Wheat Research Institute, Gansu Academy of Agricultural Sciences, Lanzhou, China.
Plant Genome. 2024 Sep;17(3):e20492. doi: 10.1002/tpg2.20492. Epub 2024 Jul 31.
Spike length (SL) is one of the major contributors to wheat yield. Uncovering major genetic regions affecting SL is an integral part of elucidating the genetic basis of wheat yield traits and goes further pivotal for marker-assisted selection breeding. A genome-wide meta-quantitative trait locus (MQTL) analysis of wheat SL resulted in the refinement of 48 MQTLs using 227 initial QTLs retrieved from previous studies published over the past decades. The average confidence interval (CI) of these MQTLs amounted to a 5.16-fold reduction compared to the mean CI of the initial QTLs. As many as 2240 putative candidate genes (CGs) were identified from the MQTL intervals using transcriptomics data in silico of wheat, of which 58 CGs were identified based on wheat-rice homology analysis. For the key CG affecting SL, a functional kompetitive allele-specific PCR (KASP) marker, TaPP2C-3B-KASP, was developed to distinguish TaPP2C-3B-Hap I and TaPP2C-3B-Hap II based on the single nucleotide polymorphism at the 272 bp (A/G). The frequency of the elite allelic variation TaPP2C-3B-Hap II with high SL remained relatively stable at about 49.62% from the 1960s to 1990s. Integration of MQTL analysis and in silico transcriptome data led to a significant increase in the reliability of CGs for the genetic regulation of wheat SL, and the haplotype analysis for key CGs TaPP2C-3B of SL provided insights into the biological function of the TaPP2C-3B gene.
穗长(SL)是小麦产量的主要贡献因素之一。揭示影响 SL 的主要遗传区域是阐明小麦产量性状遗传基础的重要组成部分,并且对标记辅助选择育种具有进一步的关键作用。对小麦 SL 的全基因组元数量性状基因座(MQTL)分析,利用过去几十年发表的 227 个初始 QTL ,细化了 48 个 MQTL。与初始 QTL 的平均置信区间(CI)相比,这些 MQTL 的平均置信区间(CI)缩小了 5.16 倍。利用小麦转录组数据的计算机模拟,从 MQTL 区间中鉴定出多达 2240 个推定候选基因(CG),其中 58 个 CG 是基于小麦-水稻同源性分析确定的。对于影响 SL 的关键 CG,开发了一种功能竞争性等位基因特异性 PCR(KASP)标记 TaPP2C-3B-KASP,用于根据 272 bp 处的单核苷酸多态性(A/G)区分 TaPP2C-3B-Hap I 和 TaPP2C-3B-Hap II。从 20 世纪 60 年代到 90 年代,具有高 SL 的优良等位基因变异 TaPP2C-3B-Hap II 的频率相对稳定在约 49.62%左右。MQTL 分析和计算机转录组数据的整合,显著提高了 CG 对小麦 SL 遗传调控的可靠性,并且对 SL 关键 CG TaPP2C-3B 的单倍型分析为 TaPP2C-3B 基因的生物学功能提供了深入了解。