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Keystone Arctic paleoceanographic proxy association with putative methanotrophic bacteria

机译:基斯通北极古海洋学代理与推定的甲烷营养细菌的关联

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摘要

Foraminifera in sediments exposed to gas-hydrate dissociation are not expected to have cellular adaptations that facilitate inhabitation of chemosynthesis-based ecosystems because, to date, there are no known endemic seep foraminifera. To establish if foraminifera inhabit sediments impacted by gas-hydrate dissociation, we examined the cellular ultrastructure of Melonis barleeanus (Williamson, 1858) from the Vestnesa gas hydrate province (Arctic Ocean, west of Svalbard at ~79 °N; ~1200-m depth; n = 4). From sediments with gas hydrate indicators, living M. barleeanus had unusual pore plugs composed of a thick, fibrous meshwork; mitochondria were concentrated at the cell periphery, under pore plugs. While there was no evidence of endosymbioses with prokaryotes, most M. barleeanus specimens were associated with what appear to be Type I methanotrophic bacteria. One foraminifer had a particularly large bolus of these microbes concentrated near its aperture. This is the first documented instance of bona fide living M. barleeanus in gas-hydrate sediments and first documentation of a foraminifer living in close association with putative methanotrophs. Our observations have implications to paleoclimate records utilizing this foundational foraminiferal species.
机译:暴露于气体水合物分解的沉积物中的有孔虫预计不会具有促进基于化学合成的生态系统栖息的细胞适应性,因为迄今为止,尚无已知的地方性有孔虫。为了确定有孔虫是否栖息在受气体水合物分解影响的沉积物上,我们研究了委内瑞斯天然气水合物省(北冰洋,斯瓦尔巴德群岛西部〜79°N;〜1200-m深)的Melonis barleeanus(Williamson,1858)的细胞超微结构。 ; n = 4)。从带有气体水合物指示剂的沉积物中,活的M. barleeanus有不寻常的孔塞,该孔塞由厚的纤维状网构成;线粒体集中在孔塞下方的细胞外围。虽然没有证据表明原核生物具有内共生酶,但大多数巴雷莫氏菌标本与看来是I型甲烷营养细菌有关。一个有孔虫将这些微生物特别大的团块聚集在其孔附近。这是在气态水合物沉积物中首次发现真正活着的M. barleeanus的实例,也是第一次发现有孔虫与假定的甲烷营养菌密切相关的有孔虫。我们的观察结果对利用这种有孔虫物种的古气候记录有影响。

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