Different Functional and Taxonomic Composition of the Microbiome in the Rhizosphere of Two Purslane Genotypes

Author:

Carrascosa Angel1ORCID,Pascual Jose Antonio1ORCID,López-García Alvaro1,Romo-Vaquero Maria2ORCID,Ros Margarita1ORCID,Petropoulos Spyridon A.3ORCID,Alguacil Maria del Mar1ORCID

Affiliation:

1. CSIC—Centro de Edafología y Biología Aplicada del Segura (CEBAS), Department of Soil and Water Conservation, Campus de Espinardo, P.O. Box 164, 30100 Murcia, Spain

2. CSIC—Centro de Edafología y Biología Aplicada del Segura (CEBAS), Department of Food Science and Technology, Campus de Espinardo, P.O. Box 164, 30100 Murcia, Spain

3. Department of Agriculture, Crop Production and Rural Environment, University of Thessaly, 38446 Volos, Greece

Abstract

Soil microbial communities have an important role in plant establishment and health. Particularly, the role of the soil microbiome in agriculture is of current interest. The study of microbial communities associated with purslane could open questions about the rational exploitation of the microbiota for sustainable agricultural purposes. In this study, the composition of the fungal and bacterial communities and the bacterial metabolic functions, associated with the rhizospheres of two purslane genotypes (one commercially available and one collected from the wild in Spain) were evaluated. The results showed a clear effect of purslane genotype on fungal and bacterial community composition and functional profiles. The bacterial community of the commercial purslane rhizosphere was characterized by more numerous metabolic pathways, mainly pathways related to Terpenoids and Polyketides, Carbohydrate, Lipid, and Amino Acid metabolism. By contrast, the rhizosphere bacterial community of the Spanish (wild) genotype was characterized by the enrichment of functions related to cellular processes such as cell motility and transport. We hypothesize that these differences could be due to differential effects of root exudate composition on the microbial functional community composition. This finding points out the need to consider differences in the functional characteristics of plant genotypes when selecting the beneficial microorganisms to be used as biofertilizers aiming to maximize plant growth and resistance to environmental stressors.

Funder

Spanish Ministerio de Ciencia e Innovación

General Secretariat for Research and Technology of Greece

PRIMA foundation

Publisher

MDPI AG

Subject

Agronomy and Crop Science

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