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Tomato Domestication Affects Potential Functional Molecular Pathways of Root-Associated Soil Bacteria.

Authors :
Smulders L
Benítez E
Moreno B
López-García Á
Pozo MJ
Ferrero V
de la Peña E
Alcalá Herrera R
Source :
Plants (Basel, Switzerland) [Plants (Basel)] 2021 Sep 17; Vol. 10 (9). Date of Electronic Publication: 2021 Sep 17.
Publication Year :
2021

Abstract

While it has been well evidenced that plant domestication affects the structure of the root-associated microbiome, there is a poor understanding of how domestication-mediated differences between rhizosphere microorganisms functionally affect microbial ecosystem services. In this study, we explore how domestication influenced functional assembly patterns of bacterial communities in the root-associated soil of 27 tomato accessions through a transect of evolution, from plant ancestors to landraces to modern cultivars. Based on molecular analysis, functional profiles were predicted and co-occurrence networks were constructed based on the identification of co-presences of functional units in the tomato root-associated microbiome. The results revealed differences in eight metabolic pathway categories and highlighted the influence of the host genotype on the potential functions of soil bacterial communities. In general, wild tomatoes differed from modern cultivars and tomato landraces which showed similar values, although all ancestral functional characteristics have been conserved across time. We also found that certain functional groups tended to be more evolutionarily conserved in bacterial communities associated with tomato landraces than those of modern varieties. We hypothesize that the capacity of soil bacteria to provide ecosystem services is affected by agronomic practices linked to the domestication process, particularly those related to the preservation of soil organic matter.

Details

Language :
English
ISSN :
2223-7747
Volume :
10
Issue :
9
Database :
MEDLINE
Journal :
Plants (Basel, Switzerland)
Publication Type :
Academic Journal
Accession number :
34579474
Full Text :
https://doi.org/10.3390/plants10091942