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Transcriptional and metabolic profiles of Lolium perenne L. genotypes in response to a PEG-induced water stress

机译:Lolium Perenne L.基因型的转录和代谢谱响应于PEG诱导的水分胁迫

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摘要

Metabolic profiling was carried out in the forage grass Lolium perenne L. (perennial ryegrass) to uncover mechanisms involved in the plants response to water stress. When leaf and root materials from two genotypes, with a contrasting water stress response, were analysed by GC-MS, a clear difference in the metabolic profiles of the leaf tissue under water stress was observed. Differences were principally due to a reduction in fatty acid levels in the more susceptible Cashel genotype and an increase in sugars and compatible solutes in the more tolerant PI 462336 genotype. Sugars with a significant increase included: raffinose, trehalose, glucose, fructose and maltose. Increasing the ability of perennial ryegrass to accumulate these sugars in response to a water deficit may lead to more tolerant varieties. The metabolomics approach was combined with a transcriptomics approach in the water stress tolerant genotype PI 462336, which has identified perennial ryegrass genes regulated under water stress.
机译:在饲料草Lolium perenne L.(多年生黑麦草)中进行代谢分析,以发现植物响应水分应激的机制。通过GC-MS分析来自两种基因型的叶片和根材料,通过GC-MS分析了水胁迫下叶组织的代谢谱的明显差异。差异主要是由于脂肪酸水平降低了更易感的Cashel基因型和糖中含糖的增加和含糖的增加,并且在更耐受性PI 462336基因型中。包括显着增加的糖包括:棉子糖,海藻糖,葡萄糖,果糖和麦芽糖。增加多年生黑麦草的能力以响应水赤字积累这些糖可能导致更具耐受的品种。将代谢组种方法与水分胁迫耐受基因型PI 462336中的转录组学方法相结合,其鉴定了在水胁迫下调节的多年生黑麦草基因。

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  • 来源
    《Plant Biotechnology Journal》 |2009年第8期|共14页
  • 作者单位

    Teagasc Crops Biosciences Centre Oak Park Carlow Ireland.;

    Teagasc Crops Biosciences Centre Oak Park Carlow Ireland.;

    Teagasc Crops Biosciences Centre Oak Park Carlow Ireland.;

    Teagasc Crops Biosciences Centre Oak Park Carlow Ireland.;

    Teagasc Crops Biosciences Centre Oak Park Carlow Ireland.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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