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长绿豆幼苗下胚轴长度的生理分析和遗传图谱构建

Physiological Analysis and Genetic Mapping of Short Hypocotyl Trait in L.

机构信息

State Key Laboratory of Aridland Crop Science, College of Agronomy, Gansu Agricultural University, Lanzhou 730070, China.

出版信息

Int J Mol Sci. 2023 Oct 21;24(20):15409. doi: 10.3390/ijms242015409.

Abstract

Hypocotyl length is a botanical trait that affects the cold tolerance of L. (). In this study, we constructed an F segregating population using the cold-resistant short hypocotyl variety '16VHNTS158' and the cold-sensitive long hypocotyl variety 'Tianyou 2288' as the parents, and BSA-seq was employed to identify candidate genes for hypocotyl length in . The results of parental differences showed that the average hypocotyl lengths of '16VHNTS158' and 'Tianyou 2288' were 0.41 cm and 0.77 cm at the 5~6 leaf stage, respectively, after different low-temperature treatments, and '16VHNTS158' exhibited lower relative ion leakage rates compared to 'Tianyou 2288'. The contents of indole acetic acid (IAA), gibberellin (GA), and brassinosteroid (BR) in hypocotyls of '16VHNTS158' and 'Tianyou 2288' increased with decreasing temperatures, but the IAA and GA contents were significantly higher than those of 'Tianyou 2288', and the BR content was lower than that of 'Tianyou 2288'. The genetic analysis results indicate that the genetic model for hypocotyl length follows the 2MG-A model. By using SSR molecular markers, a QTL locus associated with hypocotyl length was identified on chromosome C04. The additive effect value of this locus was 0.025, and it accounted for 2.5% of the phenotypic variation. BSA-Seq further localized the major effect QTL locus on chromosome C04, associating it with 41 genomic regions. The total length of this region was 1.06 Mb. Within this region, a total of 20 non-synonymous mutation genes were identified between the parents, and 26 non-synonymous mutation genes were found within the pooled samples. In the reference genome of , this region was annotated with 24 candidate genes. These annotated genes are predominantly enriched in four pathways: DNA replication, nucleotide excision repair, plant hormone signal transduction, and mismatch repair. The findings of this study provide a theoretical basis for cloning genes related to hypocotyl length in winter rapeseed and their utilization in breeding.

摘要

下胚轴长度是影响油菜 () 耐冷性的一个植物学特征。在本研究中,我们以耐冷性短下胚轴品种‘16VHNTS158’和冷感性长下胚轴品种‘天油 2288’为亲本构建了 F2 分离群体,利用 BSA-seq 鉴定了油菜下胚轴长度的候选基因。亲本差异分析结果表明,低温处理后,5~6 叶期‘16VHNTS158’和‘天油 2288’的平均下胚轴长度分别为 0.41cm 和 0.77cm,与‘天油 2288’相比,‘16VHNTS158’的相对离子渗漏率较低。‘16VHNTS158’和‘天油 2288’下胚轴中吲哚乙酸(IAA)、赤霉素(GA)和油菜素内酯(BR)的含量随温度的降低而增加,但 IAA 和 GA 的含量明显高于‘天油 2288’,而 BR 的含量低于‘天油 2288’。遗传分析结果表明,下胚轴长度的遗传模型符合 2MG-A 模型。利用 SSR 分子标记,在第 C04 染色体上鉴定到一个与下胚轴长度相关的 QTL 位点。该位点的加性效应值为 0.025,占表型变异的 2.5%。BSA-Seq 进一步将主效 QTL 位点定位在第 C04 染色体上,与 41 个基因组区域相关联。该区域的总长度为 1.06Mb。在该区域内,在亲本之间共鉴定到 20 个非同义突变基因,在混合样本中发现了 26 个非同义突变基因。在油菜的参考基因组中,该区域注释了 24 个候选基因。这些注释基因主要富集在四个途径中:DNA 复制、核苷酸切除修复、植物激素信号转导和错配修复。本研究为克隆冬油菜下胚轴长度相关基因及其在育种中的利用提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a2f/10607371/f49838814463/ijms-24-15409-g001.jpg

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