Construction of a high-density genetic map for yardlong bean and identification of ANT1 as a regulator of anthocyanin biosynthesis.

IF 7.6 Q1 GENETICS & HEREDITY
园艺研究(英文) Pub Date : 2023-11-27 eCollection Date: 2024-01-01 DOI:10.1093/hr/uhad247
Hongmei Zhang, Wei Zhang, Shan Meng, Linchong Hui, Xiaoqing Liu, Wei Chen, Wei Yan, Xin Chen, Huatao Chen
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引用次数: 0

Abstract

Because its long, tender pods supply essential proteins, vitamins, and fibers to humans, yardlong bean (Vigna unguiculata ssp. sesquipedalis) is a commonly consumed vegetable, especially in Southeast Asia. To provide insights into the genetic bases of key agricultural traits in yardlong bean, we here created a high-density bin-map with 2084 bin markers using 514 227 SNPs from a recombinant-inbred line (RIL) population. Quantitative trait loci (QTL) mapping was carried out to identify loci associated with anthocyanin content (ANT), vitamin E content (VE), total soluble protein content (TSP), pod length (PL), hundred-seed weight (HSW), seed length and width (SL and SW, respectively), and seed coat color (SCC). In total, 20 related QTLs were isolated, explaining 7.58-56.03% of the phenotypic variation. Of these, five major QTLs (qANT5, qTSP11, qVE7, qPL3, and qSCC9) were detected in 2020, 2021, and the combined environment, explaining 11.96-56.03% of the phenotypic variation. VuANT1 was identified as a causal gene for the QTL qANT5, which regulated anthocyanin content; VuANT1 was highly expressed in immature purple pods but barely detectable in white pods. VuANT1 overexpression in tobacco leaves and yardlong bean hairy roots resulted in purple coloration as a result of anthocyanin accumulation. These findings suggested that VuANT1 was a key regulator of anthocyanin accumulation in yardlong bean. Our results lay a firm foundation for target agricultural trait improvement and clarification of the genetic mechanisms underlying agricultural traits in yardlong bean.

构建长豆角的高密度遗传图谱并鉴定 ANT1 作为花青素生物合成的调节因子。
由于长而嫩的豆荚能为人类提供必需的蛋白质、维生素和纤维,因此长豆角(Vigna unguiculata ssp. sesquipedalis)是一种常见的食用蔬菜,尤其是在东南亚。为了深入了解长豆角关键农业性状的遗传基础,我们利用重组近交系(RIL)群体中的 514 227 个 SNPs 制作了一个包含 2084 个二进制标记的高密度二进制图谱。通过定量性状位点(QTL)作图,确定了与花青素含量(ANT)、维生素 E 含量(VE)、总可溶性蛋白含量(TSP)、豆荚长度(PL)、百粒种子重量(HSW)、种子长度和宽度(分别为 SL 和 SW)以及种皮颜色(SCC)相关的位点。共分离出 20 个相关 QTL,解释了 7.58%-56.03% 的表型变异。其中,在 2020、2021 和综合环境中检测到五个主要 QTL(qANT5、qTSP11、qVE7、qPL3 和 qSCC9),解释了 11.96-56.03% 的表型变异。VuANT1 被确定为 QTL qANT5 的因果基因,该基因调控花青素含量;VuANT1 在未成熟的紫色豆荚中高表达,但在白色豆荚中几乎检测不到。在烟草叶片和长豆角毛根中过表达 VuANT1 会导致花青素积累而呈现紫色。这些发现表明,VuANT1 是长豆角花青素积累的关键调控因子。我们的研究结果为农业目标性状改良和阐明长豆角农业性状的遗传机制奠定了坚实的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
12.90
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