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精细定位和鉴定小麦 5A 染色体上一个控制株高的主效 QTL。

Fine mapping and characterization of a major QTL for plant height on chromosome 5A in wheat.

机构信息

Institute of Crop Sciences, National Wheat Improvement Center, Chinese Academy of Agricultural Sciences (CAAS), 12 Zhongguancun South Street, Beijing, 100081, China.

Shandong Provincial Key Laboratory of Dryland Farming Technology, College of Agronomy, Qingdao Agricultural University, Qingdao, 266109, Shandong, China.

出版信息

Theor Appl Genet. 2023 Jul 4;136(7):167. doi: 10.1007/s00122-023-04416-9.

Abstract

We precisely mapped QPH.caas-5AL for plant height in wheat, predicted candidate genes and confirmed genetic effects in a panel of wheat cultivars. Plant height is an important agronomic trait, and appropriately reduced height can improve yield potential and stability in wheat, usually combined with sufficient water and fertilizer. We previously detected a stable major-effect quantitative trait locus QPH.caas-5AL for plant height on chromosome 5A in a recombinant inbred line population of the cross 'Doumai × Shi 4185' using the wheat 90 K SNP assay. Here , QPH.caas-5AL was confirmed using new phenotypic data in additional environment and new-developed markers. We identified nine heterozygous recombinant plants for fine mapping of QPH.caas-5AL and developed 14 breeder-friendly kompetitive allele-specific PCR markers in the region of QPH.caas-5AL based on the genome re-sequencing data of parents. Phenotyping and genotyping analyses of secondary populations derived from the self-pollinated heterozygous recombinant plants delimited QPH.caas-5AL into an approximate 3.0 Mb physical region (521.0-524.0 Mb) according to the Chinese Spring reference genome. This region contains 45 annotated genes, and six of them were predicted as the candidates of QPH.caas-5AL based on genome and transcriptome sequencing analyses. We further validated that QPH.caas-5AL has significant effects on plant height but not yield component traits in a diverse panel of wheat cultivars; its dwarfing allele is frequently used in modern wheat cultivars. These findings lay a solid foundation for the map-based cloning of QPH.caas-5AL and also provide a breeding-applicable tool for its marker-assisted selection. Keymessage We precisely mapped QPH.caas-5AL for plant height in wheat, predicted candidate genes and confirmed genetic effects in a panel of wheat cultivars.

摘要

我们在小麦中精确地定位了控制株高的 QPH.caas-5AL,预测了候选基因,并在一组小麦品种中验证了其遗传效应。株高是一个重要的农艺性状,适当降低株高可以提高小麦的产量潜力和稳定性,通常与充足的水和肥料相结合。我们之前在‘Doumai × Shi 4185’的重组自交系群体中,利用小麦 90K SNP 检测,在染色体 5A 上检测到一个稳定的控制株高的主效数量性状位点 QPH.caas-5AL。在这里,我们使用新的表型数据在更多环境中以及新开发的标记来确认 QPH.caas-5AL。我们鉴定了 9 个杂合重组体植物用于 QPH.caas-5AL 的精细定位,并根据亲本的基因组重测序数据,在 QPH.caas-5AL 区域开发了 14 个适合育种者使用的竞争等位基因特异性 PCR 标记。来自自交杂合重组体植物的衍生次级群体的表型和基因型分析将 QPH.caas-5AL 限定在一个大约 3.0 Mb 的物理区域(521.0-524.0 Mb)内,根据中国春参考基因组。该区域包含 45 个注释基因,其中 6 个根据基因组和转录组测序分析被预测为 QPH.caas-5AL 的候选基因。我们进一步验证了 QPH.caas-5AL 在一组不同的小麦品种中对株高有显著影响,但对产量构成性状没有影响;其矮化等位基因经常被用于现代小麦品种。这些发现为 QPH.caas-5AL 的图谱克隆奠定了坚实的基础,也为其标记辅助选择提供了一个具有应用前景的工具。

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