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Resilience and receptivity worked in tandem to sustain a geothermal mat community amidst erratic environmental conditions

To elucidate how geothermal irregularities affect the sustainability of high-temperature microbiomes we studied the synecological dynamics of a geothermal microbial mat community (GMMC) vis-à-vis fluctuations in its environment. Spatiotemporally-discrete editions of a photosynthetic GMMC colonizing...

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Autores principales: Ghosh, Wriddhiman, Roy, Chayan, Roy, Rimi, Nilawe, Pravin, Mukherjee, Ambarish, Haldar, Prabir Kumar, Chauhan, Neeraj Kumar, Bhattacharya, Sabyasachi, Agarwal, Atima, George, Ashish, Pyne, Prosenjit, Mandal, Subhrangshu, Rameez, Moidu Jameela, Bala, Goutam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4505329/
https://www.ncbi.nlm.nih.gov/pubmed/26184838
http://dx.doi.org/10.1038/srep12179
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author Ghosh, Wriddhiman
Roy, Chayan
Roy, Rimi
Nilawe, Pravin
Mukherjee, Ambarish
Haldar, Prabir Kumar
Chauhan, Neeraj Kumar
Bhattacharya, Sabyasachi
Agarwal, Atima
George, Ashish
Pyne, Prosenjit
Mandal, Subhrangshu
Rameez, Moidu Jameela
Bala, Goutam
author_facet Ghosh, Wriddhiman
Roy, Chayan
Roy, Rimi
Nilawe, Pravin
Mukherjee, Ambarish
Haldar, Prabir Kumar
Chauhan, Neeraj Kumar
Bhattacharya, Sabyasachi
Agarwal, Atima
George, Ashish
Pyne, Prosenjit
Mandal, Subhrangshu
Rameez, Moidu Jameela
Bala, Goutam
author_sort Ghosh, Wriddhiman
collection PubMed
description To elucidate how geothermal irregularities affect the sustainability of high-temperature microbiomes we studied the synecological dynamics of a geothermal microbial mat community (GMMC) vis-à-vis fluctuations in its environment. Spatiotemporally-discrete editions of a photosynthetic GMMC colonizing the travertine mound of a circum-neutral hot spring cluster served as the model-system. In 2010 a strong geyser atop the mound discharged mineral-rich hot water, which nourished a GMMC continuum from the proximal channels (PC) upto the slope environment (SE) along the mound’s western face. In 2011 that geyser extinguished and consequently the erstwhile mats disappeared. Nevertheless, two relatively-weaker vents erupted in the southern slope and their mineral-poor outflow supported a small GMMC patch in the SE. Comparative metagenomics showed that this mat was a relic of the 2010 community, conserved via population dispersal from erstwhile PC as well as SE niches. Subsequently in 2012, as hydrothermal activity augmented in the southern slope, ecological niches widened and the physiologically-heterogeneous components of the 2011 “seed-community” split into PC and SE meta-communities, thereby reclaiming either end of the thermal gradient. Resilience of incumbent populations, and the community’s receptiveness towards immigrants, were the key qualities that ensured the GMMC’s sustenance amidst habitat degradation and dispersal to discrete environments.
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spelling pubmed-45053292015-07-23 Resilience and receptivity worked in tandem to sustain a geothermal mat community amidst erratic environmental conditions Ghosh, Wriddhiman Roy, Chayan Roy, Rimi Nilawe, Pravin Mukherjee, Ambarish Haldar, Prabir Kumar Chauhan, Neeraj Kumar Bhattacharya, Sabyasachi Agarwal, Atima George, Ashish Pyne, Prosenjit Mandal, Subhrangshu Rameez, Moidu Jameela Bala, Goutam Sci Rep Article To elucidate how geothermal irregularities affect the sustainability of high-temperature microbiomes we studied the synecological dynamics of a geothermal microbial mat community (GMMC) vis-à-vis fluctuations in its environment. Spatiotemporally-discrete editions of a photosynthetic GMMC colonizing the travertine mound of a circum-neutral hot spring cluster served as the model-system. In 2010 a strong geyser atop the mound discharged mineral-rich hot water, which nourished a GMMC continuum from the proximal channels (PC) upto the slope environment (SE) along the mound’s western face. In 2011 that geyser extinguished and consequently the erstwhile mats disappeared. Nevertheless, two relatively-weaker vents erupted in the southern slope and their mineral-poor outflow supported a small GMMC patch in the SE. Comparative metagenomics showed that this mat was a relic of the 2010 community, conserved via population dispersal from erstwhile PC as well as SE niches. Subsequently in 2012, as hydrothermal activity augmented in the southern slope, ecological niches widened and the physiologically-heterogeneous components of the 2011 “seed-community” split into PC and SE meta-communities, thereby reclaiming either end of the thermal gradient. Resilience of incumbent populations, and the community’s receptiveness towards immigrants, were the key qualities that ensured the GMMC’s sustenance amidst habitat degradation and dispersal to discrete environments. Nature Publishing Group 2015-07-17 /pmc/articles/PMC4505329/ /pubmed/26184838 http://dx.doi.org/10.1038/srep12179 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Ghosh, Wriddhiman
Roy, Chayan
Roy, Rimi
Nilawe, Pravin
Mukherjee, Ambarish
Haldar, Prabir Kumar
Chauhan, Neeraj Kumar
Bhattacharya, Sabyasachi
Agarwal, Atima
George, Ashish
Pyne, Prosenjit
Mandal, Subhrangshu
Rameez, Moidu Jameela
Bala, Goutam
Resilience and receptivity worked in tandem to sustain a geothermal mat community amidst erratic environmental conditions
title Resilience and receptivity worked in tandem to sustain a geothermal mat community amidst erratic environmental conditions
title_full Resilience and receptivity worked in tandem to sustain a geothermal mat community amidst erratic environmental conditions
title_fullStr Resilience and receptivity worked in tandem to sustain a geothermal mat community amidst erratic environmental conditions
title_full_unstemmed Resilience and receptivity worked in tandem to sustain a geothermal mat community amidst erratic environmental conditions
title_short Resilience and receptivity worked in tandem to sustain a geothermal mat community amidst erratic environmental conditions
title_sort resilience and receptivity worked in tandem to sustain a geothermal mat community amidst erratic environmental conditions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4505329/
https://www.ncbi.nlm.nih.gov/pubmed/26184838
http://dx.doi.org/10.1038/srep12179
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