GWAS阐明了印度春小麦在不同水分条件下的谷物产量遗传学。

IF 4.4 1区 农林科学 Q1 AGRONOMY Theoretical and Applied Genetics Pub Date : 2024-07-07 DOI:10.1007/s00122-024-04680-3
Arpit Gaur, Yogesh Jindal, Vikram Singh, Ratan Tiwari, Philomin Juliana, Deepak Kaushik, K J Yashavantha Kumar, Om Parkash Ahlawat, Gyanendra Singh, Sonia Sheoran
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引用次数: 0

摘要

关键信息:明确了不同水源条件下与产量相关的自然变异和关键基因,并确定了印度小麦育种计划中遗传增益的基因组特征。开发并验证了一种新型的 KASP 标记,用于鉴定水胁迫下的 TKW。对 300 个春小麦基因型进行了全面的全基因组关联研究,以阐明在完全灌溉、限制用水和模拟无水条件下与谷物产量及其 11 个贡献性状相关的自然变异。利用 35K 小麦育种者阵列,我们确定了 1155 个数量性状核苷酸(QTN),其中 207 个 QTN 在不同条件下表现出稳定性。利用 3.0 Mbp 的全基因组 LD 值将这些 QTN 进一步划分为 539 个基因组区域,揭示了不同性状和条件下的多效应控制。在灌溉条件下,亚基因组 A 与性状显著相关,而在水分胁迫条件下,亚基因组 B 则显示出更多的 QTN。与 QTNs 显著相关的有利等位基因被划分出来,对提高性状表现具有明显的金字塔效应。此外,只有 921 个 QTN 的等位基因对群体平均值有显著影响。等位基因剖析突出表明,C-306 是耐旱性的最潜在来源。此外,还发现了 762 个与重要 QTN 重叠的基因,并将范围缩小到 27 个推定候选基因,这些基因与 29 个在不同生长条件下表达(≥ 0.5 tpm)相关性的新型功能 SNP 重叠。针对严重干旱条件下调节千粒重的基因 TraesCS2A03G1123700,开发了一种新的 KASP 检测方法。基因组选择模型(GBLUP、BayesB、MxE 和 R-Norm)在不同环境下的平均预测准确率为 0.06-0.58,显示了性状选择的潜力。对印度小麦育种计划的回顾性分析表明,自 1960 年以来,每个育种周期的 GY 遗传增益率约为 0.56%,这支持了驱动性状选择和遗传增益的基因组特征的鉴定。这些发现为提高全球小麦育种计划的遗传增益率提供了启示。
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GWAS elucidated grain yield genetics in Indian spring wheat under diverse water conditions.

Key message: Underpinned natural variations and key genes associated with yield under different water regimes, and identified genomic signatures of genetic gain in the Indian wheat breeding program. A novel KASP marker for TKW under water stress was developed and validated. A comprehensive genome-wide association study was conducted on 300 spring wheat genotypes to elucidate the natural variations associated with grain yield and its eleven contributing traits under fully irrigated, restricted water, and simulated no water conditions. Utilizing the 35K Wheat Breeders' Array, we identified 1155 quantitative trait nucleotides (QTNs), with 207 QTNs exhibiting stability across diverse conditions. These QTNs were further delimited into 539 genomic regions using a genome-wide LD value of 3.0 Mbp, revealing pleiotropic control across traits and conditions. Sub-genome A was significantly associated with traits under irrigated conditions, while sub-genome B showed more QTNs under water stressed conditions. Favourable alleles with significantly associated QTNs were delineated, with a notable pyramiding effect for enhancing trait performance. Additionally, allele of only 921 QTNs significantly affected the population mean. Allele profiling highlighted C-306 as a most potential source of drought tolerance. Moreover, 762 genes overlapping significant QTNs were identified, narrowing down to 27 putative candidate genes overlapping 29 novel and functional SNPs expressing (≥ 0.5 tpm) relevance across various growth conditions. A new KASP assay was developed, targeting a gene TraesCS2A03G1123700 regulating thousand kernel weight under severe drought condition. Genomic selection models (GBLUP, BayesB, MxE, and R-Norm) demonstrated an average prediction accuracy of 0.06-0.58 across environments, indicating potential for trait selection. Retrospective analysis of the Indian wheat breeding program supported a genetic gain in GY at the rate of ca. 0.56% per breeding cycle, since 1960, supporting the identification of genomic signatures driving trait selection and genetic gain. These findings offer insight into improving the rate of genetic gain in wheat breeding programs globally.

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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.
期刊最新文献
Leveraging genomic prediction to surpass current yield gains in spring barley. Fine mapping of QGPC.caas-7AL for grain protein content in bread wheat. Genetic loci associated with sorghum drought tolerance in multiple environments and their sensitivity to environmental covariables. Correction to: Identification and development of functional markers for purple grain genes in durum wheat (Triticum durum Desf.). Correction to: Identification and map‑based cloning of an EMS‑induced mutation in wheat gene TaSP1 related to spike architecture.
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