Microbes, macrofauna, and methane: A novel seep community fueled by aerobic methanotrophy

被引:40
作者
Thurber, Andrew R. [1 ,2 ]
Levin, Lisa A. [2 ,3 ]
Rowden, Ashley A. [4 ]
Sommer, Stefan [5 ]
Linke, Peter [5 ]
Kroeger, Kerstin [4 ]
机构
[1] Oregon State Univ, Coll Earth Ocean & Atmospher Sci, Corvallis, OR 97331 USA
[2] Univ Calif San Diego, Scripps Inst Oceanog, Integrat Oceanog Div, La Jolla, CA 92093 USA
[3] Univ Calif San Diego, Scripps Inst Oceanog, Ctr Marine Biodivers & Conservat, La Jolla, CA 92093 USA
[4] Natl Inst Water & Atmospher Res, Wellington, New Zealand
[5] Helmholtz Ctr Ocean Res Kiel GEOMAR, Kiel, Germany
基金
美国海洋和大气管理局; 美国国家科学基金会;
关键词
MOSBY MUD VOLCANO; COLD-SEEP; FATTY-ACIDS; HABITAT HETEROGENEITY; SPATIAL HETEROGENEITY; ANAEROBIC OXIDATION; HIKURANGI MARGIN; SEDIMENTS; MARINE; OXYGEN;
D O I
10.4319/lo.2013.58.5.1640
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
During the discovery and description of seven New Zealand methane seep sites, an infaunal assemblage dominated by ampharetid polychaetes was found in association with high seabed methane emission. This ampharetid-bed assemblage had a mean density of 57,000 +/- 7800 macrofaunal individuals m(-2) and a maximum wet biomass of 274 g m(-2), both being among the greatest recorded from deep-sea methane seeps. We investigated these questions: Does the species assemblage present within these ampharetid beds form a distinct seep community on the New Zealand margin? and What type of chemoautotrophic microbes fuel this heterotrophic community? Unlike the other macro-infaunal assemblages, the ampharetid-bed assemblage composition was homogeneous, independent of location. Based on a mixing model of species-specific mass and isotopic composition, combined with published respiration measurements, we estimated that this community consumes 29-90 mmol C m(-2) d(-1) of methane-fueled biomass; this is > 290 times the carbon fixed by anaerobic methane oxidizers in these ampharetid beds. A fatty acid biomarker approach supported the finding that this community, unlike those previously known, consumes primarily aerobic methanotrophic bacteria. Due to the novel microbial fueling and high methane flux rates, New Zealand's ampharetid beds provide a model system to study the influence of metazoan grazing on microbially mediated biogeochemical cycles, including those that involve greenhouse gas emissions.
引用
收藏
页码:1640 / 1656
页数:17
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