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Crosstalk in the responses to abiotic and biotic stresses in Arabidopsis: Analysis of gene expression in cytochrome P450 gene superfamily by cDNA microarray

机译:拟南芥对非生物和生物胁迫的响应中的串扰:cDNA基因芯片分析细胞色素P450基因超家族中的基因表达

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摘要

From Arabidopsis full-length cDNA libraries, we collected ca. 7000 (7K) independent full-length cDNAs to prepare a cDNA microarray. The 7K cDNA collection contains 49 cytochrome P450 genes. In this study, expression patterns of these cytochrome P450 genes were analyzed by a full-length cDNA microarray under various treatments, such as hormones (salicylic acid, jasmonic acid, ethylene, abscisic acid), pathogen-inoculation (Alternaria brassicicola, Alternaria alternata), paraquat, rose bengal, UV stress (UV-C), heavy metal stress (CuSO_4), mechanical wounding, drought, high salinity and low temperature. Expression of 29 cytochrome P450 genes among them was induced by various treatments. Inoculation with A. brassicicola and A. alternata as biotic stresses increased transcript levels of 12 and 5 genes in Arabidopsis plants, respectively. In addition, some of the genes were also expressed by abiotic stresses. This suggests crosstalk between abiotic and biotic stresses. The promoter sequences and cis-acting elements of each gene were studied on the basis of full-length cDNA sequences. Most cytochrome P450 genes induced by both abiotic and biotic stresses contained the recognition sites of MYB and MYC, ACGT-core sequence, TGA-box and W-box for WRKY transcription factors in their promoters. These cis-acting elements are known to participate in the regulation of plant defense. The response of each gene to multiple stresses is strictly regulated.
机译:从拟南芥全长cDNA文库,我们收集了约。 7000(7K)个独立的全长cDNA,以制备cDNA微阵列。 7K cDNA集合包含49个细胞色素P450基因。在这项研究中,这些全长细胞色素P450基因的表达模式通过全长cDNA芯片在各种处理下进行了分析,例如激素(水杨酸,茉莉酸,乙烯,脱落酸),病原体接种(Alternaria braciicicola,Alternaria alternata)。 ,百草枯,孟加拉红,紫外线应力(UV-C),重金属应力(CuSO_4),机械伤,干旱,高盐度和低温。通过多种处理诱导其中的29种细胞色素P450基因的表达。由于生物胁迫而接种芸苔假单胞菌和链格孢假单胞菌分别增加了拟南芥植物中12和5个基因的转录水平。另外,一些基因也通过非生物胁迫表达。这表明非生物和生物压力之间的串扰。在全长cDNA序列的基础上研究了每个基因的启动子序列和顺式作用元件。通过非生物和生物胁迫诱导的大多数细胞色素P450基因在其启动子中都含有MYB和MYC的识别位点,ACGT核心序列,TGA-box和W-box作为WRKY转录因子的识别位点。这些顺式作用元件已知参与植物防御的调节。每个基因对多种压力的反应都受到严格调节。

著录项

  • 来源
    《Plant Molecular Biology》 |2004年第3期|327-342|共16页
  • 作者单位

    Department of Biology Tokyo Gakugei UniversityLaboratory of Plant Molecular Biology RIKEN Tsukuba Institute;

    Department of Biology Tokyo Gakugei UniversityPlant Mutation Exploration Team Plant Functional Genomics Research Group RIKEN Genomic Sciences Center (GSC) RIKEN Yokohama Institute;

    Laboratory of Plant Molecular Biology RIKEN Tsukuba InstitutePlant Mutation Exploration Team Plant Functional Genomics Research Group RIKEN Genomic Sciences Center (GSC) RIKEN Yokohama Institute;

    Plant Mutation Exploration Team Plant Functional Genomics Research Group RIKEN Genomic Sciences Center (GSC) RIKEN Yokohama Institute;

    Plant Mutation Exploration Team Plant Functional Genomics Research Group RIKEN Genomic Sciences Center (GSC) RIKEN Yokohama Institute;

    Plant Mutation Exploration Team Plant Functional Genomics Research Group RIKEN Genomic Sciences Center (GSC) RIKEN Yokohama Institute;

    Plant Mutation Exploration Team Plant Functional Genomics Research Group RIKEN Genomic Sciences Center (GSC) RIKEN Yokohama Institute;

    Laboratory of Plant Molecular Biology RIKEN Tsukuba InstitutePlant Mutation Exploration Team Plant Functional Genomics Research Group RIKEN Genomic Sciences Center (GSC) RIKEN Yokohama Institute;

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

    Arabidopsis; cytochrome P450; full-length cDNA; microarray;

    机译:拟南芥;细胞色素P450;全长cDNA;微阵列;

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