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Dissolution of Calcite in the Twilight Zone: Bacterial Control of Dissolution of Sinking Planktonic Carbonates Is Unlikely

机译:方解石在暮光区的溶解:下沉浮游碳酸盐的溶解的细菌控制不太可能

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摘要

We investigated the ability of bacterial communities to colonize and dissolve two biogenic carbonates (Foraminifera and oyster shells). Bacterial carbonate dissolution in the upper water column is postulated to be driven by metabolic activity of bacteria directly colonising carbonate surfaces and the subsequent development of acidic microenvironments. We employed a combination of microsensor measurements, scanning electron microscopy (SEM), confocal laser scanning microscopy (CLSM) and image analysis and molecular documentation of colonising bacteria to monitor microbial processes and document changes in shell surface topography. Bacterial communities rapidly colonised shell surfaces, forming dense biofilms with extracellular polymeric substance (EPS) deposits. Despite this, we found no evidence of bacterially mediated carbonate dissolution. Dissolution was not indicated by Ca2+ microprofiles, nor was changes in shell surface structure related to the presence of colonizing bacteria. Given the short time (days) settling carbonate material is actually in the twilight zone (500–1000 m), it is highly unlikely that microbial metabolic activity on directly colonised shells plays a significant role in dissolving settling carbonates in the shallow ocean.
机译:我们调查了细菌群落定居和溶解两种生物碳酸盐(有孔虫和牡蛎壳)的能力。推测碳酸盐在上水柱中的溶解是由直接在碳酸盐表面上定殖的细菌的代谢活性和随后的酸性微环境的发展所驱动的。我们采用了微传感器测量,扫描电子显微镜(SEM),共聚焦激光扫描显微镜(CLSM)和图像分析以及殖民细菌的分子记录技术的组合,以监测微生物过程并记录壳表面形貌的变化。细菌群落迅速定居在壳表面,形成具有细胞外聚合物(EPS)沉积物的致密生物膜。尽管如此,我们没有发现细菌介导的碳酸盐溶解的证据。 Ca 2+的微轮廓未表明溶解,壳表面结构的变化也与定殖细菌的存在无关。鉴于沉降碳酸盐物质的时间短(天)实际上位于暮光区(500-1000 m),因此直接定殖的贝壳上的微生物代谢活性不太可能在溶解浅海的碳酸盐中发挥重要作用。

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