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与南瓜无壳种子性状相关的基因组位置和标记

Genomic Position and Markers Associated with the Hull-Less Seed Trait in Pumpkin.

作者信息

Meru Geoffrey, Fu Yuqing, Shrestha Swati, Michael Vincent Njung'e, Dorval Marie, Mainviel Riphine

机构信息

The Tropical Research and Education Center, Horticultural Sciences Department, University of Florida, 18905 SW 280 ST Homestead, Gainesville, FL 33031, USA.

出版信息

Plants (Basel). 2022 May 3;11(9):1238. doi: 10.3390/plants11091238.

Abstract

Pumpkin (Cucurbita pepo) seeds are nutritious and valued as a source of vegetable oil, protein, healthy fatty acids, and minerals. Pumpkin seeds that are naturally devoid of the seedcoat (hull-less) are preferred by the industry as they eliminate the need for de-hulling prior to use. A single recessive gene, designated as n or h, controls the hull-less seed trait in pumpkin. Visual selection for the trait is easy, however, it is resource intensive when applied to large breeding populations. High throughput genotyping assays can aid in the identification of suitable individuals in segregating populations through marker-assisted selection. In the current study, the QTL-seq approach was used to identify genetic loci, SNP markers and candidate genes associated with the hull-less trait in a segregating F2 population (n = 143) derived from a cross between Kakai (hull-less) × Table Gold Acorn (hulled). The segregation of the hull-less trait in the F2 population fit a 3:1 ratio (p < 0.05). QTL-seq analysis detected a single QTL on chromosome 12 (Qtlhull-less-C12) which was significantly associated with the hull-less trait in C. pepo. Twenty-eight SNPs were genotyped in the population, two among which (Ch12_3412046 and Ch12_3417142) were significantly associated (p < 0.05) with the hull-less trait in cultivars and accessions of diverse genetic background. Several candidate genes fall within the Qtlhull-less-C12 interval, among them is the No Apical meristem (NAC) domain-containing protein and a Fiber Protein fb11 gene involved in lignin accumulation and cell wall deposition across plant species, respectively. The findings of this study will facilitate the marker-assisted selection for the hull-less seed trait in pumpkin and further our understanding of the functional mechanisms underlying the trait across cucurbit crops.

摘要

南瓜(西葫芦)种子营养丰富,是植物油、蛋白质、健康脂肪酸和矿物质的重要来源。由于无需在使用前进行脱壳处理,天然无种皮(无壳)的南瓜种子更受该行业青睐。单个隐性基因,命名为n或h,控制南瓜的无壳种子性状。该性状的视觉选择很容易,但应用于大型育种群体时资源消耗大。高通量基因分型分析可通过标记辅助选择,帮助在分离群体中鉴定合适的个体。在本研究中,采用QTL-seq方法,在由Kakai(无壳)×Table Gold Acorn(有壳)杂交产生的分离F2群体(n = 143)中,鉴定与无壳性状相关的遗传位点、SNP标记和候选基因。F2群体中无壳性状的分离符合3:1比例(p < 0.05)。QTL-seq分析在12号染色体上检测到一个单一QTL(Qtlhull-less-C12),它与西葫芦的无壳性状显著相关。在群体中对28个SNP进行了基因分型,其中两个(Ch12_3412046和Ch12_3417142)与不同遗传背景的品种和种质中的无壳性状显著相关(p < 0.05)。几个候选基因位于Qtlhull-less-C12区间内,其中包括含无顶端分生组织(NAC)结构域的蛋白和一个纤维蛋白fb11基因,它们分别参与植物物种间木质素积累和细胞壁沉积。本研究结果将有助于南瓜无壳种子性状的标记辅助选择,并加深我们对葫芦科作物该性状潜在功能机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d23d/9103792/717d73f85613/plants-11-01238-g001.jpg

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