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控制结瘤过程的豆科植物基因的综合比较基因组和转录组分析

Comprehensive Comparative Genomic and Transcriptomic Analyses of the Legume Genes Controlling the Nodulation Process.

作者信息

Qiao Zhenzhen, Pingault Lise, Nourbakhsh-Rey Mehrnoush, Libault Marc

机构信息

Department of Microbiology and Plant Biology, University of Oklahoma Norman, OK, USA.

出版信息

Front Plant Sci. 2016 Jan 29;7:34. doi: 10.3389/fpls.2016.00034. eCollection 2016.

Abstract

Nitrogen is one of the most essential plant nutrients and one of the major factors limiting crop productivity. Having the goal to perform a more sustainable agriculture, there is a need to maximize biological nitrogen fixation, a feature of legumes. To enhance our understanding of the molecular mechanisms controlling the interaction between legumes and rhizobia, the symbiotic partner fixing and assimilating the atmospheric nitrogen for the plant, researchers took advantage of genetic and genomic resources developed across different legume models (e.g., Medicago truncatula, Lotus japonicus, Glycine max, and Phaseolus vulgaris) to identify key regulatory protein coding genes of the nodulation process. In this study, we are presenting the results of a comprehensive comparative genomic analysis to highlight orthologous and paralogous relationships between the legume genes controlling nodulation. Mining large transcriptomic datasets, we also identified several orthologous and paralogous genes characterized by the induction of their expression during nodulation across legume plant species. This comprehensive study prompts new insights into the evolution of the nodulation process in legume plant and will benefit the scientific community interested in the transfer of functional genomic information between species.

摘要

氮是植物最必需的养分之一,也是限制作物生产力的主要因素之一。为了实现更可持续的农业目标,有必要最大限度地提高生物固氮能力,这是豆科植物的一个特性。为了加深我们对控制豆科植物与根瘤菌相互作用分子机制的理解,根瘤菌作为共生伙伴为植物固定和同化大气中的氮,研究人员利用在不同豆科植物模型(如蒺藜苜蓿、百脉根、大豆和菜豆)中开发的遗传和基因组资源,来鉴定结瘤过程中的关键调控蛋白编码基因。在本研究中,我们展示了一项全面的比较基因组分析结果,以突出控制结瘤的豆科植物基因之间的直系同源和旁系同源关系。通过挖掘大型转录组数据集,我们还鉴定了几个直系同源和旁系同源基因,其特征是在豆科植物物种的结瘤过程中表达被诱导。这项全面的研究为豆科植物结瘤过程的进化带来了新的见解,并将使对物种间功能基因组信息转移感兴趣的科学界受益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd68/4732000/fe92a03b0c08/fpls-07-00034-g0001.jpg

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