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Molecular Analysis of Drought Tolerance in Tea by cDNA-AFLP Based Transcript Profiling

机译:基于cDNA-AFLP的转录谱分析技术分析茶叶的耐旱性

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摘要

A cDNA-AFLP approach was used to identify transcript and/or genes specifically expressed in response to drought in tea. Drought was artificially induced and whole genome transcript profiling was done at three different stages—6 days before wilting, 3 days before wilting and at wilting stage of both tolerant and susceptible cultivars, and genetic differences was thus visualized as polymorphisms in the transcriptome. The cDNA-AFLP technique allowed genes and transcripts to be identified in the tolerant genotype (TV-23) whose expression is responsive to drought stress. The cluster analysis revealed two types of clustering—type I separated the tolerant and susceptible cultivar, whereas type II separated the time point of sample and this may be grouped as early and late responsive transcripts. 108 transcript derived fragments were identified as differentially expressed in tolerant genotypes of which 89 sequences could be obtained. Fifty-nine of them showed homology in the public databases. Functional ontology showed genes related to carbohydrate metabolism, response to stress, protein modification process and translation. Cluster I includes five fragments and cluster II includes 25 fragments. Other genes strongly expressed in response to drought in tolerant genotype would help us in identifying and determining the genetic basis of mechanisms involved in conferring drought tolerance in tea.
机译:cDNA-AFLP方法用于鉴定转录物和/或响应于茶中干旱而特异性表达的基因。人工诱导干旱,并在三个不同阶段进行了全基因组转录本的分析,即耐性和易感品种的枯萎前6天,枯萎前3天和枯萎期,遗传差异因此被可视化为转录组中的多态性。 cDNA-AFLP技术可以鉴定基因和转录本,该基因和转录本的表达与干旱胁迫相关。聚类分析揭示了两种类型的聚类:I型分离了耐性和易感品种,而II型则分离了样品的时间点,这可以分为早期和晚期响应转录本。鉴定出108个转录物衍生片段在耐受基因型中差异表达,其中可获得89个序列。其中有59个在公共数据库中显示出同源性。功能本体论显示了与碳水化合物代谢,对压力的反应,蛋白质修饰过程和翻译有关的基因。群集I包含五个片段,群集II包含25个片段。在耐性基因型中对干旱反应强烈表达的其他基因将帮助我们鉴定和确定参与赋予茶耐旱性的机制的遗传基础。

著录项

  • 来源
    《Molecular Biotechnology》 |2013年第3期|237-248|共12页
  • 作者单位

    Department of Biotechnology Plant Improvement Division Tocklai Experimental Station">(1);

    Department of Biotechnology Plant Improvement Division Tocklai Experimental Station">(1);

    Department of Agricultural Biotechnology Assam Agriculture University">(4);

    Department of Biotechnology Plant Improvement Division Tocklai Experimental Station">(1);

    Department of Biotechnology Plant Improvement Division Tocklai Experimental Station">(1);

    Department of Biotechnology Plant Improvement Division Tocklai Experimental Station">(1);

    Department of Biotechnology Plant Improvement Division Tocklai Experimental Station">(1);

    Department of Biotechnology Plant Improvement Division Tocklai Experimental Station">(1);

    Department of Biotechnology Plant Improvement Division Tocklai Experimental Station">(1);

    Department of Biotechnology J. B. College">(2);

    Department of Biotechnology Gauhati University">(3);

    Department of Biotechnology Gauhati University">(3);

    Department of Biotechnology Plant Improvement Division Tocklai Experimental Station">(1);

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cDNA-AFLP; Tea; TDF; Drought; Gene expression;

    机译:cDNA-AFLP;茶;TDF;干旱;基因表达;

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