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从温带和热带种质中导入重组玉米自交系的含油量基因挖掘。

Mining of Oil Content Genes in Recombinant Maize Inbred Lines with Introgression from Temperate and Tropical Germplasm.

机构信息

Institute of Food Crops, Yunnan Academy of Agricultural Sciences, Kunming 650205, China.

College of Agronomy and Biotechnology, Yunnan Agricultural University, Kunming 650201, China.

出版信息

Int J Mol Sci. 2024 Oct 8;25(19):10813. doi: 10.3390/ijms251910813.

Abstract

The oil content of maize kernels is essential to determine its nutritional and economic value. A multiparent population (MPP) consisting of five recombinant inbred line (RIL) subpopulations was developed to elucidate the genetic basis of the total oil content (TOC) in maize. The MPP used the subtropical maize inbred lines CML312 and CML384, along with the tropical maize inbred lines CML395, YML46, and YML32 as the female parents, and Ye107 as the male parent. A genome-wide association study (GWAS) was performed using 429 RILs of the multiparent population across three environments, employing 584,847 high-quality single nucleotide polymorphisms (SNPs). Furthermore, linkage analysis was performed in the five subpopulations to identify quantitative trait loci (QTL) linked to TOC in maize. Through QTL mapping and GWAS, 18 QTLs and 60 SNPs that were significantly associated with TOC were identified. Two novel candidate genes, and , related to TOC in maize and located on chromosome 1 were reported, which have not been previously reported. These genes are involved in biosynthesis, lipid signal transduction, plant development and metabolism, and stress responses, potentially influencing maize TOC. Haplotype analysis of and revealed that Hap3 could be considered a superior haplotype for increasing TOC in maize. A co-located SNP (SNP-75791466) on chromosome 1, located 5648 bp and 11,951 bp downstream of the candidate genes and , respectively, was found to be expressed in various maize tissues. The highest expression was observed in embryos after pollination, indicating that embryos are the main tissue for oil accumulation in maize. This study provides a theoretical basis for understanding the genetic mechanisms underlying maize TOC and developing high-quality, high-oil maize varieties.

摘要

玉米粒的含油量对于确定其营养价值和经济价值至关重要。为了阐明玉米总油含量(TOC)的遗传基础,我们构建了一个由五个重组自交系(RIL)亚群组成的多亲本群体(MPP)。该 MPP 以亚热带玉米自交系 CML312 和 CML384,以及热带玉米自交系 CML395、YML46 和 YML32 作为母本,以 Ye107 作为父本。我们在三个环境中对由 429 个 RIL 组成的多亲本群体进行了全基因组关联研究(GWAS),使用了 584877 个高质量的单核苷酸多态性(SNP)。此外,我们还在五个亚群中进行了连锁分析,以鉴定与玉米 TOC 相关的数量性状位点(QTL)。通过 QTL 作图和 GWAS,鉴定出与玉米 TOC 显著相关的 18 个 QTL 和 60 个 SNP。报告了两个与玉米 TOC 相关的新候选基因 和 ,它们位于 1 号染色体上,以前没有报道过。这些基因参与生物合成、脂质信号转导、植物发育和代谢以及应激反应,可能影响玉米 TOC。和 的单倍型分析表明,Hap3 可以被认为是提高玉米 TOC 的优势单倍型。在候选基因 和 下游的 5648 bp 和 11951 bp 处,我们发现了位于 1 号染色体上的一个共定位 SNP(SNP-75791466),该 SNP 在各种玉米组织中均有表达。授粉后胚胎中的表达量最高,表明胚胎是玉米中油积累的主要组织。这项研究为了解玉米 TOC 的遗传机制和开发优质、高油玉米品种提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92a3/11477330/dfb47b73c36d/ijms-25-10813-g001.jpg

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