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Diversity in global gene expression and morphology across a watercress (Nasturtium officinale R. Br.) germplasm collection: first steps to breeding

机译:西洋菜(Nasturtium officinale R.Br.)种质资源的全球基因表达和形态多样性:育种的第一步

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摘要

Watercress (Nasturtium officinale R. Br.) is a nutrient intense, leafy crop that is consumed raw or in soups across the globe, but for which, currently no genomic resources or breeding programme exists. Promising morphological, biochemical and functional genomic variation was identified for the first time in a newly established watercress germplasm collection, consisting of 48 watercress accessions sourced from contrasting global locations. Stem length, stem diameter and anti-oxidant (AO) potential varied across the accessions. This variation was used to identify three extreme contrasting accessions for further analysis. Variation in global gene expression was investigated using an Affymetrix Arabidopsis ATH1 microarray gene chip, using the commercial control (C), an accession selected for dwarf phenotype with a high AO potential (dwarfAO, called ‘Boldrewood’) and one with high AO potential alone. A set of transcripts significantly differentially expressed between these three accessions, were identified, including transcripts involved in the regulation of growth and development and those involved in secondary metabolism. In particular, when differential gene expression was compared between C and dwarfAO, the dwarfAO was characterised by increased expression of genes encoding glucosinolates, which are known precursors of phenethyl isothiocyanate, linked to the anti-carcinogenic effects well-documented in watercress. This study provides the first analysis of natural variation across the watercress genome and has identified important underpinning information for future breeding for enhanced anti-carcinogenic properties and morphology traits in this nutrient-intense crop.
机译:豆瓣菜(Nasturtium officinale R. Br。)是一种营养丰富的多叶作物,可在全球范围内以生食或汤品形式食用,但目前尚无基因组资源或育种计划。在新建立的豆瓣种质资源集中,首次发现了有希望的形态,生化和功能基因组变异,其中包括48个豆瓣种质,这些种源于全球不同地区。茎长,茎直径和抗氧化性(AO)随种质变化。该变异用于鉴定三种极端对比的种质,以供进一步分析。使用Affymetrix拟南芥ATH1芯片基因芯片,商业对照(C),具有高AO潜力的矮表型(dwarfAO,称为``Boldrewood'')和仅具有高AO潜力的一种选种进行了研究,研究了全球基因表达的差异。 。确定了在这三个种之间显着差异表达的一组转录物,包括涉及生长和发育调控的转录物以及涉及次级代谢的转录物。尤其是,当比较C和dwarfAO之间的差异基因表达时,dwarfAO的特征是编码芥子油苷的基因表达增加,芥子油苷是已知的苯乙基异硫氰酸酯的前体,与豆瓣菜中充分证明的抗癌作用有关。这项研究首次对豆瓣基因组中的自然变异进行了分析,并确定了重要的基础信息,可为今后的育种提供重要信息,以增强这种营养密集型作物的抗癌特性和形态特征。

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