Hydrothermal Vents

热液喷口
  • 文章类型: Journal Article
    深海热液烟囱的生物活动是由化学营养微生物驱动的,这些微生物从排出的高温流体中代谢化学物质。了解这种环境中的分类学和微生物微观结构是微古生物学和古生态学研究的必要条件。这项研究检查了最近来自罗马遗址热液喷口的黑人吸烟者的化石微生物和相关的微观结构,巴布亚新几内亚近海的东马努斯盆地。尽管所检查的硫化物烟囱的中心由高温矿物学(黄铜矿和树枝状闪锌矿)主导,丝状和球形生物形态发生在外部,热液和海水混合的暖区,这表明它们在重晶石-黄铁矿共沉淀物的胶体和肉毒黄铁矿中的存在。根据在高温栖息地中的存在,两种形态类型都可以解释为嗜热微生物。它们单独(非共生)的发生暗示了对微环境条件的敏感性,这是预期的高温,pH值,和深海热液烟囱壁上的氧化还原梯度。虽然两种形态都经历了温和的热套印,存在分类差异:(i)丝状化石中细胞留下的空间主要由二氧化硅填充,Whereasinter/externalfeatures(crosswalls/septaeandoutershiaths)arepyrized;(ii)coccoidalfossilesshowbothsilica-andydromite-invilledinteriors,和一般更好的保存细胞壁。这些不同的表现可能与微环境因素和生物因素之间的相互作用有关,潜在的对比代谢,以及不同细菌和/或古细菌的细胞壁化学差异。进一步的假设是,球形特征代表生物膜形成生物,其有机物衍生物有助于形成紧密相关的波浪状和皱纹碳质层状结构,这些层状结构至少可以与周围黄铁矿的质地区分开。因此,所提供的数据提供了证据,表明来自热液系统的微生物群的微观结构对于古生物学研究与来自沉积环境的微生物群具有相似的意义。
    Biological activity at deep-sea hydrothermal chimneys is driven by chemotrophic microorganisms that metabolize chemicals from the venting high-temperature fluids. Understanding taphonomy and microbial microtextures in such environments is a necessity for micropaleontological and palaeoecological research. This study examines fossilized microorganisms and related microtextures in a recent black smoker from the Roman Ruins hydrothermal vent site, Eastern Manus Basin offshore of Papua New Guinea. Whereas the center of the examined sulfide chimney is dominated by high-temperature mineralogy (chalcopyrite and dendritic sphalerite), filamentous and coccoidal biomorphs occur in an outer, warm zone of mixing between hydrothermal fluids and seawater, which is indicated by their occurrence within colloform and botryoidal pyrite of barite-pyrite coprecipitates. Both morphotypes can be interpreted as thermophilic microorganisms based on their occurrence in a high-temperature habitat. Their separate (non-commensal) occurrence hints at sensitivities to microenvironmental conditions, which is expectable for strong temperature, pH, and redox gradients at the walls of deep-sea hydrothermal chimneys. Whereas both morphotypes experienced mild thermal overprint, taphonomic differences exist: (i) spaces left by cells in filamentous fossils are predominately filled by silica, whereas inter/extracellular features (crosswalls/septae and outer sheaths) are pyritized; (ii) coccoidal fossils show both silica- and pyrite-infilled interiors, and generally better preservation of cell walls. These different manifestations presumably relate to an interplay between microenvironmental and biological factors, potentially contrasting metabolisms, and differences in cell wall chemistries of distinct bacteria and/or archaea. A further hypothesis is that the coccoidal features represent biofilm-forming organisms, whose organic matter derivates contributed to the formation of intimately associated wavy and wrinkly carbonaceous laminations that are at least locally distinguishable from the texture of the surrounding pyrite. Hence, the presented data provide evidence that microtextures of microbiota from hydrothermal systems can have a similar significance for palaeobiological research as those from sedimentary environments.
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  • 文章类型: Journal Article
    Free-living and symbiotic chemosynthetic microbial communities support primary production and higher trophic levels in deep-sea hydrothermal vents. The shrimp Rimicaris exoculata, which dominates animal communities along the Mid-Atlantic Ridge, houses a complex bacterial community in its enlarged cephalothorax. The dominant bacteria present are from the taxonomic groups Campylobacteria, Desulfobulbia (formerly Deltaproteobacteria), Alphaproteobacteria, Gammaproteobacteria, and some recently discovered iron oxyhydroxide-coated Zetaproteobacteria. This epibiotic consortium uses iron, sulfide, methane, and hydrogen as energy sources. Here, we generated shotgun metagenomes from Rimicaris exoculata cephalothoracic epibiotic communities to reconstruct and investigate symbiotic genomes. We collected specimens from three geochemically contrasted vent fields, TAG, Rainbow, and Snake Pit, to unravel the specificity, variability, and adaptation of Rimicaris-microbe associations.
