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四棱豆[(L.)DC.]的首张遗传连锁图谱及花、荚和种子相关性状的QTL定位

The First Genetic Linkage Map of Winged Bean [ (L.) DC.] and QTL Mapping for Flower-, Pod-, and Seed-Related Traits.

作者信息

Chankaew Sompong, Sriwichai Sasiprapa, Rakvong Teppratan, Monkham Tidarat, Sanitchon Jirawat, Tangphatsornruang Sithichoke, Kongkachana Wasitthee, Sonthirod Chutima, Pootakham Wirulda, Amkul Kitiya, Kaewwongwal Anochar, Laosatit Kularb, Somta Prakit

机构信息

Department of Agronomy, Faculty of Agriculture, Khon Kaen University, Khon Kaen 40002, Thailand.

National Omics Center (NOC), National Science and Technology Development Agency, 111 Thailand Science Park, Khlong Nueng, Khlong Luang, Pathum Thani 12120, Thailand.

出版信息

Plants (Basel). 2022 Feb 12;11(4):500. doi: 10.3390/plants11040500.

Abstract

Winged bean [ (L.) DC.] (2n = 2× = 18) is a tropical legume crop with multipurpose usages. Recently, the winged bean has regained attention from scientists as a food protein source. Currently, there is no breeding program for winged bean cultivars. All winged bean cultivars are landraces or selections from landraces. Molecular markers and genetic linkage maps are pre-requisites for molecular plant breeding. The aim of this study was to develop a high-density linkage map and identify quantitative trait loci (QTLs) for pod and seed-related traits of the winged bean. An F population of 86 plants was developed from a cross between winged bean accessions W054 and TPT9 showing contrasting pod length, and pod, flower and seed colors. A genetic linkage map of 1384 single nucleotide polymorphism (SNP) markers generated from restriction site-associated DNA sequencing was constructed. The map resolved nine haploid chromosomes of the winged bean and spanned the cumulative length of 4552.8 cM with the number of SNPs per linkage ranging from 36 to 218 with an average of 153.78. QTL analysis in the F population revealed 31 QTLs controlling pod length, pod color, pod anthocyanin content, flower color, and seed color. The number of QTLs per trait varied between 1 (seed length) to 7 (banner color). Interestingly, the major QTLs for pod color, anthocyanin content, and calyx color, and for seed color and flower wing color were located at the same position. The high-density linkage map QTLs reported in this study will be useful for molecular breeding of winged beans.

摘要

四棱豆[(L.)DC.](2n = 2× = 18)是一种具有多种用途的热带豆科作物。最近,四棱豆作为一种食物蛋白质来源重新受到科学家的关注。目前,还没有针对四棱豆品种的育种计划。所有四棱豆品种都是地方品种或从地方品种中选育出来的。分子标记和遗传连锁图谱是分子植物育种的先决条件。本研究的目的是构建一张高密度连锁图谱,并鉴定四棱豆荚果和种子相关性状的数量性状位点(QTL)。以四棱豆种质W054和TPT9为亲本杂交构建了一个包含86个单株的F群体,这两个亲本在荚果长度、荚果、花朵和种子颜色上表现出明显差异。利用限制性位点相关DNA测序技术开发了1384个单核苷酸多态性(SNP)标记,并构建了遗传连锁图谱。该图谱解析了四棱豆的9条单倍体染色体,累计长度为4552.8 cM,每个连锁群上的SNP数量从36个到218个不等,平均为153.78个。对F群体进行QTL分析,共检测到31个控制荚果长度、荚果颜色、荚果花青素含量、花朵颜色和种子颜色的QTL。每个性状的QTL数量在1个(种子长度)到7个(旗瓣颜色)之间变化。有趣的是,控制荚果颜色、花青素含量和花萼颜色以及种子颜色和翼瓣颜色的主要QTL位于同一位置。本研究报道的高密度连锁图谱QTL将有助于四棱豆的分子育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df65/8878720/4fc47665727a/plants-11-00500-g001.jpg

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