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Classification of Genes Differentially Expressed during Water‐deficit Stress in Arabidopsis thaliana: an Analysis using Microarray and Differential Expression Data

机译:拟南芥水分胁迫过程中差异表达基因的分类:利用微阵列和差异表达数据的分析

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摘要

Many changes in gene expression occur in response to water‐deficit stress. A challenge is to determine which changes support plant adaptation to conditions of reduced soil water content and which occur in response to lesions in metabolic and cellular functions. Microarray methods are being employed to catalogue all of the changes in gene expression that occur in response to specific water‐deficit conditions. Although these methods do not measure the amount or activities of specific proteins that function in the water‐deficit response, they do target specific biochemical and cellular events that should be detailed in further work. Potential functions of approx. 130 genes of Arabidopsis thaliana that have been shown to be up‐regulated are tabulated here. These point to signalling events, detoxification and other functions involved in the cellular response to water‐deficit stress. As microarray techniques are refined, plant stress biologists will be able to characterize changes in gene expression within the whole genome in specific organs and tissues subjected to different levels of water‐deficit stress.
机译:基因表达的许多变化是响应缺水胁迫而发生的。一个挑战是确定哪些变化支持植物适应土壤水分含量降低的条件,以及哪些响应代谢和细胞功能受损而发生。微阵列方法正被用于分类针对特定缺水条件而发生的所有基因表达变化。尽管这些方法不能测量在缺水反应中起作用的特定蛋白质的数量或活性,但它们的确针对特定的生化和细胞事件,应在后续工作中进行详细介绍。潜在的功能约。此处列出了拟议的拟南芥130个基因。这些指向细胞对缺水胁迫的响应中涉及的信号事件,排毒和其他功能。随着微阵列技术的完善,植物胁迫生物学家将能够表征遭受不同水平的水分亏缺的特定器官和组织中整个基因组内基因表达的变化。

著录项

  • 期刊名称 Annals of Botany
  • 作者

    ELIZABETH A. BRAY;

  • 作者单位
  • 年(卷),期 2002(89),7
  • 年度 2002
  • 页码 803–811
  • 总页数 9
  • 原文格式 PDF
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