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Ancient origins determine global biogeography of hot and cold desert cyanobacteria.

Publication ,  Journal Article
Bahl, J; Lau, MCY; Smith, GJD; Vijaykrishna, D; Cary, SC; Lacap, DC; Lee, CK; Papke, RT; Warren-Rhodes, KA; Wong, FKY; McKay, CP; Pointing, SB
Published in: Nature communications
January 2011

Factors governing large-scale spatio-temporal distribution of microorganisms remain unresolved, yet are pivotal to understanding ecosystem value and function. Molecular genetic analyses have focused on the influence of niche and neutral processes in determining spatial patterns without considering the temporal scale. Here, we use temporal phylogenetic analysis calibrated using microfossil data for a globally sampled desert cyanobacterium, Chroococcidiopsis, to investigate spatio-temporal patterns in microbial biogeography and evolution. Multilocus phylogenetic associations were dependent on contemporary climate with no evidence for distance-related patterns. Massively parallel pyrosequencing of environmental samples confirmed that Chroococcidiopsis variants were specific to either hot or cold deserts. Temporally scaled phylogenetic analyses showed no evidence of recent inter-regional gene flow, indicating populations have not shared common ancestry since before the formation of modern continents. These results indicate that global distribution of desert cyanobacteria has not resulted from widespread contemporary dispersal but is an ancient evolutionary legacy. This highlights the importance of considering temporal scales in microbial biogeography.

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Published In

Nature communications

DOI

EISSN

2041-1723

ISSN

2041-1723

Publication Date

January 2011

Volume

2

Start / End Page

163
 

Citation

APA
Chicago
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MLA
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Bahl, J., Lau, M. C. Y., Smith, G. J. D., Vijaykrishna, D., Cary, S. C., Lacap, D. C., … Pointing, S. B. (2011). Ancient origins determine global biogeography of hot and cold desert cyanobacteria. Nature Communications, 2, 163. https://doi.org/10.1038/ncomms1167
Bahl, Justin, Maggie C. Y. Lau, Gavin J. D. Smith, Dhanasekaran Vijaykrishna, S Craig Cary, Donnabella C. Lacap, Charles K. Lee, et al. “Ancient origins determine global biogeography of hot and cold desert cyanobacteria.Nature Communications 2 (January 2011): 163. https://doi.org/10.1038/ncomms1167.
Bahl J, Lau MCY, Smith GJD, Vijaykrishna D, Cary SC, Lacap DC, et al. Ancient origins determine global biogeography of hot and cold desert cyanobacteria. Nature communications. 2011 Jan;2:163.
Bahl, Justin, et al. “Ancient origins determine global biogeography of hot and cold desert cyanobacteria.Nature Communications, vol. 2, Jan. 2011, p. 163. Epmc, doi:10.1038/ncomms1167.
Bahl J, Lau MCY, Smith GJD, Vijaykrishna D, Cary SC, Lacap DC, Lee CK, Papke RT, Warren-Rhodes KA, Wong FKY, McKay CP, Pointing SB. Ancient origins determine global biogeography of hot and cold desert cyanobacteria. Nature communications. 2011 Jan;2:163.

Published In

Nature communications

DOI

EISSN

2041-1723

ISSN

2041-1723

Publication Date

January 2011

Volume

2

Start / End Page

163