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Pressure-Retaining Sampler and High-Pressure Systems to Study Deep-Sea Microbes Under in situ Conditions

机译:压力保留采样器和高压系统,用于研究原地条件下的深海微生物

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摘要

The pelagic realm of the dark ocean is characterized by high hydrostatic pressure, low temperature, high-inorganic nutrients, and low organic carbon concentrations. Measurements of metabolic activities of bathypelagic bacteria are often underestimated due to the technological limitations in recovering samples and maintaining them under in situ environmental conditions. Moreover, most of the pressure-retaining samplers, developed by a number of different labs, able to maintain seawater samples at in situ pressure during recovery have remained at the prototype stage, and therefore not available to the scientific community. In this paper, we will describe a ready-to-use pressure-retaining sampler, which can be adapted to use on a CTD-carousel sampler. As well as being able to recover samples under in situ high pressure (up to 60 MPa) we propose a sample processing in equi-pressure mode. Using a piloted pressure generator, we present how to perform sub-sampling and transfer of samples in equi-pressure mode to obtain replicates and perform hyperbaric experiments safely and efficiently (with <2% pressure variability). As proof of concept, we describe a field application (prokaryotic activity measurements and incubation experiment) with samples collected at 3,000m-depth in the Mediterranean Sea. Sampling, sub-sampling, transfer, and incubations were performed under in situ high pressure conditions and compared to those performed following decompression and incubation at atmospheric pressure. Three successive incubations were made for each condition using direct dissolved-oxygen concentration measurements to determine the incubation times. Subsamples were collected at the end of each incubation to monitor the prokaryotic diversity, using 16S-rDNA/rRNA high-throughput sequencing. Our results demonstrated that oxygen consumption by prokaryotes is always higher under in situ conditions than after decompression and incubation at atmospheric pressure. In addition, over time, the variations in the prokaryotic community composition and structure are seen to be driven by the different experimental conditions. Finally, within samples maintained under in situ high pressure conditions, the active (16S rRNA) prokaryotic community was dominated by sequences affiliated with rare families containing piezophilic isolates, such as Oceanospirillaceae or Colwelliaceae. These results demonstrate the biological importance of maintaining in situ conditions during and after sampling in deep-sea environments.
机译:黑暗海洋的骨质境界的特征在于静水压力高,温度低,高无机营养和低有机碳浓度。由于恢复样品的技术限制并在原位环境条件下维持它们,沐浴膜粘性细菌的代谢活性的测量通常被低估。此外,由多种不同的实验室开发的大多数压力保持取样器,能够在恢复期间在原位压力下维持海水样品在原型阶段,因此对科学界不可用。在本文中,我们将描述一种即用的压力保留采样器,可以适用于CTD - 旋转木马采样器。并且能够在原位高压(最多60MPa)下恢复样品,我们提出了Equi压力模式的样品处理。使用导向的压力发生器,我们提出了如何在Equi-Fucture模式下执行子采样和样品的传输,以获得复制并安全有效地进行高压实验(具有<2%的压力变化)。作为概念证明,我们描述了在地中海在3,000米深度收集的样品的现场应用(原核活性测量和孵化实验)。在原位高压条件下进行采样,副取样,转移和孵育,并与在大气压下进行的减压和孵育后进行的那些相比。使用直接溶解 - 氧浓度测量来确定每种条件进行三次连续孵育,以确定孵育时间。在每次孵育结束时收集副样片以使用16S-RDNA / RRNA高通量测序监测原核多样性。我们的结果表明,原位条件下原核素的氧气消耗总是比减压在大气压下孵育后的原位条件。另外,随着时间的推移,可以看到原核群落组成和结构的变化被不同的实验条件驱动。最后,在原位高压条件下维持的样品中,活性(16S rRNA)原核群落由含有含有类稀有类化合物分离株的稀有类别的序列来支配,例如Enceanospirillaceae或Colwelliveae。这些结果证明了在深海环境中在抽样期间和后维持原位条件的生物学重要性。

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