机构信息

Siberian Branch of the Russian Academy of Sciences - SB RAS, Institute of Cytology and Genetics - ICG,The Federal State Budgetary Institution of Science Federal Research Center, Department of Plant Genetics, Novosibirsk, Russia.

Siberian Branch of the Russian Academy of Sciences - SB RAS, Institute of Cytology and Genetics, Kurchatov Genomics Center, Novosibirsk, Russia.

出版信息

Braz J Biol. 2024 Aug 5;84:e279154. doi: 10.1590/1519-6984.279154. eCollection 2024.

Abstract

An increase in genetic diversity of bread wheat caused by spring x winter forms leads to an alteration of genetic control of maturity time. Maturity time (MAT) is one of major yield components in wheat, which has two components: the heading date (HD) and grain-filling period (GFP). Using the Illumina Infinium 25k platform we analyzed the genetic control of the HD, GFP and MAT in the F2 and F2:3 populations from a cross between late-ripening spring/winter line 124-1 and spring wheat cultivar Novosibirskaya 31, possessing the same allelic composition of the VRN1 and PPD-D1 genes. The phenotypic evaluation of the populations studied was performed during three years. A total of 17 QTLs were mapped, out of which 4 QTLs for MAT or its components were confirmed over two years. Two common MAT and HD QTLs were identified on the 4A chromosome, and two loci controlling GFP and MAT were found on 6B chromosome. An environmentally stable HD QTL QHd.icg-7B.1 was associated with the FT-B1 gene having a non-synonymous polymorphism [G/C] in its coding region. A novel НD QTL was identified on 7D chromosome. QTL dissection allowed to propose putative genes for QMat.icg4-A and QMat.icg6-B, namely the SPL family gene (TraesCS4A02G359500) and the TCP transcription factor (TraesCS6B02G462100), respectively. The results of this study provide information for further investigation into wheat development.

摘要

春-冬型小麦品种引起的遗传多样性增加导致成熟时间的遗传控制发生改变。成熟时间(MAT)是小麦的主要产量构成因素之一,它有两个组成部分:抽穗期(HD)和灌浆期(GFP)。我们使用 Illumina Infinium 25k 平台分析了晚熟春/冬型品系 124-1 和春小麦品种新西伯利亚 31 之间杂交的 F2 和 F2:3 群体中 HD、GFP 和 MAT 的遗传控制,这两个品种具有相同的 VRN1 和 PPD-D1 基因等位基因组成。对研究的群体进行了三年的表型评估。共定位了 17 个 QTL,其中 4 个 QTL 与 MAT 或其组成部分在两年内得到了验证。在 4A 染色体上鉴定出了两个共同的 MAT 和 HD QTL,在 6B 染色体上发现了两个控制 GFP 和 MAT 的基因座。一个环境稳定的 HD QTL QHd.icg-7B.1 与 FT-B1 基因相关,该基因在其编码区具有非同义多态性 [G/C]。在 7D 染色体上鉴定出了一个新的 HD QTL。QTL 剖析使我们能够为 QMat.icg4-A 和 QMat.icg6-B 提出候选基因,即 SPL 家族基因(TraesCS4A02G359500)和 TCP 转录因子(TraesCS6B02G462100)。本研究的结果为进一步研究小麦发育提供了信息。

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