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鉴定花生中稳定的主要蔗糖相关 QTL 和风味改良的诊断标记。

Identification of a stable major sucrose-related QTL and diagnostic marker for flavor improvement in peanut.

机构信息

Key Laboratory of Biology and Genetic Improvement of Oil Crops, Ministry of Agriculture and Rural Affairs, Oil Crops Research Institute of the Chinese Academy of Agricultural Sciences, Wuhan, 430062, Hubei, China.

出版信息

Theor Appl Genet. 2023 Mar 23;136(4):78. doi: 10.1007/s00122-023-04306-0.

Abstract

An InDel marker closely linked with a major and stable quantitative trait locus (QTL) on chromosome A08, qSUCA08.2, controlling sucrose content will benefit peanut flavor improvement. Sucrose is the main soluble sugar in mature peanut kernel, and its content is a key determinant of flavor. However, the genetic basis of sucrose content in peanut remains poorly understood, which limits the progress of flavor improvement. In the present study, two genomic regions (qSUCA08a and qSUCB06a) for sucrose content on chromosomes A08 and B06 were identified by QTL-seq in a RIL population derived from a cross between Zhonghua 10 and ICG 12625. In the interval of qSUCB06a, QTL qSUCB06.2 was detected through QTL mapping in a single environment. The qSUCA08a was further dissected into 3 adjacent genomic regions using linkage analysis including a major QTL qSUCA08.2 explaining 5.43-17.84% phenotypic variation across five environments. A 61-bp insertion at position 35,099,320 in the higher sucrose parent ICG 12625 was found in qSUCA08.2. An InDel marker SUC.InDel.A08 based on the insertion/deletion polymorphism was developed and validated within a natural population containing 172 peanut cultivars in two environments. The mean sucrose content of 93 cultivars with ICG 12625 allele was significantly higher than that of 79 cultivars with Zhonghua 10 allele. The qSUCA08.2 corresponding to a 2.11 Mb interval harbored 110 genes. Among these genes, a total of 19 genes were considered as candidate genes including 5 non-synonymous mutation genes and 14 differentially expressed genes during seed development. These results provide new insights into the genetic basis of sucrose regulation in peanut and benefit the breeding program for developing new varieties with excellent flavor.

摘要

与控制蔗糖含量的 A08 号染色体上的主要和稳定的数量性状位点 (QTL) qSUCA08.2 紧密连锁的 InDel 标记将有利于提高花生的风味。蔗糖是成熟花生仁中主要的可溶性糖,其含量是风味的关键决定因素。然而,花生中蔗糖含量的遗传基础知之甚少,这限制了风味改良的进展。本研究利用中花 10 与 ICG 12625 杂交衍生的 RIL 群体通过 QTL-seq 鉴定了 A08 和 B06 染色体上的两个蔗糖含量的基因组区域 (qSUCA08a 和 qSUCB06a)。在 qSUCB06a 区间内,通过单环境 QTL 作图检测到 QTL qSUCB06.2。利用连锁分析进一步将 qSUCA08a 划分为 3 个相邻的基因组区域,包括解释 5.43-17.84% 表型变异的主要 QTL qSUCA08.2。在较高蔗糖亲本 ICG 12625 中,在 35,099,320 位置发现了 61-bp 的插入。在包含 172 个花生品种的自然群体中,在两个环境下,基于插入/缺失多态性开发并验证了一个 InDel 标记 SUC.InDel.A08。在含有 ICG 12625 等位基因的 93 个品种中,蔗糖含量的平均值显著高于含有中花 10 等位基因的 79 个品种。对应于 2.11 Mb 区间的 qSUCA08.2 包含 110 个基因。在这些基因中,共有 19 个基因被认为是候选基因,包括 5 个非同义突变基因和 14 个在种子发育过程中差异表达的基因。这些结果为花生蔗糖调控的遗传基础提供了新的见解,有利于开发具有优良风味的新品种的选育计划。

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