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基于测序的基因型分析(GBS)技术在黄瓜(Cucumis sativus L.)中的最新研究进展:综述。

Recent status of Genotyping by Sequencing (GBS) Technology in cucumber (Cucumis sativus L.): a review.

机构信息

Department of Biotechnology, Institute of Natural and Applied Sciences, Çukurova University, 01330, Adana, Turkey.

Department of Horticulture, Faculty of Agriculture, Çukurova University, 01330, Adana, Turkey.

出版信息

Mol Biol Rep. 2022 Jun;49(6):5547-5554. doi: 10.1007/s11033-022-07469-z. Epub 2022 May 20.

Abstract

Current and advanced breeding tools are being used to improve economically important horticultural crops to meet the consumers' needs and preferences. Genotyping-by-sequencing (GBS) is an extremely useful tool in the investigation and analysis of the genetic diversity of different cultivars. Based on a broad range of genetic backgrounds like single nucleotide polymorphism (SNPs), GBS is known as a novel technique to facilitate the detection of quantitative trait loci (QTL) regions robustly linked with interested traits compared to genome-wide association study (GWAS) and QTL. GBS has gained popularity among breeders in recent years and it is also employed in cucumber breeding programs. Cucumbers (C. sativus L.) are monoecious, gynoecious and some of them are parthenocarpic species. Cucumber is one of the most economical and essential crops in the Cucurbitaceae family. For time immemorial, cucumber has been produced and consumed all over the world like other cucurbits. To a large extent, cultivated cucurbits are beneficial to human health for providing necessary minerals and fibers.Therefore, this review portrays the current status of advances made by using GBS and its combination with other tools in various studies of cucumber such as the use of GBS and single nucleotide polymorphism (SNP) markers, GBS and GWAS, also with QTL and marker-assisted selection (MAS) are applied to display and detect explicit genetic architecture complex traits in crops and chromosome rearrangements.Cucumber breeding programs have undoubtedly benefited from genotyping-by-sequencing. Using the GBS method, research discovered lots of new candidate genes that control various traits including spine color, fruit stalk-end color, and disease resistance in cucumber lines.

摘要

当前和先进的育种工具正被用于改良经济上重要的园艺作物,以满足消费者的需求和偏好。基因分型测序(GBS)是一种非常有用的工具,可用于研究和分析不同品种的遗传多样性。GBS 基于广泛的遗传背景,如单核苷酸多态性(SNP),与全基因组关联研究(GWAS)和 QTL 相比,是一种用于稳健检测与感兴趣性状紧密连锁的数量性状位点(QTL)区域的新型技术。近年来,GBS 在育种者中越来越受欢迎,它也被应用于黄瓜的育种计划中。黄瓜(C. sativus L.)是雌雄同体、雌性同体,有些是单性结实的物种。黄瓜是葫芦科中最经济和重要的作物之一。自古以来,黄瓜像其他葫芦科作物一样在世界各地被生产和消费。在很大程度上,栽培的葫芦科作物为人类提供了必要的矿物质和纤维,对人类健康有益。因此,本综述描述了利用 GBS 及其与其他工具在黄瓜各种研究中的应用进展,如 GBS 和单核苷酸多态性(SNP)标记、GBS 和 GWAS 的应用,以及 QTL 和标记辅助选择(MAS)在作物和染色体重排中复杂性状的显式遗传结构的显示和检测中的应用。黄瓜的育种计划无疑受益于基因分型测序。使用 GBS 方法,研究人员发现了许多控制各种性状的新候选基因,包括黄瓜品系的刺颜色、果柄端颜色和抗病性。

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