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Multi-species relationships in legume roots: From pairwise legume-symbiont interactions to the plant - Microbiome - soil continuum

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Autor
Tsiknia M., Tsikou D., Papadopoulou K.K., Ehaliotis C.
Datum
2021
Language
en
DOI
10.1093/femsec/fiaa222
Schlagwort
host-symbiont interaction
legume
microbial activity
root system
soil microorganism
Fabaceae
Rhizobiaceae
Fabaceae
microflora
plant root
soil
symbiosis
Fabaceae
Microbiota
Plant Roots
Soil
Symbiosis
Oxford University Press
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Zusammenfassung
Mutualistic relationships of legume plants with, either bacteria (like rhizobia) or fungi (like arbuscular mycorrhizal fungi), have been investigated intensively, usually as bi-partite interactions. However, diverse symbiotic interactions take place simultaneously or sequentially under field conditions. Their collective, but not additive, contribution to plant growth and performance remains hard to predict, and appears to be furthermore affected by crop species and genotype, non-symbiotic microbial interactions and environmental variables. The challenge is: (i) to unravel the complex overlapping mechanisms that operate between the microbial symbionts as well as between them, their hosts and the rhizosphere (ii) to understand the dynamics of the respective mechanisms in evolutionary and ecological terms. The target for agriculture, food security and the environment, is to use this insight as a solid basis for developing new integrated technologies, practices and strategies for the efficient use of beneficial microbes in legumes and other plants. We review recent advances in our understanding of the symbiotic interactions in legumes roots brought about with the aid of molecular and bioinformatics tools. We go through single symbiont-host interactions, proceed to tripartite symbiont-host interactions, appraise interactions of symbiotic and associative microbiomes with plants in the root-rhizoplane-soil continuum of habitats and end up by examining attempts to validate community ecology principles in the legume-microbe-soil biosystem. © 2021 The Author(s) 2020.
URI
http://hdl.handle.net/11615/79956
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