Global Review of Blue Carbon Ecosystem Microbial Communities.

Fuente: PubMed
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Autori principali: Birnbaum, Christina, Waryszak, Pawel, Trevathan-Tackett, Stacey M, Bowen, Jennifer L, Connolly, Rod M, Duarte, Carlos M, Macreadie, Peter I
Natura: Artículo científico
Lingua:en
Pubblicazione: Environmental microbiology 2025
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author Birnbaum, Christina
Waryszak, Pawel
Trevathan-Tackett, Stacey M
Bowen, Jennifer L
Connolly, Rod M
Duarte, Carlos M
Macreadie, Peter I
author_facet Birnbaum, Christina
Waryszak, Pawel
Trevathan-Tackett, Stacey M
Bowen, Jennifer L
Connolly, Rod M
Duarte, Carlos M
Macreadie, Peter I
Birnbaum, Christina
Waryszak, Pawel
Trevathan-Tackett, Stacey M
Bowen, Jennifer L
Connolly, Rod M
Duarte, Carlos M
Macreadie, Peter I
collection PubMed - marine biology
contents Global Review of Blue Carbon Ecosystem Microbial Communities. Birnbaum, Christina Waryszak, Pawel Trevathan-Tackett, Stacey M Bowen, Jennifer L Connolly, Rod M Duarte, Carlos M Macreadie, Peter I Archaea Bacteria Fungi Microbiota Ecosystem Biodiversity Carbon Geologic Sediments Microbial communities underpin biogeochemical processes in Blue Carbon Ecosystems (BCEs); however, a comprehensive review of geographic patterns in microbial diversity, microbial functions, and distribution is currently lacking. Here, for the first time, we have analysed 70 years (1930-2020) of archaeal, bacterial, and fungal diversity and functions in mangrove, saltmarsh, and seagrass ecosystems to elucidate publication and geographic trends in reporting data in BCEs and to identify knowledge gaps. Of the 649 journal articles analysed, research on BCE microbial communities has focused overwhelmingly on assessing bacterial richness and functions in BCEs. Our gap analysis revealed that only ~25%-50% of the countries that have BCEs have been represented, suggesting that our understanding of archaeal, bacterial, and fungal geographic diversity in BCEs is still incomplete. In the context of taxonomic-based limitations in our study's approach, we have identified gaps of knowledge in archaeal and fungal sediment biodiversity in saltmarsh and seagrass ecosystems. This significantly impacts our ability to forecast ecosystem services amid current and future human and climate pressures in BCEs. The results from this synthesis could serve as a useful reference for microbial baseline data and research trends in BCEs to develop novel hypothesis-testing research.
format Artículo científico
id pubmed_40817739
institution PubMed
language en
publishDate 2025
publisher Environmental microbiology
record_format pubmed
spellingShingle Global Review of Blue Carbon Ecosystem Microbial Communities.
Birnbaum, Christina
Waryszak, Pawel
Trevathan-Tackett, Stacey M
Bowen, Jennifer L
Connolly, Rod M
Duarte, Carlos M
Macreadie, Peter I
Archaea
Bacteria
Fungi
Microbiota
Ecosystem
Biodiversity
Carbon
Geologic Sediments
Global Review of Blue Carbon Ecosystem Microbial Communities. Birnbaum, Christina Waryszak, Pawel Trevathan-Tackett, Stacey M Bowen, Jennifer L Connolly, Rod M Duarte, Carlos M Macreadie, Peter I Archaea Bacteria Fungi Microbiota Ecosystem Biodiversity Carbon Geologic Sediments Microbial communities underpin biogeochemical processes in Blue Carbon Ecosystems (BCEs); however, a comprehensive review of geographic patterns in microbial diversity, microbial functions, and distribution is currently lacking. Here, for the first time, we have analysed 70 years (1930-2020) of archaeal, bacterial, and fungal diversity and functions in mangrove, saltmarsh, and seagrass ecosystems to elucidate publication and geographic trends in reporting data in BCEs and to identify knowledge gaps. Of the 649 journal articles analysed, research on BCE microbial communities has focused overwhelmingly on assessing bacterial richness and functions in BCEs. Our gap analysis revealed that only ~25%-50% of the countries that have BCEs have been represented, suggesting that our understanding of archaeal, bacterial, and fungal geographic diversity in BCEs is still incomplete. In the context of taxonomic-based limitations in our study's approach, we have identified gaps of knowledge in archaeal and fungal sediment biodiversity in saltmarsh and seagrass ecosystems. This significantly impacts our ability to forecast ecosystem services amid current and future human and climate pressures in BCEs. The results from this synthesis could serve as a useful reference for microbial baseline data and research trends in BCEs to develop novel hypothesis-testing research.
title Global Review of Blue Carbon Ecosystem Microbial Communities.
topic Archaea
Bacteria
Fungi
Microbiota
Ecosystem
Biodiversity
Carbon
Geologic Sediments
url https://pubmed.ncbi.nlm.nih.gov/40817739/