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来自 Solanum pennellii 的番茄果实全基因组代谢组学资源。

A genome-wide metabolomic resource for tomato fruit from Solanum pennellii.

机构信息

Centre for Systems and Synthetic Biology, School Biological Sciences, Royal Holloway, University London, Egham Hill, Egham, Surrey, TW20 OEX, UK.

National Centre for Plant and Microbial Metabolomics, Rothamsted Research, Harpenden, Hertfordshire, AL5 2JQ, UK.

出版信息

Sci Rep. 2014 Jan 24;4:3859. doi: 10.1038/srep03859.

Abstract

Tomato and its processed products are one of the most widely consumed fruits. Its domestication, however, has resulted in the loss of some 95% of the genetic and chemical diversity of wild relatives. In order to elucidate this diversity, exploit its potential for plant breeding, as well as understand its biological significance, analytical approaches have been developed, alongside the production of genetic crosses of wild relatives with commercial varieties. In this article, we describe a multi-platform metabolomic analysis, using NMR, mass spectrometry and HPLC, of introgression lines of Solanum pennellii with a domesticated line in order to analyse and quantify alleles (QTL) responsible for metabolic traits. We have identified QTL for health-related antioxidant carotenoids and tocopherols, as well as molecular signatures for some 2000 compounds. Correlation analyses have revealed intricate interactions in isoprenoid formation in the plastid that can be extrapolated to other crop plants.

摘要

番茄及其加工产品是最广泛食用的水果之一。然而,由于其驯化,野生近缘种的遗传和化学多样性丧失了约 95%。为了阐明这种多样性,开发其在植物育种中的潜力,并理解其生物学意义,我们开发了分析方法,同时还进行了野生近缘种与商业品种的遗传杂交。在本文中,我们描述了一种多平台代谢组学分析方法,使用 NMR、质谱和 HPLC,对与驯化系进行基因渗入的 Solanum pennellii 系进行分析,以分析和量化负责代谢性状的等位基因(QTL)。我们已经确定了与健康相关的抗氧化类胡萝卜素和生育酚的 QTL,以及大约 2000 种化合物的分子特征。相关性分析揭示了质体中类异戊二烯形成的复杂相互作用,这些相互作用可以外推到其他作物植物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b39/3900926/50d054fd950f/srep03859-f1.jpg

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