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蛋白质组学研究揭示了根瘤形成过程中植物-细菌共生体的细胞内和细胞间相互作用。

Proteomic insights into intra- and intercellular plant-bacteria symbiotic association during root nodule formation.

机构信息

Department of Plant Breeding and Biotechnology, Ramin University of Agriculture and Natural Resources Ahwaz, Iran.

出版信息

Front Plant Sci. 2013 Feb 25;4:28. doi: 10.3389/fpls.2013.00028. eCollection 2013.

DOI:10.3389/fpls.2013.00028
PMID:23443347
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3580959/
Abstract

Over the last several decades, there have been a large number of studies done on the all aspects of legumes and bacteria which participate in nitrogen-fixing symbiosis. The analysis of legume-bacteria interaction is not just a matter of numerical complexity in terms of variants of gene products that can arise from a single gene. Bacteria regulate their quorum-sensing genes to enhance their ability to induce conjugation of plasmids and symbiotic islands, and various protein secretion mechanisms; that can stimulate a collection of chain reactions including species-specific combinations of plant-secretion isoflavonoids, complicated calcium signaling pathways and autoregulation of nodulation mechanisms. Quorum-sensing systems are introduced by the intra- and intercellular organization of gene products lead to protein-protein interactions or targeting of proteins to specific cellular structures. In this study, an attempt has been made to review significant contributions related to nodule formation and development and their impacts on cell proteome for better understanding of plant-bacterium interaction mechanism at protein level. This review would not only provide new insights into the plant-bacteria symbiosis response mechanisms but would also highlights the importance of studying changes in protein abundance inside and outside of cells in response to symbiosis. Furthermore, the application to agriculture program of plant-bacteria interaction will be discussed.

摘要

在过去的几十年中,人们对豆类植物和参与固氮共生的细菌的各个方面进行了大量的研究。豆类植物与细菌相互作用的分析不仅仅是一个基因产物变异的数字复杂性问题,这些变异可能来自单个基因。细菌调节它们的群体感应基因,以增强诱导质粒和共生岛以及各种蛋白质分泌机制的共轭能力;这些机制可以刺激一系列连锁反应,包括植物分泌异黄酮的种特异性组合、复杂的钙信号通路和结瘤机制的自我调节。群体感应系统是由基因产物的细胞内和细胞间组织引起的,导致蛋白质-蛋白质相互作用或蛋白质靶向特定的细胞结构。在这项研究中,我们试图综述与根瘤形成和发育相关的重要贡献及其对细胞蛋白质组的影响,以便更好地理解蛋白质水平上的植物-细菌相互作用机制。这一综述不仅将为植物-细菌共生反应机制提供新的见解,还将强调研究细胞内外蛋白质丰度变化以响应共生的重要性。此外,还将讨论植物-细菌相互作用在农业计划中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6a3/3580959/91d72048b022/fpls-04-00028-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6a3/3580959/91d72048b022/fpls-04-00028-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6a3/3580959/91d72048b022/fpls-04-00028-g001.jpg

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本文引用的文献

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Nodulins and nodulin genes of Glycine max.大豆球蛋白和大豆球蛋白基因。
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Soybeans grown in the Chernobyl area produce fertile seeds that have increased heavy metal resistance and modified carbon metabolism.切尔诺贝利地区种植的大豆产生了具有更高重金属抗性和改变了碳代谢的可育种子。
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Analysis of the proteome of common bean (Phaseolus vulgaris L.) roots after inoculation with Rhizobium etli.接种菜豆根瘤菌后普通菜豆(Phaseolus vulgaris L.)根系蛋白质组分析
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A comparative proteomics analysis in roots of soybean to compatible symbiotic bacteria under flooding stress.淹水胁迫下与大豆相容共生菌的根中比较蛋白质组学分析。
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