Microbiomes associated with Coffea arabica and Coffea canephora in four different floristic domains of Brazil

Author:

Veloso Tomás Gomes Reis,da Silva Marliane de Cássia Soares,Moreira Taís Rizzo,da Luz José Maria Rodrigues,Moreli Aldemar Polonini,Kasuya Maria Catarina Megumi,Pereira Lucas LouzadaORCID

Abstract

AbstractBrazilian coffee production relies on the cultivation of Coffea arabica and Coffea canephora. Climate change has been responsible for the decreasing yield of the crops in the country yet the associated microbial community can mitigate these effects by improving plant growth and defense. Although some studies have tried to describe the microorganisms associated with these Coffea species, a study that compares the microbiome on a wider spatial scale is needed for a better understanding of the terroir of each coffee planting region. Therefore, our aim was to evaluate the microbial communities harbored in soils and fruits of these Coffea species in four Brazilian floristic domains (Amazon, Atlantic Forest Caatinga, and Cerrado). One hundred and eight samples (90 of soil and 90 of fruits) were used in the extraction and sequencing of the fungal and bacterial DNA. We detected more than 1000 and 500 bacterial and fungal genera, respectively. Some soil microbial taxa were more closely related to one coffee species than the other species. Bacillus bataviensis tends to occur more in arid soils from the Caatinga, while the fungus Saitozyma sp. was more related to soils cultivated with C. arabica. Thus, the species and the planting region (floristic domain) of coffee affect the microbial composition associated with this crop. This study is the first to report microbial communities associated with coffee produced in four floristic domains that include sites in eight Brazilian states. Data generated by DNA sequencing provides new insights into microbial roles and their potential for the developing more sustainable coffee management, such as the production of biofertilizers and starter culture for fermentation of coffee cherries.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference32 articles.

1. MRE. Brazilian coffees with geographical indication. https://www.gov.br/agricultura/pt-br/assuntos/sustentabilidade/indicacao-geografica/arquivos-publicacoes-ig/brazilian-coffees-with-geographical-indication (2021).

2. Fall, A. F. et al. Roles of arbuscular mycorrhizal fungi on soil fertility: Contribution in the improvement of physical, chemical, and biological properties of the soil. Front. Fungal Biol. 3, 3 (2022).

3. Wei, H. The Environmental Impacts of Pesticide Use in Conventional and Organic Agriculture: Evidence from California. (2021).

4. Brioschi Junior, D. et al. Microbial fermentation affects sensorial, chemical, and microbial profile of coffee under carbonic maceration. Food Chem. 342, 128296 (2021).

5. Duong, B. et al. Coffee microbiota and its potential use in sustainable crop management. A review. Front. Sustain. Food Syst. 4, 237 (2020).

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