The Power of Symbiosis in Life and Science.

IF 26.4 1区 生物学 Q1 PLANT SCIENCES
Eva Kondorosi
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引用次数: 0

Abstract

This article traces more than four decades of Eva Kondorosi's personal life and scientific journey in symbiotic nitrogen fixation, from early insights into nitrogenase structure to the molecular mechanisms governing root nodule development and symbiotic cell differentiation in the Medicago-Sinorhizobium meliloti symbiosis. Effective symbiosis depends on precise molecular communication between the partners, beginning in the soil and continuing through a highly coordinated, progressive differentiation program. A defining feature of symbiotic cell development is endoreduplication in both host plant cells and their Rhizobium partners. Host-induced bacterial endoreduplication results in the formation of large, polyploid, noncultivable nitrogen-fixing bacteroids. This terminal differentiation is orchestrated by plant-derived effector peptides, notably nodule-specific cysteine-rich (NCR) and nodulin glycine-rich (nodGRP) peptides, which act sequentially to reprogram bacterial physiology. Together, these findings establish symbiotic nitrogen fixation as a model for cross-kingdom cellular differentiation and highlight NCR and nodGRP peptides as a vast, largely unexplored resource with promising applications in agriculture and medicine.

共生在生命和科学中的力量。
本文追溯了四十多年来Eva Kondorosi在共生固氮方面的个人生活和科学历程,从早期对氮酶结构的认识到紫花草-中国根瘤菌共生中根瘤发育和共生细胞分化的分子机制。有效的共生依赖于伙伴之间精确的分子交流,从土壤开始,通过高度协调的渐进分化程序继续。共生细胞发育的一个决定性特征是寄主植物细胞及其根瘤菌伴侣的内复制。宿主诱导的细菌内复制导致形成大的多倍体,不可培养的固氮类细菌。这种末端分化是由植物衍生的效应肽精心策划的,特别是结节特异性富含半胱氨酸(NCR)和富含结节素甘氨酸(nodGRP)肽,它们依次对细菌生理进行重编程。总之,这些发现建立了共生固氮作为跨界细胞分化的模型,并强调了NCR和nodGRP肽是一种巨大的、很大程度上尚未开发的资源,在农业和医学上具有广阔的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Annual review of plant biology
Annual review of plant biology 生物-植物科学
CiteScore
40.40
自引率
0.40%
发文量
29
期刊介绍: The Annual Review of Plant Biology is a peer-reviewed scientific journal published by Annual Reviews. It has been in publication since 1950 and covers significant developments in the field of plant biology, including biochemistry and biosynthesis, genetics, genomics and molecular biology, cell differentiation, tissue, organ and whole plant events, acclimation and adaptation, and methods and model organisms. The current volume of this journal has been converted from gated to open access through Annual Reviews' Subscribe to Open program, with all articles published under a CC BY license.
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