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[物种名称]果实的比较代谢组学分析为驯化过程中的代谢组差异提供了证据。 (注:原文中“ spp.”部分信息缺失,翻译时按通用表述“[物种名称]”进行了补充,以便使译文完整通顺)

Comparative Metabolomic Profiling of spp. Fruits Provides Evidence for Metabolomic Divergence during Domestication.

作者信息

Yuan Pingli, He Nan, Umer Muhammad Jawad, Zhao Shengjie, Diao Weinan, Zhu Hongju, Dou Junling, Kaseb Mohamed Omar, Kuang Hanhui, Lu Xuqiang, Liu Wenge

机构信息

Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou 450009, China.

College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Metabolites. 2021 Jan 28;11(2):78. doi: 10.3390/metabo11020078.

Abstract

Watermelon () is one of the most nutritional fruits that is widely distributed in the whole world. The nutritional compositions are mainly influenced by the genotype and environment. However, the metabolomics of different domestication status and different flesh colors watermelon types is not fully understood. In this study, we reported an extensive assessment of metabolomic divergence in the fruit flesh among sp. and within sp. We demonstrate that metabolic profiling was significantly different between the wild and cultivated watermelons, the apigenin 6-C-glucoside, luteolin 6-C-glucoside, chrysoeriol C-hexoside, naringenin C-hexoside, C-pentosyl-chrysoeriol O-hexoside, and sucrose are the main divergent metabolites. Correlation analysis results revealed that flavonoids were present in one tight metabolite cluster. The main divergent metabolites in different flesh-colored cultivated watermelon fruits are p-coumaric acid, 2,3-dihydroflavone, catechin, N-(3-indolylacetyl)-l-alanine, 3,4-dihydroxycinnamic acid, and pelargonidin o-hexoside. A total of 431 differentially accumulated metabolites were identified from pairwise comparative analyses. edible-seed watermelon (cultivars) and (wild) have similar fruit metabolic profiles and phenotypic traits, indicating that edible-seed watermelon may be a relative of wild species and a relatively primitive differentiation type of cultivated watermelon. Our data provide extensive knowledge for metabolomics-based watermelon improvement of fruits meet their enhanced nutritive properties or upgraded germplasm utility values.

摘要

西瓜()是世界上分布广泛且营养丰富的水果之一。其营养成分主要受基因型和环境影响。然而,不同驯化状态和不同果肉颜色西瓜类型的代谢组学仍未被完全了解。在本研究中,我们报告了对西瓜属内不同种间以及种内果实果肉代谢组差异的广泛评估。我们证明野生西瓜和栽培西瓜的代谢谱存在显著差异,芹菜素6 - C - 葡萄糖苷、木犀草素6 - C - 葡萄糖苷、 Chrysoeriol C - 己糖苷、柚皮素C - 己糖苷、 C - 戊糖基 - Chrysoeriol O - 己糖苷和蔗糖是主要的差异代谢物。相关性分析结果表明黄酮类物质存在于一个紧密的代谢物簇中。不同果肉颜色的栽培西瓜果实中的主要差异代谢物是对香豆酸、 2,3 - 二氢黄酮、儿茶素、 N - (3 - 吲哚基乙酰基) - L - 丙氨酸、 3,4 - 二羟基肉桂酸和天竺葵素O - 己糖苷。通过成对比较分析共鉴定出431种差异积累的代谢物。食用籽西瓜(品种)和(野生种)具有相似的果实代谢谱和表型特征,表明食用籽西瓜可能是野生种的近缘种,是栽培西瓜中相对原始的分化类型。我们的数据为基于代谢组学的西瓜改良提供了广泛的知识,以使其果实满足更高的营养特性或提升种质利用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6f0/7911689/70ba51ba4b55/metabolites-11-00078-g001.jpg

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