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The Nexus between Fire and Soil Bacterial Diversity in the African Miombo Woodlands of Niassa Special Reserve, Mozambique

(1) Background: the Miombo woodlands comprise the most important vegetation from southern Africa and are dominated by tree legumes with an ecology highly driven by fires. Here, we report on the characterization of bacterial communities from the rhizosphere of Brachystegia boehmii in different soil t...

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Autores principales: Maquia, Ivete Sandra Alberto, Fareleira, Paula, Videira e. Castro, Isabel, Soares, Ricardo, Brito, Denise R. A., Mbanze, Aires Afonso, Chaúque, Aniceto, Máguas, Cristina, Ezeokoli, Obinna T., Ribeiro, Natasha Sofia, Marques, Isabel, Ribeiro-Barros, Ana I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400031/
https://www.ncbi.nlm.nih.gov/pubmed/34442641
http://dx.doi.org/10.3390/microorganisms9081562
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author Maquia, Ivete Sandra Alberto
Fareleira, Paula
Videira e. Castro, Isabel
Soares, Ricardo
Brito, Denise R. A.
Mbanze, Aires Afonso
Chaúque, Aniceto
Máguas, Cristina
Ezeokoli, Obinna T.
Ribeiro, Natasha Sofia
Marques, Isabel
Ribeiro-Barros, Ana I.
author_facet Maquia, Ivete Sandra Alberto
Fareleira, Paula
Videira e. Castro, Isabel
Soares, Ricardo
Brito, Denise R. A.
Mbanze, Aires Afonso
Chaúque, Aniceto
Máguas, Cristina
Ezeokoli, Obinna T.
Ribeiro, Natasha Sofia
Marques, Isabel
Ribeiro-Barros, Ana I.
author_sort Maquia, Ivete Sandra Alberto
collection PubMed
description (1) Background: the Miombo woodlands comprise the most important vegetation from southern Africa and are dominated by tree legumes with an ecology highly driven by fires. Here, we report on the characterization of bacterial communities from the rhizosphere of Brachystegia boehmii in different soil types from areas subjected to different regimes. (2) Methods: bacterial communities were identified through Illumina MiSeq sequencing (16S rRNA). Vigna unguiculata was used as a trap to capture nitrogen-fixing bacteria and culture-dependent methods in selective media were used to isolate plant growth promoting bacteria (PGPB). PGP traits were analysed and molecular taxonomy of the purified isolates was performed. (3) Results: Bacterial communities in the Miombo rhizosphere are highly diverse and driven by soil type and fire regime. Independent of the soil or fire regime, the functional diversity was high, and the different consortia maintained the general functions. A diverse pool of diazotrophs was isolated, and included symbiotic (e.g., Mesorhizobium sp., Neorhizobium galegae, Rhizobium sp., and Ensifer adhaerens), and non-symbiotic (e.g., Agrobacterium sp., Burkholderia sp., Cohnella sp., Microvirga sp., Pseudomonas sp., and Stenotrophomonas sp.) bacteria. Several isolates presented cumulative PGP traits. (4) Conclusions: Although the dynamics of bacterial communities from the Miombo rhizosphere is driven by fire, the maintenance of high levels of diversity and functions remain unchanged, constituting a source of promising bacteria in terms of plant-beneficial activities such as mobilization and acquisition of nutrients, mitigation of abiotic stress, and modulation of plant hormone levels.
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spelling pubmed-84000312021-08-29 The Nexus between Fire and Soil Bacterial Diversity in the African Miombo Woodlands of Niassa Special Reserve, Mozambique Maquia, Ivete Sandra Alberto Fareleira, Paula Videira e. Castro, Isabel Soares, Ricardo Brito, Denise R. A. Mbanze, Aires Afonso Chaúque, Aniceto Máguas, Cristina Ezeokoli, Obinna T. Ribeiro, Natasha Sofia Marques, Isabel Ribeiro-Barros, Ana I. Microorganisms Article (1) Background: the Miombo woodlands comprise the most important vegetation from southern Africa and are dominated by tree legumes with an ecology highly driven by fires. Here, we report on the characterization of bacterial communities from the rhizosphere of Brachystegia boehmii in different soil types from areas subjected to different regimes. (2) Methods: bacterial communities were identified through Illumina MiSeq sequencing (16S rRNA). Vigna unguiculata was used as a trap to capture nitrogen-fixing bacteria and culture-dependent methods in selective media were used to isolate plant growth promoting bacteria (PGPB). PGP traits were analysed and molecular taxonomy of the purified isolates was performed. (3) Results: Bacterial communities in the Miombo rhizosphere are highly diverse and driven by soil type and fire regime. Independent of the soil or fire regime, the functional diversity was high, and the different consortia maintained the general functions. A diverse pool of diazotrophs was isolated, and included symbiotic (e.g., Mesorhizobium sp., Neorhizobium galegae, Rhizobium sp., and Ensifer adhaerens), and non-symbiotic (e.g., Agrobacterium sp., Burkholderia sp., Cohnella sp., Microvirga sp., Pseudomonas sp., and Stenotrophomonas sp.) bacteria. Several isolates presented cumulative PGP traits. (4) Conclusions: Although the dynamics of bacterial communities from the Miombo rhizosphere is driven by fire, the maintenance of high levels of diversity and functions remain unchanged, constituting a source of promising bacteria in terms of plant-beneficial activities such as mobilization and acquisition of nutrients, mitigation of abiotic stress, and modulation of plant hormone levels. MDPI 2021-07-22 /pmc/articles/PMC8400031/ /pubmed/34442641 http://dx.doi.org/10.3390/microorganisms9081562 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Maquia, Ivete Sandra Alberto
Fareleira, Paula
Videira e. Castro, Isabel
Soares, Ricardo
Brito, Denise R. A.
Mbanze, Aires Afonso
Chaúque, Aniceto
Máguas, Cristina
Ezeokoli, Obinna T.
Ribeiro, Natasha Sofia
Marques, Isabel
Ribeiro-Barros, Ana I.
The Nexus between Fire and Soil Bacterial Diversity in the African Miombo Woodlands of Niassa Special Reserve, Mozambique
title The Nexus between Fire and Soil Bacterial Diversity in the African Miombo Woodlands of Niassa Special Reserve, Mozambique
title_full The Nexus between Fire and Soil Bacterial Diversity in the African Miombo Woodlands of Niassa Special Reserve, Mozambique
title_fullStr The Nexus between Fire and Soil Bacterial Diversity in the African Miombo Woodlands of Niassa Special Reserve, Mozambique
title_full_unstemmed The Nexus between Fire and Soil Bacterial Diversity in the African Miombo Woodlands of Niassa Special Reserve, Mozambique
title_short The Nexus between Fire and Soil Bacterial Diversity in the African Miombo Woodlands of Niassa Special Reserve, Mozambique
title_sort nexus between fire and soil bacterial diversity in the african miombo woodlands of niassa special reserve, mozambique
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400031/
https://www.ncbi.nlm.nih.gov/pubmed/34442641
http://dx.doi.org/10.3390/microorganisms9081562
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