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亚热带北大西洋中吸收磷酸盐的异养细菌细胞的丰度和多样性。

Abundance and diversity of heterotrophic bacterial cells assimilating phosphate in the subtropical North Atlantic Ocean.

机构信息

Woods Hole Oceanographic Institution, Marine Chemistry and Geochemistry, Woods Hole, MA 02543, USA.

出版信息

Environ Microbiol. 2010 Oct;12(10):2773-82. doi: 10.1111/j.1462-2920.2010.02247.x.

DOI:10.1111/j.1462-2920.2010.02247.x
PMID:20545744
Abstract

Microorganisms play key roles in the cycles of carbon and nutrients in the ocean, and identifying the extent to which specific taxa contribute to these cycles will establish their ecological function. We examined the use of (33)P-phosphate to identify heterotrophic bacteria actively involved in the cycling of phosphate, an essential inorganic nutrient. Seawater from the sub-tropical North Atlantic Ocean was incubated with (33)P-phosphate and analysed by microautoradiography to determine the proportion and diversity of the bacterial community-assimilating phosphate. Complementary incubations using (3)H-leucine and (3)H-thymidine were also conducted. We found that a higher proportion of total heterotrophic bacterial cells in surface water samples assimilated phosphate compared with leucine or thymidine. Bacteria from all of the phylogenetic groups we identified by CARD-FISH were able to assimilate phosphate, although the abundances of cells within each group did not scale directly with the number found to assimilate phosphate. Furthermore, a significantly higher proportion of Alphaproteobacteria, Gammaproteobacteria and Cytophaga-like cells assimilated phosphate compared with leucine or thymidine. Our results suggest that a greater proportion of bacterial cells in surface waters are actively participating in the biogeochemical cycling of phosphorus, and possibly other elements, than is currently estimated through the use of (3)H-leucine or (3)H-thymidine.

摘要

微生物在海洋碳和营养物质循环中起着关键作用,确定特定分类群在这些循环中贡献的程度将确定其生态功能。我们研究了(33)P-磷酸盐的使用,以鉴定积极参与磷酸盐循环的异养细菌,磷酸盐是一种必需的无机营养物质。用(33)P-磷酸盐培养来自亚热带北大西洋的海水,并通过微放射性自显影分析来确定同化磷酸盐的细菌群落的比例和多样性。还进行了使用(3)H-亮氨酸和(3)H-胸苷的补充培养。我们发现,与亮氨酸或胸苷相比,表层水样中总异养细菌细胞的比例更高地同化了磷酸盐。通过 CARD-FISH 鉴定的所有系统发育群的细菌都能够同化磷酸盐,尽管每个群中细胞的丰度与发现同化磷酸盐的细胞数量不成正比。此外,与亮氨酸或胸苷相比,α变形菌、γ变形菌和拟杆菌样细胞同化磷酸盐的比例显著更高。我们的结果表明,与目前通过使用(3)H-亮氨酸或(3)H-胸苷估计的相比,表层水中有更多比例的细菌细胞积极参与磷和可能其他元素的生物地球化学循环。

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