Transcription Factors Controlling the Rhizobium–Legume Symbiosis: Integrating Infection, Organogenesis and the Abiotic Environment

Author:

Chakraborty Sanhita1ORCID,Valdés-López Oswaldo2ORCID,Stonoha-Arther Christina1ORCID,Ané Jean-Michel13ORCID

Affiliation:

1. Department of Bacteriology, University of Wisconsin , Microbial Sciences Building, 1550 Linden Dr, Madison, WI 53706, USA

2. Laboratorio de Genómica Funcional de Leguminosas, Facultad de Estudios Superiores Iztacala, Universidad Nacional Autónoma de México , Tlalnepantla, Estado de México 54090, México

3. Department of Agronomy, University of Wisconsin , 1575 Linden Dr, Madison, WI 53706, USA

Abstract

Abstract Legume roots engage in a symbiotic relationship with rhizobia, leading to the development of nitrogen-fixing nodules. Nodule development is a sophisticated process and is under the tight regulation of the plant. The symbiosis initiates with a signal exchange between the two partners, followed by the development of a new organ colonized by rhizobia. Over two decades of study have shed light on the transcriptional regulation of rhizobium–legume symbiosis. A large number of transcription factors (TFs) have been implicated in one or more stages of this symbiosis. Legumes must monitor nodule development amidst a dynamic physical environment. Some environmental factors are conducive to nodulation, whereas others are stressful. The modulation of rhizobium–legume symbiosis by the abiotic environment adds another layer of complexity and is also transcriptionally regulated. Several symbiotic TFs act as integrators between symbiosis and the response to the abiotic environment. In this review, we trace the role of various TFs involved in rhizobium–legume symbiosis along its developmental route and highlight the ones that also act as communicators between this symbiosis and the response to the abiotic environment. Finally, we discuss contemporary approaches to study TF-target interactions in plants and probe their potential utility in the field of rhizobium–legume symbiosis.

Funder

U.S. National Science Foundation

Consejo Nacional de Ciencia y Tecnología

Programa de Apoyo a Proyectos de Investigación e Inovación Tecnológica

U.S. Department of Energy

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science,Physiology,General Medicine

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