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Bacterial diversity is strongly associated with historical penguin activity in an Antarctic lake sediment profile.


ABSTRACT: Current penguin activity in Antarctica affects the geochemistry of sediments and their microbial communities; the effects of historical penguin activity are less well understood. Here, bacterial diversity in ornithogenic sediment was investigated using high-throughput pyrosequencing. The relative abundances of dominant phyla were controlled by the amount of historical penguin guano deposition. Significant positive correlations were found between both the bacterial richness and diversity, and the relative penguin number (p < 0.01); this indicated that historical penguin activity drove the vertical distribution of the bacterial communities. The lowest relative abundances of individual phyla corresponded to lowest number of penguin population at 1,800-2,300 yr BP during a drier and colder period; the opposite was observed during a moister and warmer climate (1,400-1,800 yr BP). This study shows that changes in the climate over millennia affected penguin populations and the outcomes of these changes affect the sediment bacterial community today.

SUBMITTER: Zhu R 

PROVIDER: S-EPMC4658551 | biostudies-literature | 2015 Nov

REPOSITORIES: biostudies-literature

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Bacterial diversity is strongly associated with historical penguin activity in an Antarctic lake sediment profile.

Zhu Renbin R   Shi Yu Y   Ma Dawei D   Wang Can C   Xu Hua H   Chu Haiyan H  

Scientific reports 20151125


Current penguin activity in Antarctica affects the geochemistry of sediments and their microbial communities; the effects of historical penguin activity are less well understood. Here, bacterial diversity in ornithogenic sediment was investigated using high-throughput pyrosequencing. The relative abundances of dominant phyla were controlled by the amount of historical penguin guano deposition. Significant positive correlations were found between both the bacterial richness and diversity, and the  ...[more]

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