Disclosing the native blueberry rhizosphere community in Portugal—an integrated metagenomic and isolation approach

Author:

Gomes Anicia12,Narciso Rodrigo12,Regalado Laura12ORCID,Pinheiro Margarida Cardeano12ORCID,Barros Filipa12,Sario Sara12,Santos Conceição12,Mendes Rafael J.12ORCID

Affiliation:

1. Department of Biology, Faculty of Sciences, University of Porto, Porto, Portugal

2. LAQV-REQUIMTE, Department of Biology, Faculty of Sciences, University of Porto, Porto, Portugal

Abstract

Backgorund The production of red fruits, such as blueberry, has been threatened by several stressors from severe periods of drought, nutrient scarcity, phytopathogens, and costs with fertilization programs with adverse consequences. Thus, there is an urgent need to increase this crop’s resilience whilst promoting sustainable agriculture. Plant growth-promoting microorganisms (PGPMs) constitute not only a solution to tackle water and nutrient deficits in soils, but also as a control against phytopathogens and as green compounds for agricultural practices. Methods In this study, a metagenomic approach of the local fungal and bacterial community of the rhizosphere of Vaccinium corymbosum plants was performed. At the same time, both epiphytic and endophytic microorganisms were isolated in order to disclose putative beneficial native organisms. Results Results showed a high relative abundance of Archaeorhizomyces and Serendipita genera in the ITS sequencing, and Bradyrhizobium genus in the 16S sequencing. Diversity analysis disclosed that the fungal community presented a higher inter-sample variability than the bacterial community, and beta-diversity analysis further corroborated this result. Trichoderma spp., Bacillus spp., and Mucor moelleri were isolated from the V. corymbosum plants. Discussion This work revealed a native microbial community capable of establishing mycorrhizal relationships, and with beneficial physiological traits for blueberry production. It was also possible to isolate several naturally-occurring microorganisms that are known to have plant growth-promoting activity and confer tolerance to hydric stress, a serious climate change threat. Future studies should be performed with these isolates to disclose their efficiency in conferring the needed resilience for this and several crops.

Funder

COMPETE 2020

STOP.SUZUKII

Ministério da Ciência e Tecnologia—Fundacão para a Ciência e a Tecnologia

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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