This scientific article was written by in collaboration with the Microbiomes4Soy coordinator Angela Sessitsch from the AIT Austrian Institute of Technology. Read the abstract below for more information. The full article is available Open Access here.
Abstract
The microbiome is fundamental to plant performance in agroecosystems, influencing primary productivity and climate resilience. Microbiome modulation refers to the targeted manipulation (or steering) and optimization of microbiota features, including taxonomic structure, diversity, composition, assembly dynamics, stability, functional capacity, interactions, and network architecture. Here, we review the current state-of-the-art knowledge and strategies used for microbiome modulation, encompassing biological interventions such as bacteria, fungi, protists, nematodes, and phages, as well metabolites, compounds, and nutrients derived from plants. We further discuss emerging tools and strategies for next-generation microbiome modulation, including function-oriented, multitrophic defined microbial communities assembled based on ecological traits and interactions across multiple trophic levels to enable their establishment and function within the phytobiome; temperate phages; microbiome transplantation and breeding; and functional synbiotics, defined as combinations of beneficial microorganisms and compounds that improve microbiome health and function. In addition, we highlight key knowledge gaps and research priorities for advancing precision microbiome modulation. Addressing current challenges will require integrated frameworks combining experimental validation in planta and reductionist approaches with in silico modeling and multi-omics analyses to better predict, design, and sustain beneficial plant-microbiome outcomes. Overall, microbiome modulation represents a paradigm shift in advancing sustainable and climate-resilient agri-food systems.
Citation:
Malek Marian, Ioannis Stringlis, Eleonora Rolli, Christopher James Barnes, Stéphane Compant, Angela Sessitsch, Microbiome modulation for sustainable crop production and climate resilience, Sustainable Microbiology, 2026;, qvag032, https://doi.org/10.1093/sumbio/qvag032
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