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Identification and expression analysis of genes in response to high-salinity and drought stresses in Brassica napus

机译:甘蓝型油菜响应高盐和干旱胁迫的基因鉴定与表达分析

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摘要

High salinity and drought are the major abiotic stresses that adversely affect plant growth and agricultural productivity. To investigate genes that are involved in response to abiotic stresses in Brassica napus, a comprehensive survey of genes induced by high-salinity and drought stresses was done by macroarray analysis. In total, 536 clones were identified to be putative high-salinity- or drought-responsive genes. Among them, 172 and 288 clones are detected to be putative high-salinity- and drought-inducible genes, whereas 141 and 189 are candidates for high-salinity- and drought-suppressed genes, respectively. The functional classification of these genes are indicated that belonged to gene families encoding metabolic enzymes, regulatory factors, components of signal transduction, hormone responses, some abiotic stresses-related proteins, and other processes related to growth and development of B. napus. From the up-regulated candidate genes, some interested genes were further demonstrated to be high-salinity- or/and drought-induced expression by real-time quantitative RT-PCR analysis. The experimental results also revealed that some genes may function in abscisic acid-dependent signaling pathway related to drought or salinity stress. Collectively, the data presented in this study will facilitate the understanding of molecular mechanism of B. napus in response to high-salinity and drought stresses, and also provide us the basis of effective genetic engineering strategies for improving stress tolerance of B. napus.
机译:高盐分和干旱是主要的非生物胁迫,会对植物生长和农业生产力产生不利影响。为了调查涉及甘蓝型油菜对非生物胁迫的响应的基因,通过基因芯片分析对高盐度和干旱胁迫诱导的基因进行了全面调查。总共鉴定出536个克隆为高盐度或干旱响应基因。其中,检测到172个和288个克隆是推测的高盐度和干旱诱导基因,而141和189个克隆分别是高盐度和干旱抑制基因的候选者。这些基因的功能分类表明,它们属于编码代谢酶,调节因子,信号转导的成分,激素响应,一些非生物胁迫相关蛋白以及与油菜双歧杆菌生长和发育有关的其他过程的基因家族。从上调的候选基因中,通过实时定量RT-PCR分析进一步证实了一些感兴趣的基因是高盐度或/和干旱诱导的表达。实验结果还表明,某些基因可能在与干旱或盐分胁迫有关的脱落酸依赖性信号传导途径中起作用。总体而言,本研究提供的数据将有助于理解油菜响应高盐度和干旱胁迫的分子机制,也为我们提供有效的遗传工程策略以提高油菜的抗逆性。

著录项

  • 来源
    《Acta Biochimica et Biophysica Sinica》 |2010年第2期|154-164|共11页
  • 作者单位

    Hubei Key Laboratory of Genetic Regulation and Integrative Biology, College of Life Sciences, Huazhong Normal University, Wuhan 430079, China;

    rnHubei Key Laboratory of Genetic Regulation and Integrative Biology, College of Life Sciences, Huazhong Normal University, Wuhan 430079, China;

    rnHubei Key Laboratory of Genetic Regulation and Integrative Biology, College of Life Sciences, Huazhong Normal University, Wuhan 430079, China;

    rnHubei Key Laboratory of Genetic Regulation and Integrative Biology, College of Life Sciences, Huazhong Normal University, Wuhan 430079, China;

    rnHubei Key Laboratory of Genetic Regulation and Integrative Biology, College of Life Sciences, Huazhong Normal University, Wuhan 430079, China;

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

    brassica napus; macroarray; gene expression; high-salinity and drought stress;

    机译:芸苔属宏数组基因表达;高盐度和干旱胁迫;

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