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Microbial Community and Biochemical Dynamics of Biological Soil Crusts across a Gradient of Surface Coverage in the Central Mojave Desert

In this study, we expand upon the biogeography of biological soil crusts (BSCs) and provide molecular insights into the microbial community and biochemical dynamics along the vertical BSC column structure, and across a transect of increasing BSC surface coverage in the central Mojave Desert, CA, Uni...

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Autores principales: Mogul, Rakesh, Vaishampayan, Parag, Bashir, Mina, McKay, Chris P., Schubert, Keith, Bornaccorsi, Rosalba, Gomez, Ernesto, Tharayil, Sneha, Payton, Geoffrey, Capra, Juliana, Andaya, Jessica, Bacon, Leonard, Bargoma, Emily, Black, David, Boos, Katie, Brant, Michaela, Chabot, Michael, Chau, Danny, Cisneros, Jessica, Chu, Geoff, Curnutt, Jane, DiMizio, Jessica, Engelbrecht, Christian, Gott, Caroline, Harnoto, Raechel, Hovanesian, Ruben, Johnson, Shane, Lavergne, Britne, Martinez, Gabriel, Mans, Paul, Morales, Ernesto, Oei, Alex, Peplow, Gary, Piaget, Ryan, Ponce, Nicole, Renteria, Eduardo, Rodriguez, Veronica, Rodriguez, Joseph, Santander, Monica, Sarmiento, Khamille, Scheppelmann, Allison, Schroter, Gavin, Sexton, Devan, Stephenson, Jenin, Symer, Kristin, Russo-Tait, Tatiane, Weigel, Bill, Wilhelm, Mary B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5660283/
https://www.ncbi.nlm.nih.gov/pubmed/29109701
http://dx.doi.org/10.3389/fmicb.2017.01974
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author Mogul, Rakesh
Vaishampayan, Parag
Bashir, Mina
McKay, Chris P.
Schubert, Keith
Bornaccorsi, Rosalba
Gomez, Ernesto
Tharayil, Sneha
Payton, Geoffrey
Capra, Juliana
Andaya, Jessica
Bacon, Leonard
Bargoma, Emily
Black, David
Boos, Katie
Brant, Michaela
Chabot, Michael
Chau, Danny
Cisneros, Jessica
Chu, Geoff
Curnutt, Jane
DiMizio, Jessica
Engelbrecht, Christian
Gott, Caroline
Harnoto, Raechel
Hovanesian, Ruben
Johnson, Shane
Lavergne, Britne
Martinez, Gabriel
Mans, Paul
Morales, Ernesto
Oei, Alex
Peplow, Gary
Piaget, Ryan
Ponce, Nicole
Renteria, Eduardo
Rodriguez, Veronica
Rodriguez, Joseph
Santander, Monica
Sarmiento, Khamille
Scheppelmann, Allison
Schroter, Gavin
Sexton, Devan
Stephenson, Jenin
Symer, Kristin
Russo-Tait, Tatiane
Weigel, Bill
Wilhelm, Mary B.
author_facet Mogul, Rakesh
Vaishampayan, Parag
Bashir, Mina
McKay, Chris P.
Schubert, Keith
Bornaccorsi, Rosalba
Gomez, Ernesto
Tharayil, Sneha
Payton, Geoffrey
Capra, Juliana
Andaya, Jessica
Bacon, Leonard
Bargoma, Emily
Black, David
Boos, Katie
Brant, Michaela
Chabot, Michael
Chau, Danny
Cisneros, Jessica
Chu, Geoff
Curnutt, Jane
DiMizio, Jessica
Engelbrecht, Christian
Gott, Caroline
Harnoto, Raechel
Hovanesian, Ruben
Johnson, Shane
Lavergne, Britne
Martinez, Gabriel
Mans, Paul
Morales, Ernesto
Oei, Alex
Peplow, Gary
Piaget, Ryan
Ponce, Nicole
Renteria, Eduardo
Rodriguez, Veronica
Rodriguez, Joseph
Santander, Monica
Sarmiento, Khamille
Scheppelmann, Allison
Schroter, Gavin
Sexton, Devan
Stephenson, Jenin
Symer, Kristin
Russo-Tait, Tatiane
Weigel, Bill
Wilhelm, Mary B.
