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大西洋中古菌氨氧化菌的宏观生态模式。

Macroecological patterns of archaeal ammonia oxidizers in the Atlantic Ocean.

作者信息

Sintes Eva, De Corte Daniele, Ouillon Natascha, Herndl Gerhard J

机构信息

Department of Limnology and Bio-Oceanography, Center of Ecology, University of Vienna, Althanstrasse 14, 1090, Vienna, Austria.

Department of Biological Oceanography, Royal Netherlands Institute for Sea Research, PO Box 59, 1790, Den Burg, The Netherlands.

出版信息

Mol Ecol. 2015 Oct;24(19):4931-42. doi: 10.1111/mec.13365.

Abstract

Macroecological patterns are found in animals and plants, but also in micro-organisms. Macroecological and biogeographic distribution patterns in marine Archaea, however, have not been studied yet. Ammonia-oxidizing Archaea (AOA) show a bipolar distribution (i.e. similar communities in the northernmost and the southernmost locations, separated by distinct communities in the tropical and gyral regions) throughout the Atlantic, detectable from epipelagic to upper bathypelagic layers (<2000 m depth). This tentatively suggests an influence of the epipelagic conditions of organic matter production on bathypelagic AOA communities. The AOA communities below 2000 m depth showed a less pronounced biogeographic distribution pattern than the upper 2000 m water column. Overall, AOA in the surface and deep Atlantic waters exhibit distance-decay relationships and follow the Rapoport rule in a similar way as bacterial communities and macroorganisms. This indicates a major role of environmental conditions in shaping the community composition and assembly (species sorting) and no, or only weak limits for dispersal in the oceanic thaumarchaeal communities. However, there is indication of a different strength of these relationships between AOA and Bacteria, linked to the intrinsic differences between these two domains.

摘要

宏观生态模式不仅存在于动物和植物中,也存在于微生物中。然而,海洋古菌的宏观生态和生物地理分布模式尚未得到研究。氨氧化古菌(AOA)在整个大西洋呈现出两极分布(即在最北端和最南端具有相似的群落,中间被热带和环流区域的不同群落隔开),从表层到上半深海层(深度<2000米)都可检测到。这初步表明,表层有机物质生产条件对深海AOA群落有影响。深度超过2000米的AOA群落,其生物地理分布模式不如上层2000米水柱明显。总体而言,大西洋表层和深层水域的AOA呈现出距离衰减关系,并且与细菌群落和大型生物类似,遵循拉波波特法则。这表明环境条件在塑造群落组成和组装(物种分选)中起主要作用,并且在海洋奇古菌群落中,扩散没有限制或只有微弱限制。然而,有迹象表明,AOA和细菌之间这些关系的强度不同,这与这两个域之间的内在差异有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8190/4950044/0e4a81802c6a/MEC-24-4931-g001.jpg

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