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基于果实形态、品质成分和微卫星标记的印度甜瓜与外来甜瓜的遗传多样性及相互关系

Genetic diversity and interrelationship among Indian and exotic melons based on fruit morphology, quality components and microsatellite markers.

作者信息

Singh Dildar, Leskovar Daniel I, Sharma Sat Pal, Sarao Navraj Kaur, Vashisht V K

机构信息

1Department of Vegetable Science, Punjab Agricultural University, Ludhiana, Punjab 141004 India.

2Texas A&M AgriLife Research Center, Texas A&M University, Uvalde, TX 78801 USA.

出版信息

Physiol Mol Biol Plants. 2020 May;26(5):985-1002. doi: 10.1007/s12298-020-00814-1. Epub 2020 Apr 17.

Abstract

Seventy melon ( L.) accessions comprising of landraces, inbred lines, cultivars, wild relatives and exotic populations were characterized using fifteen fruit traits and 30 SSR markers. Overall, aim of this study was to investigate the genetic relatedness across origins, horticultural groups and accession categories. Significant differences were observed for days to first fruit maturity, fruit weight, fruits per vine, yield per plant, flesh thickness, fruit shape index, total soluble solids, β-carotene, ascorbic acid and titrable acidity. Twenty-four polymorphic SSRs detected 67 distinct alleles with moderate polymorphic information content (0.43) and genetic diversity (0.44). Observed heterozygosity (0.53) was higher than expected heterozygosity (0.48) which can be attributed to out-cross nature of melons. Neighbor joining tree based on SSRs diverged 70 accessions into six clusters independent of geographic sites of collections. and accessions formed distinct clusters, with some exceptions. Intermixing of landraces, modern cultivars and exotic accessions belonging to different taxa and geographic regions indicated genetic resemblance with each other. Hybridization among exotic and indigenous genetic resources can be utilized for genetic enhancement and introgression of new traits in modern melon cultivars.

摘要

利用15个果实性状和30个SSR标记对70份甜瓜(L.)种质资源进行了鉴定,这些种质包括地方品种、自交系、栽培品种、野生近缘种和外来群体。总体而言,本研究的目的是调查不同起源、园艺群体和种质类别之间的遗传相关性。在首次果实成熟天数、果实重量、每株藤蔓的果实数、单株产量、果肉厚度、果实形状指数、总可溶性固形物、β-胡萝卜素、抗坏血酸和可滴定酸度方面观察到显著差异。24个多态性SSR检测到67个不同的等位基因,具有中等多态信息含量(0.43)和遗传多样性(0.44)。观察到的杂合度(0.53)高于预期杂合度(0.48),这可归因于甜瓜的异交性质。基于SSR的邻接树将70份种质分为六个聚类,与收集的地理位置无关。 和 种质形成了不同的聚类,但有一些例外。属于不同分类群和地理区域的地方品种、现代栽培品种和外来种质相互混杂,表明它们之间存在遗传相似性。外来和本地遗传资源之间的杂交可用于现代甜瓜品种的遗传改良和新性状的导入。

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