Functional differences of cultivable leaf-associated microorganisms in the native Andean tree Gevuina avellana Mol. (Proteaceae) exposed to atmospheric contamination

Author:

Fuentes-Quiroz Alejandra1,Herrera Héctor1ORCID,Alvarado Roxana1,Rabert Claudia2,Arriagada Cesar3,Valadares Rafael Borges da Silva4

Affiliation:

1. Laboratorio de Silvicultura, Departamento de Ciencias Forestales, Facultad de Ciencias Agropecuarias y Medioambiente, Universidad de La Frontera , Temuco 4811230 , Chile

2. Instituto de Ciencias Biomédicas, Facultad de Ciencias de la Salud, Universidad Autónoma de Chile , Avenida Alemania 01090, Temuco , Chile

3. Laboratorio de Biorremediación, Departamento de Ciencias Forestales, Universidad de La Frontera , Temuco 4811230 , Chile

4. Instituto Tecnologico Vale , Rua Boaventura da Silva 955, Cep 66050-090, Belém, PA , Brazil

Abstract

Abstract Aims This study aimed to evaluate and describe the functional differences of cultivable bacteria and fungi inhabiting the leaves of Gevuina avellana Mol. (Proteaceae) in an urban area with high levels of air pollution and in a native forest in the southern Andes. Methods and results Phyllosphere microorganisms were isolated from the leaves of G. avellana, their plant growth-promoting capabilities were estimated along with their biocontrol potential and tolerance to metal(loid)s. Notably, plants from the urban area showed contrasting culturable leaf-associated microorganisms compared to those from the native area. The tolerance to metal(loid)s in bacteria range from 15 to 450 mg l−1 of metal(loid)s, while fungal strains showed tolerance from 15 to 625 mg l−1, being especially higher in the isolates from the urban area. Notably, the bacterial strain Curtobacterium flaccumfaciens and the fungal strain Cladosporium sp. exhibited several plant-growth-promoting properties along with the ability to inhibit the growth of phytopathogenic fungi. Conclusions Overall, our study provides evidence that culturable taxa in G. avellana leaves is directly influenced by the sampling area. This change is likely due to the presence of atmospheric pollutants and diverse microbial symbionts that can be horizontally acquired from the environment.

Funder

Fondo Nacional de Desarrollo Científico y Tecnológico

Fondo de Fomento al Desarrollo Científico y Tecnológico

Universidad de La Frontera

Publisher

Oxford University Press (OUP)

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