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利用 DH 群体对花椰菜硫代葡萄糖苷生物化学变异的主要 QTL 进行精细定位。

Fine mapping of the major QTLs for biochemical variation of sulforaphane in broccoli florets using a DH population.

机构信息

Key Laboratory of Biology and Genetic Improvement of Horticultural Crops, Ministry of Agriculture, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Sci Rep. 2021 Apr 26;11(1):9004. doi: 10.1038/s41598-021-88652-3.

Abstract

Glucoraphanin is a major secondary metabolite found in Brassicaceae vegetables, especially broccoli, and its degradation product sulforaphane plays an essential role in anticancer. The fine mapping of sulforaphane metabolism quantitative trait loci (QTLs) in broccoli florets is necessary for future marker-assisted selection strategies. In this study, we utilized a doubled haploid population consisting of 176 lines derived from two inbred lines (86,101 and 90,196) with significant differences in sulforaphane content, coupled with extensive genotypic and phenotypic data from two independent environments. A linkage map consisting of 438 simple sequence repeats markers was constructed, covering a length of 1168.26 cM. A total of 18 QTLs for sulforaphane metabolism in broccoli florets were detected, 10 were detected in 2017, and the other 8 were detected in 2018. The LOD values of all QTLs ranged from 3.06 to 14.47, explaining 1.74-7.03% of the biochemical variation between two years. Finally, 6 QTLs (qSF-C3-1, qSF-C3-2, qSF-C3-3, qSF-C3-5, qSF-C3-6 and qSF-C7) were stably detected in more than one environment, each accounting for 4.54-7.03% of the phenotypic variation explained (PVE) and a total of 30.88-34.86% of PVE. Our study provides new insights into sulforaphane metabolism in broccoli florets and marker-assisted selection breeding in Brassica oleracea crops.

摘要

萝卜硫素是十字花科蔬菜(尤其是西兰花)中的一种主要次生代谢产物,其降解产物萝卜硫苷在抗癌中起着重要作用。西兰花花朵中萝卜硫苷代谢数量性状位点(QTL)的精细定位对于未来的标记辅助选择策略是必要的。在这项研究中,我们利用由两个自交系(86,101 和 90,196)衍生的 176 条双单倍体(DH)系组成的群体,这些系在萝卜硫苷含量上存在显著差异,同时结合了来自两个独立环境的广泛基因型和表型数据。构建了一张包含 438 个简单序列重复(SSR)标记的连锁图谱,覆盖 1168.26 cM。共检测到西兰花花朵中萝卜硫苷代谢的 18 个 QTL,其中 10 个在 2017 年检测到,8 个在 2018 年检测到。所有 QTL 的 LOD 值范围为 3.06-14.47,解释了两年间生化变异的 1.74-7.03%。最后,在一个以上的环境中稳定检测到 6 个 QTL(qSF-C3-1、qSF-C3-2、qSF-C3-3、qSF-C3-5、qSF-C3-6 和 qSF-C7),每个 QTL 解释了 4.54-7.03%的表型变异(PVE),共解释了 30.88-34.86%的 PVE。我们的研究为西兰花花朵中萝卜硫苷代谢和芸薹属作物的标记辅助选择育种提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddf6/8076207/72961b5cfe1d/41598_2021_88652_Fig1_HTML.jpg

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