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Compatibility between Legumes and Rhizobia for the Establishment of a Successful Nitrogen-Fixing Symbiosis

机译:豆科植物和根瘤菌之间的兼容性以建立成功的固氮共生

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摘要

The root nodule symbiosis established between legumes and rhizobia is an exquisite biological interaction responsible for fixing a significant amount of nitrogen in terrestrial ecosystems. The success of this interaction depends on the recognition of the right partner by the plant within the richest microbial ecosystems on Earth, the soil. Recent metagenomic studies of the soil biome have revealed its complexity, which includes microorganisms that affect plant fitness and growth in a beneficial, harmful, or neutral manner. In this complex scenario, understanding the molecular mechanisms by which legumes recognize and discriminate rhizobia from pathogens, but also between distinct rhizobia species and strains that differ in their symbiotic performance, is a considerable challenge. In this work, we will review how plants are able to recognize and select symbiotic partners from a vast diversity of surrounding bacteria. We will also analyze recent advances that contribute to understand changes in plant gene expression associated with the outcome of the symbiotic interaction. These aspects of nitrogen-fixing symbiosis should contribute to translate the knowledge generated in basic laboratory research into biotechnological advances to improve the efficiency of the nitrogen-fixing symbiosis in agronomic systems.
机译:在豆类和根瘤菌之间建立的根瘤共生是一种精致的生物相互作用,负责固定陆地生态系统中的大量氮。这种相互作用的成功取决于植物对地球(土壤)上最丰富的微生物生态系统的正确伙伴的认可。最近对土壤生物群落的宏基因组学研究已经揭示了其复杂性,其中包括以有益,有害或中性的方式影响植物适应性和生长的微生物。在这种复杂的情况下,了解豆科植物识别并区分根瘤菌与病原体以及不同的根瘤菌物种和共生表现不同的菌株之间的分子机制是一个巨大的挑战。在这项工作中,我们将回顾植物如何从周围细菌的多样性中识别并选择共生伙伴。我们还将分析最近的进展,这些进展有助于了解与共生相互作用的结果相关的植物基因表达的变化。固氮共生的这些方面应有助于将基础实验室研究中产生的知识转化为生物技术进步,以提高农艺系统中固氮共生的效率。

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