author_sort Mogul, Rakesh
collection PubMed
description In this study, we expand upon the biogeography of biological soil crusts (BSCs) and provide molecular insights into the microbial community and biochemical dynamics along the vertical BSC column structure, and across a transect of increasing BSC surface coverage in the central Mojave Desert, CA, United States. Next generation sequencing reveals a bacterial community profile that is distinct among BSCs in the southwestern United States. Distribution of major phyla in the BSC topsoils included Cyanobacteria (33 ± 8%), Proteobacteria (26 ± 6%), and Chloroflexi (12 ± 4%), with Phormidium being the numerically dominant genus. Furthermore, BSC subsurfaces contained Proteobacteria (23 ± 5%), Actinobacteria (20 ± 5%), and Chloroflexi (18 ± 3%), with an unidentified genus from Chloroflexi (AKIW781, order) being numerically dominant. Across the transect, changes in distribution at the phylum (p < 0.0439) and genus (p < 0.006) levels, including multiple biochemical and geochemical trends (p < 0.05), positively correlated with increasing BSC surface coverage. This included increases in (a) Chloroflexi abundance, (b) abundance and diversity of Cyanobacteria, (b) OTU-level diversity in the topsoil, (c) OTU-level differentiation between the topsoil and subsurface, (d) intracellular ATP abundances and catalase activities, and (e) enrichments in clay, silt, and varying elements, including S, Mn, Co, As, and Pb, in the BSC topsoils. In sum, these studies suggest that BSCs from regions of differing surface coverage represent early successional stages, which exhibit increasing bacterial diversity, metabolic activities, and capacity to restructure the soil. Further, these trends suggest that BSC successional maturation and colonization across the transect are inhibited by metals/metalloids such as B, Ca, Ti, Mn, Co, Ni, Mo, and Pb.
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spelling pubmed-56602832017-11-06 Microbial Community and Biochemical Dynamics of Biological Soil Crusts across a Gradient of Surface Coverage in the Central Mojave Desert Mogul, Rakesh Vaishampayan, Parag Bashir, Mina McKay, Chris P. Schubert, Keith Bornaccorsi, Rosalba Gomez, Ernesto Tharayil, Sneha Payton, Geoffrey Capra, Juliana Andaya, Jessica Bacon, Leonard Bargoma, Emily Black, David Boos, Katie Brant, Michaela Chabot, Michael Chau, Danny Cisneros, Jessica Chu, Geoff Curnutt, Jane DiMizio, Jessica Engelbrecht, Christian Gott, Caroline Harnoto, Raechel Hovanesian, Ruben Johnson, Shane Lavergne, Britne Martinez, Gabriel Mans, Paul Morales, Ernesto Oei, Alex Peplow, Gary Piaget, Ryan Ponce, Nicole Renteria, Eduardo Rodriguez, Veronica Rodriguez, Joseph Santander, Monica Sarmiento, Khamille Scheppelmann, Allison Schroter, Gavin Sexton, Devan Stephenson, Jenin Symer, Kristin Russo-Tait, Tatiane Weigel, Bill Wilhelm, Mary B. Front Microbiol Microbiology In this study, we expand upon the biogeography of biological soil crusts (BSCs) and provide molecular insights into the microbial community and biochemical dynamics along the vertical BSC column structure, and across a transect of increasing BSC surface coverage in the central Mojave Desert, CA, United States. Next generation sequencing reveals a bacterial community profile that is distinct among BSCs in the southwestern United States. Distribution of major phyla in the BSC topsoils included Cyanobacteria (33 ± 8%), Proteobacteria (26 ± 6%), and Chloroflexi (12 ± 4%), with Phormidium being the numerically dominant genus. Furthermore, BSC subsurfaces contained Proteobacteria (23 ± 5%), Actinobacteria (20 ± 5%), and Chloroflexi (18 ± 3%), with an unidentified genus from