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鉴定出小麦 Q 同源物 AP2L-D5 的 miR172 结合位点的一个新 SNP 与穗部紧凑度和农艺性状有关。

Identification of a novel SNP in the miR172 binding site of Q homoeolog AP2L-D5 is associated with spike compactness and agronomic traits in wheat (Triticum aestivum L.).

机构信息

John Innes Centre, Norwich Research Park, Norwich, NR4 7UH, UK.

出版信息

Theor Appl Genet. 2023 Dec 23;137(1):13. doi: 10.1007/s00122-023-04514-8.

Abstract

This study found that the compact spike locus of ANK-15 is on chromosome 5D instead of 2B. We have identified a new allele of AP2L-D5 as the candidate causal polymorphism. Spike architecture is a key determinant of wheat yield, a crop which supports much of the human diet but whose yield gains are stagnating. Spike architecture mutants offer opportunities to identify genetic factors contributing to inflorescence development. Here, we investigate the locus underlying the compact spike phenotype of mutant line ANK-15 by conducting mRNA-sequencing and genetic mapping using ANK-15 and its non-compact spike near-isogenic line Novosibirskaya 67 (N67). Previous literature has placed the compact spike locus of ANK-15 to chromosome 2B. However, based on the single nucleotide polymorphisms (SNPs) identified using mRNA-seq data, we were unable to detect polymorphisms between N67 and ANK-15 in the putative chromosome 2B region. We performed differential expression analysis of developing rachis and found that AP2L-D5, the D homoeolog of the domestication Q gene, is upregulated in ANK-15 in comparison to N67. ANK-15 carries a SNP in the microRNA172 binding site of AP2L-D5, which is predicted to lead to higher expression of AP2L-D5 due to decreased miRNA172-mediated degradation. Furthermore, we performed genetic mapping using an ANK-15 × N67 F population and found a single quantitative trait locus on chromosome 5D coinciding with the position of AP2L-D5. This result suggests that AP2L-D5 is likely the underlying causal gene for the compact spike phenotype in ANK-15. We performed a field trial to investigate the effect of the AP2L-D5 allele on agronomic traits and found that the AP2L-D5 allele from ANK-15 is associated with a significant reduction in height, increased thousand grain weight (TGW), and increased grain width.

摘要

本研究发现,ANK-15 的紧凑穗突座位位于 5D 染色体上,而不是 2B 染色体上。我们已经确定了 AP2L-D5 的一个新等位基因是候选因果多态性。穗状结构是小麦产量的关键决定因素,小麦是人类饮食的主要来源,但产量增长却停滞不前。穗状结构突变体为鉴定参与花序发育的遗传因素提供了机会。在这里,我们通过对 ANK-15 及其非紧凑穗近等基因系 Novosibirskaya 67(N67)进行 mRNA 测序和遗传作图,研究了突变体系 ANK-15 紧凑穗表型的基因座。先前的文献将 ANK-15 的紧凑穗座位定位在 2B 染色体上。然而,基于使用 mRNA-seq 数据鉴定的单核苷酸多态性(SNP),我们无法在假定的 2B 染色体区域检测到 N67 和 ANK-15 之间的多态性。我们对发育穗轴进行差异表达分析,发现 AP2L-D5,驯化 Q 基因的 D 同系物,在 ANK-15 中与 N67 相比上调。ANK-15 在 AP2L-D5 的 microRNA172 结合位点携带一个 SNP,预计由于 miRNA172 介导的降解减少,导致 AP2L-D5 的表达升高。此外,我们使用 ANK-15×N67 F 群体进行遗传作图,发现 5D 染色体上存在一个单一的数量性状位点,与 AP2L-D5 的位置一致。这一结果表明,AP2L-D5 很可能是 ANK-15 紧凑穗表型的潜在因果基因。我们进行了田间试验,研究了 AP2L-D5 等位基因对农艺性状的影响,发现来自 ANK-15 的 AP2L-D5 等位基因与株高显著降低、千粒重(TGW)增加和粒宽增加有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0112/10748775/f44ca9a987c1/122_2023_4514_Fig1_HTML.jpg

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