    Our data enabled us to reconstruct 49 metagenome-assembled genomes (MAGs) from the TAG and Rainbow vent fields, including 16 with more than 90% completion and less than 5% contamination based on single copy core genes. These MAGs belonged to the dominant Campylobacteria, Desulfobulbia, Thiotrichaceae, and some novel candidate phyla radiation (CPR) lineages. In addition, most importantly, two MAGs in our collection were affiliated to Zetaproteobacteria and had no close relatives (average nucleotide identity ANI < 77% with the closest relative Ghiorsea bivora isolated from TAG, and 88% with each other), suggesting potential novel species. Genes for Calvin-Benson Bassham (CBB) carbon fixation, iron, and sulfur oxidation, as well as nitrate reduction, occurred in both MAGs. However, genes for hydrogen oxidation and multicopper oxidases occurred in one MAG only, suggesting shared and specific potential functions for these two novel Zetaproteobacteria symbiotic lineages. Overall, we observed highly similar symbionts co-existing in a single shrimp at both the basaltic TAG and ultramafic Rainbow vent sites. Nevertheless, further examination of the seeming functional redundancy among these epibionts revealed important differences.
    These data highlight microniche partitioning in the Rimicaris holobiont and support recent studies showing that functional diversity enables multiple symbiont strains to coexist in animals colonizing hydrothermal vents. Video Abstract.
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  • 文章类型: Journal Article
    失落的城市热液场是蛇形化生物潜力的一个戏剧性例子。微生物生活在整个失落的城市烟囱中普遍存在,由蛇纹石化及其相关的地球化学反应产生的氢气和有机分子提供动力。失落之城烟囱下方蛇纹岩地下的微生物生命,然而,不太可能是密集的或活跃的。海洋蛇纹岩地下对微生物活动构成了严峻的挑战,包括低孔隙率,温度升高的压力源的组合,高pH值和缺乏生物可利用的∑CO2。更好地了解蛇形化系统中的生物机遇和挑战将为地壳的总可居住体积以及地球地下环境中生命起源和持久性的潜力提供重要的见解。此外,地球上蛇形化地下环境中生命的局限性对木卫二和土卫二等海洋世界地下环境的可居住性具有重大影响。这里,我们回顾了蛇形化系统中寿命的要求和限制,根据我们在失落之城及其所在的水下山上的研究,亚特兰蒂斯地块.本文是讨论会议问题“地球系统中的蛇纹岩”的一部分。
    The Lost City hydrothermal field is a dramatic example of the biological potential of serpentinization. Microbial life is prevalent throughout the Lost City chimneys, powered by the hydrogen gas and organic molecules produced by serpentinization and its associated geochemical reactions. Microbial life in the serpentinite subsurface below the Lost City chimneys, however, is unlikely to be as dense or active. The marine serpentinite subsurface poses serious challenges for microbial activity, including low porosities, the combination of stressors of elevated temperature, high pH and a lack of bioavailable ∑CO2. A better understanding of the biological opportunities and challenges in serpentinizing systems would provide important insights into the total habitable volume of Earth\'s crust and for the potential of the origin and persistence of life in Earth\'s subsurface environments. Furthermore, the limitations to life in serpentinizing subsurface environments on Earth have significant implications for the habitability of subsurface environments on ocean worlds such as Europa and Enceladus. Here, we review the requirements and limitations of life in serpentinizing systems, informed by our research at the Lost City and the underwater mountain on which it resides, the Atlantis Massif. This article is part of a discussion meeting issue \'Serpentinite in the Earth System\'.