Chloroflexi (AKIW781, order) being numerically dominant. Across the transect, changes in distribution at the phylum (p < 0.0439) and genus (p < 0.006) levels, including multiple biochemical and geochemical trends (p < 0.05), positively correlated with increasing BSC surface coverage. This included increases in (a) Chloroflexi abundance, (b) abundance and diversity of Cyanobacteria, (b) OTU-level diversity in the topsoil, (c) OTU-level differentiation between the topsoil and subsurface, (d) intracellular ATP abundances and catalase activities, and (e) enrichments in clay, silt, and varying elements, including S, Mn, Co, As, and Pb, in the BSC topsoils. In sum, these studies suggest that BSCs from regions of differing surface coverage represent early successional stages, which exhibit increasing bacterial diversity, metabolic activities, and capacity to restructure the soil. Further, these trends suggest that BSC successional maturation and colonization across the transect are inhibited by metals/metalloids such as B, Ca, Ti, Mn, Co, Ni, Mo, and Pb. Frontiers Media S.A. 2017-10-23 /pmc/articles/PMC5660283/ /pubmed/29109701 http://dx.doi.org/10.3389/fmicb.2017.01974 Text en Copyright © 2017 Mogul, Vaishampayan, Bashir, McKay, Schubert, Bornaccorsi, Gomez, Tharayil, Payton, Capra, Andaya, Bacon, Bargoma, Black, Boos, Brant, Chabot, Chau, Cisneros, Chu, Curnutt, DiMizio, Engelbrecht, Gott, Harnoto, Hovanesian, Johnson, Lavergne, Martinez, Mans, Morales, Oei, Peplow, Piaget, Ponce, Renteria, Rodriguez, Rodriguez, Santander, Sarmiento, Scheppelmann, Schroter, Sexton, Stephenson, Symer, Russo-Tait, Weigel and Wilhelm. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Mogul, Rakesh
Vaishampayan, Parag
Bashir, Mina
McKay, Chris P.
Schubert, Keith
Bornaccorsi, Rosalba
Gomez, Ernesto
Tharayil, Sneha
Payton, Geoffrey
Capra, Juliana
Andaya, Jessica
Bacon, Leonard
Bargoma, Emily
Black, David
Boos, Katie
Brant, Michaela
Chabot, Michael
Chau, Danny
Cisneros, Jessica
Chu, Geoff
Curnutt, Jane
DiMizio, Jessica
Engelbrecht, Christian
Gott, Caroline
Harnoto, Raechel
Hovanesian, Ruben
Johnson, Shane
Lavergne, Britne
Martinez, Gabriel
Mans, Paul
Morales, Ernesto
Oei, Alex
Peplow, Gary
Piaget, Ryan
Ponce, Nicole
Renteria, Eduardo
Rodriguez, Veronica
Rodriguez, Joseph
Santander, Monica
Sarmiento, Khamille
Scheppelmann, Allison
Schroter, Gavin
Sexton, Devan
Stephenson, Jenin
Symer, Kristin
Russo-Tait, Tatiane
Weigel, Bill
Wilhelm, Mary B.
Microbial Community and Biochemical Dynamics of Biological Soil Crusts across a Gradient of Surface Coverage in the Central Mojave Desert
title Microbial Community and Biochemical Dynamics of Biological Soil Crusts across a Gradient of Surface Coverage in the Central Mojave Desert
title_full Microbial Community and Biochemical Dynamics of Biological Soil Crusts across a Gradient of Surface Coverage in the Central Mojave Desert
title_fullStr Microbial Community and Biochemical Dynamics of Biological Soil Crusts across a Gradient of Surface Coverage in the Central Mojave Desert
title_full_unstemmed Microbial Community and Biochemical Dynamics of Biological Soil Crusts across a Gradient of Surface Coverage in the Central Mojave Desert
title_short Microbial Community and Biochemical Dynamics of Biological Soil Crusts across a Gradient of Surface Coverage in the Central Mojave Desert
title_sort microbial community and biochemical dynamics of biological soil crusts across a gradient of surface coverage in the central mojave desert
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5660283/
https://www.ncbi.nlm.nih.gov/pubmed/29109701
http://dx.doi.org/10.3389/fmicb.2017.01974
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