State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University, Chengdu, China.
Triticeae Research Institute, Sichuan Agricultural University, Chengdu, China.
Theor Appl Genet. 2024 Jan 24;137(1):31. doi: 10.1007/s00122-023-04536-2.
A co-located novel QTL for TFS, FPs, FMs, FFS, FFPs, KWS, and KWPs with potential of improving wheat yield was identified and validated. Spike-related traits, including fertile florets per spike (FFS), kernel weight per spike (KWS), total florets per spike (TFS), florets per spikelet (FPs), florets in the middle spikelet (FMs), fertile florets per spikelet (FFPs), and kernel weight per spikelet (KWPs), are key traits in improving wheat yield. In the present study, quantitative trait loci (QTL) for these traits evaluated under various environments were detected in a recombinant inbred line population (msf/Chuannong 16) mainly genotyped using the 16 K SNP array. Ultimately, we identified 60 QTL, but only QFFS.sau-MC-1A for FFS was a major and stably expressed QTL. It was located on chromosome arm 1AS, where loci for TFS, FPs, FMs, FFS, FFPs, KWS, and KWPs were also simultaneously co-mapped. The effect of QFFS.sau-MC-1A was further validated in three independent segregating populations using a Kompetitive Allele-Specific PCR marker. For the co-located QTL, QFFS.sau-MC-1A, the presence of a positive allele from msf was associate with increases for all traits: + 12.29% TFS, + 10.15% FPs, + 13.97% FMs, + 17.12% FFS, + 14.75% FFPs, + 22.17% KWS, and + 19.42% KWPs. Furthermore, pleiotropy analysis showed that the positive allele at QFFS.sau-MC-1A simultaneously increased the spike length, spikelet number per spike, and thousand-kernel weight. QFFS.sau-MC-1A represents a novel QTL for marker-assisted selection with the potential for improving wheat yield. Four genes, TraesCS1A03G0012700, TraesCS1A03G0015700, TraesCS1A03G0016000, and TraesCS1A03G0016300, which may affect spike development, were predicted in the physical interval harboring QFFS.sau-MC-1A. Our results will help in further fine mapping QFFS.sau-MC-1A and be useful for improving wheat yield.
一个与小麦穗部相关的新的 QTL 被鉴定出来,它与小穗数(TFS)、每穗粒数(FPs)、小穗中部小花数(FMs)、每小穗粒数(FFPs)、每穗粒重(KWS)和每小穗粒重(KWPs)有关,并且可能提高小麦产量。本研究以主要基于 16K SNP 芯片进行基因型分析的重组自交系群体(msf/Chuannong 16)为材料,对不同环境下的这些性状进行了数量性状位点(QTL)检测,最终共鉴定到 60 个 QTL,但只有 FFS 的主效且稳定表达的 QTL QFFS.sau-MC-1A 被鉴定出来。该 QTL 位于 1AS 染色体臂上,TFS、FPs、FMs、FFS、FFPs、KWS 和 KWPs 的位点也同时被共定位到该区域。利用 Kompetitive Allele-Specific PCR 标记,在三个独立的分离群体中进一步验证了 QFFS.sau-MC-1A 的存在。对于共定位的 QTL QFFS.sau-MC-1A,msf 中阳性等位基因的存在与所有性状的增加有关:TFS 增加 12.29%,FPs 增加 10.15%,FMs 增加 13.97%,FFS 增加 17.12%,FFPs 增加 14.75%,KWS 增加 22.17%,KWPs 增加 19.42%。此外,多效性分析表明,QFFS.sau-MC-1A 上的阳性等位基因同时增加了穗长、小穗数和千粒重。QFFS.sau-MC-1A 是一个新的 QTL,可用于标记辅助选择,具有提高小麦产量的潜力。在包含 QFFS.sau-MC-1A 的物理区间内,预测到了 TraesCS1A03G0012700、TraesCS1A03G0015700、TraesCS1A03G0016000 和 TraesCS1A03G0016300 四个可能影响穗发育的基因。我们的研究结果将有助于进一步精细定位 QFFS.sau-MC-1A,并有助于提高小麦产量。