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百脉根共生固氮过程中,转录的全局变化协调代谢分化。

Global changes in transcription orchestrate metabolic differentiation during symbiotic nitrogen fixation in Lotus japonicus.

作者信息

Colebatch Gillian, Desbrosses Guilhem, Ott Thomas, Krusell Lene, Montanari Ombretta, Kloska Sebastian, Kopka Joachim, Udvardi Michael K

机构信息

Max Planck Institute for Molecular Plant Physiology, Am Mühlenberg 1, 14476 Golm, Germany.

出版信息

Plant J. 2004 Aug;39(4):487-512. doi: 10.1111/j.1365-313X.2004.02150.x.

Abstract

Research on legume nodule metabolism has contributed greatly to our knowledge of primary carbon and nitrogen metabolism in plants in general, and in symbiotic nitrogen fixation in particular. However, most previous studies focused on one or a few genes/enzymes involved in selected metabolic pathways in many different legume species. We utilized the tools of transcriptomics and metabolomics to obtain an unprecedented overview of the metabolic differentiation that results from nodule development in the model legume, Lotus japonicus. Using an array of more than 5000 nodule cDNA clones, representing 2500 different genes, we identified approximately 860 genes that were more highly expressed in nodules than in roots. One-third of these are involved in metabolism and transport, and over 100 encode proteins that are likely to be involved in signalling, or regulation of gene expression at the transcriptional or post-transcriptional level. Several metabolic pathways appeared to be co-ordinately upregulated in nodules, including glycolysis, CO(2) fixation, amino acid biosynthesis, and purine, haem, and redox metabolism. Insight into the physiological conditions that prevail within nodules was obtained from specific sets of induced genes. In addition to the expected signs of hypoxia, numerous indications were obtained that nodule cells also experience P-limitation and osmotic stress. Several potential regulators of these stress responses were identified. Metabolite profiling by gas chromatography coupled to mass spectrometry revealed a distinct metabolic phenotype for nodules that reflected the global changes in metabolism inferred from transcriptome analysis.

摘要

豆科植物根瘤代谢的研究极大地增进了我们对植物一般初级碳氮代谢,尤其是共生固氮的了解。然而,此前大多数研究聚焦于许多不同豆科植物中参与特定代谢途径的一个或几个基因/酶。我们利用转录组学和代谢组学工具,获得了模式豆科植物百脉根根瘤发育所导致的代谢分化的前所未有的全景图。使用一系列代表2500个不同基因的5000多个根瘤cDNA克隆,我们鉴定出约860个在根瘤中比在根中表达更高的基因。其中三分之一参与代谢和转运,超过100个编码可能参与信号传导或转录或转录后水平基因表达调控的蛋白质。几种代谢途径似乎在根瘤中协同上调,包括糖酵解、二氧化碳固定、氨基酸生物合成以及嘌呤、血红素和氧化还原代谢。从特定的诱导基因集获得了对根瘤内普遍存在的生理状况的深入了解。除了预期的缺氧迹象外,还获得了许多迹象表明根瘤细胞也经历磷限制和渗透胁迫。鉴定出了这些应激反应的几种潜在调节因子。气相色谱-质谱联用的代谢物谱分析揭示了根瘤独特的代谢表型,反映了从转录组分析推断出的代谢全局变化。

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