Analysis of -microorganism interactions: basis for understanding plant-microbe and plant-pathogen interactions.

Front Plant Sci

Recognised Research Group AGROBIOTECH, UIC-370 (JCyL), Department of Plant Production and Forest Resources, Higher Technical School of Agricultural Engineering of Palencia, University Institute for Research in Sustainable Forest Management (iuFOR), University of Valladolid, Palencia, Spain.

Published: February 2024

is a bryophyte gaining significance as a model plant in evolutionary studies in recent years. This is attributed to its small-sequenced genome, standardized transformation methodology, global distribution, and easy and rapid culturing. As an evolutionary model, contributes to our understanding of the evolution of plant defensive responses and the associated hormonal signaling pathways. Through its interaction with microorganisms, serves as a valuable source of knowledge, yielding insights into new microbial species and bioactive compounds. Bibliographic analysis involved collecting, reading, and categorizing documents obtained from the Scopus and Web of Science databases using different search terms. The review was based on 30 articles published between 1995 and 2023, with Japanese and Spanish authors emerging as the most prolific contributors in this field. These articles have been grouped into four main themes: antimicrobial metabolites produced by ; identification and characterization of epiphytic, endophytic, and pathogenic microorganisms; molecular studies of the direct interaction between and microorganisms; and plant transformation using bacterial vectors. This review highlights the key findings from these articles and identifies potential future research directions.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10879820PMC
http://dx.doi.org/10.3389/fpls.2024.1301816DOI Listing

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