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Root Secretion of Phytochemicals in Arabidopsis Is Predominantly Not Influenced by Diurnal Rhythms

机译:拟南芥中植物化学物质的根系分泌主要不受昼夜节律的影响

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摘要

Root-secreted phytochemicals mediate multiple interactions in the rhizosphere. The root exudation process can be altered by various biotic factors, including pathogenic and non-pathogenic microbes, and abiotic factors like temperature and soil moisture. It has been suggested that root secretion of specific flavonoids is influenced by diurnal rhythms (by light or dark) but a comprehensive analysis of the overall secretion of phytochemicals in response to diurnal rhythms has not been studied. In this study, we analyzed the effect of light/dark cycles on root exudation profiles using Arabidopsis as a model plant. Our results reveal that the root secretion of phytochemicals is partly regulated by the diurnal light cycle and follows two main patterns of secretion: (1) the large majority of phytochemicals in the exudates showed no diurnal pattern in their secretion, and (2) a few compounds showed a diurnal pattern in their secretion: three compounds increased in secretion only under light; two compounds increased in secretion only while it was dark; and two compounds increased in secretion during the transition from dark to light. Root-specific ABC transporters have been implicated in root exudation; an analysis of the gene expression patterns of ABC transporters in the roots of Arabidopsis at specific time points revealed that none of the ABC transporters followed a diurnal expression pattern, suggesting that they are expressed constantly during the day and night. Similarly, we analyzed the expression in roots of genes involved in secondary metabolite biosynthesis and found that some of the genes involved in phenylpropanoid and glucosinolate biosynthesis (i.e. 4-coumarate-CoA ligases (4CL1 and 4CL2), flavonol synthases (FS1 and FS2), and CYP79B3) followed distinct diurnal expression patterns. Overall, we have discovered that while root exudation of the majority of phytochemicals is constitutive, the secretion of a few compounds follows a diurnal rhythm, which is in accordance with the expression of some genes involved in secondary metabolism.
机译:根系分泌的植物化学物质在根际中介导多种相互作用。根系渗出过程可以通过各种生物因素(包括致病性和非致病性微生物)以及非生物因素(例如温度和土壤湿度)来改变。已经提出,特定黄酮类化合物的根分泌受昼夜节律的影响(亮或暗),但尚未研究对昼夜节律的响应所涉及的植物化学物质总体分泌的综合分析。在这项研究中,我们使用拟南芥作为模型植物,分析了光/暗循环对根系分泌物分布的影响。我们的结果表明,植物化学物质的根分泌部分受昼夜光周期的调节,并遵循两种主要的分泌模式:(1)渗出物中的大多数植物化学物质的分泌没有昼夜模式,(2)少量化合物的分泌呈昼夜模式:三种化合物仅在光照下分泌增加;仅在天黑时,两种化合物的分泌增加;从暗到亮的过渡过程中,两种化合物的分泌增加。根系特异的ABC转运蛋白与根系渗出有关。在特定时间对拟南芥根中ABC转运蛋白的基因表达模式进行分析后发现,没有一个ABC转运蛋白遵循昼夜表达模式,这表明它们在白天和黑夜都不断表达。同样,我们分析了与次生代谢产物生物合成有关的基因在根中的表达,发现一些与苯基丙烷和芥子油苷生物合成有关的基因(即4-香豆酸酯-CoA连接酶(4CL1和4CL2),黄酮醇合酶(FS1和FS2),和CYP79B3)遵循不同的昼夜表达模式。总的来说,我们发现虽然大多数植物化学物质的根系分泌是组成型的,但少数化合物的分泌遵循昼夜节律,这与参与次级代谢的某些基因的表达相一致。

著录项

  • 来源
    《Molecular Plant》 |2010年第3期|p.491-498|共8页
  • 作者单位

    Center for Rhizosphere Biology, Colorado State University, Fort Collins, CO 80523, USA;

    Center for Rhizosphere Biology, Colorado State University, Fort Collins, CO 80523, USA,Unidad de Bioquimicay Biologia Molecular de Plantas, Centrode Investigacion Cientifica de Yucatan, Calle43 No. 130, Col. Chuburna de Hidalgo, Merida,Yucatan, Mexico;

    Center for Rhizosphere Biology, Colorado State University, Fort Collins, CO 80523, USA;

    Center for Rhizosphere Biology, Colorado State University, Fort Collins, CO 80523, USA;

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

    arabidopsis; diurnal rhythm; root exudates; abc transporters; secondary metabolite biosynthesis;

    机译:拟南芥;昼夜节律根分泌物;abc转运蛋白;次生代谢产物的生物合成;

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