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  • 文章类型: Journal Article
    评估物种的耐热性需要确定其热策略并评估其应对温度波动的能力。分子热应激反应(HSR)的动员,这是耐热性的代表,将是物种在高度可变的热环境中定居的策略的一部分。我们在这里研究了定居在这种环境中的深海喷口虾Rimicarisexoculata中HSR的多个参数。高铁感应的设定点,与沿海物种Palaemonetesvarians相比,清楚地反映了这个物种的高耐热性,而高铁被证明很少在外植体自然种群中动员。最后,汇编多个参数,如热上限和HSR的几个阈值,以及热行为观察,使我们能够更准确地了解策略的组合和互补性,这些策略可以解释物种的整体耐热性。
    Assessing species thermal tolerance requires identification of their thermal strategies and evaluation of their ability to cope with temperature fluctuations. The mobilization of the molecular heat stress response (HSR), which is a proxy for the thermal tolerance, would be part of the strategy of species colonizing highly variable thermal environments. We here investigate multiple parameters of the HSR in the deep-sea vent shrimp Rimicaris exoculata that colonizes such environments. The set points of the HSR induction, compared to those of the coastal species Palaemonetes varians, clearly reflect a high thermotolerance in this species, while the HSR is proved to be rarely mobilized in the R. exoculata natural populations. Finally, the compilation of multiple parameters such as the upper thermal limit and several thresholds of the HSR, as well as thermal behavior observations, allows us to provide a more accurate picture of the combination and complementarity of strategies that can account for the overall thermal tolerance of the species.
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  • 文章类型: Journal Article
    The aim of this study was to test the effects of short- and long-term exposure to high pCO2 on the invasive polychaete Branchiomma boholense (Grube, 1878), (Sabellidae), through the implementation of a transplant experiment at the CO2 vents of the Castello Aragonese at the island of Ischia (Italy). Analysis of carbonic anhydrase (CA) activity, protein tissue content and morphometric characteristics were performed on transplanted individuals (short-term exposure) as well as on specimens resident to both normal and low pH/high pCO2 environments (long-term exposure). Results obtained on transplanted worms showed no significant differences in CA activity between individuals exposed to control and acidified conditions, while a decrease in weight was observed under short-term acclimatization to both control and low pH, although at low pH the decrease was more pronounced (∼20%). As regard individuals living under chronic exposure to high pCO2, the morphometric results revealed a significantly lower (70%) wet weight of specimens from the vents with respect to animals living in high pH/low pCO2 areas. Moreover, individuals living in the Castello vents showed doubled values of enzymatic activity and a significantly higher (50%) protein tissue content compared to specimens native from normal pH/low pCO2. The results of this study demonstrated that B. boholense is inclined to maintain a great homeostatic capacity when exposed to low pH, although likely at the energetic expense of other physiological processes such as growth, especially under chronic exposure to high pCO2.
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  • 文章类型: Journal Article
    1977年深海热液喷口的发现挑战了我们对生态系统功能的看法,在这些极端和具有后勤挑战性的环境中进行的研究仍然继续揭示独特的生物过程。这里,我们第一次报道,深海滑冰的独特行为,Bathyrajaspinosissima,似乎正在积极利用热液喷口环境的高温自然地“孵化”发展中的鸡蛋案例。我们假设这种行为直接针对加速胚胎发育时间,因为深海溜冰鞋的卵孵化时间是动物界报道的最长的。类似的卵孵化行为,鸡蛋在火山加热的筑巢地孵化,在白垩纪蜥脚类恐龙和罕见的鸟类巨足中都有记录。据我们所知,这是首次记录海洋环境中使用火山源的孵化行为。
    The discovery of deep-sea hydrothermal vents in 1977 challenged our views of ecosystem functioning and yet, the research conducted at these extreme and logistically challenging environments still continues to reveal unique biological processes. Here, we report for the first time, a unique behavior where the deep-sea skate, Bathyraja spinosissima, appears to be actively using the elevated temperature of a hydrothermal vent environment to naturally \"incubate\" developing egg-cases. We hypothesize that this behavior is directly targeted to accelerate embryo development time given that deep-sea skates have some of the longest egg incubation times reported for the animal kingdom. Similar egg incubating behavior, where eggs are incubated in volcanically heated nesting grounds, have been recorded in Cretaceous sauropod dinosaurs and the rare avian megapode. To our knowledge, this is the first time incubating behavior using a volcanic source is recorded for the marine environment.
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  • 文章类型: Journal Article
    In the past few decades, hydrothermal vent research has progressed immensely, resulting in higher-quality samples and long-term studies. With time, scientists are becoming more aware of the impacts of sampling on the faunal communities and are looking for less invasive ways to investigate the vent ecosystems. In this perspective, imagery analysis plays a very important role. With this study, we test which factors can be quantitatively and accurately assessed based on imagery, through comparison with faunal sampling. Twelve instrumented chains were deployed on the Atlantic Eiffel Tower hydrothermal edifice and the corresponding study sites were subsequently sampled. Discrete, quantitative samples were compared to the imagery recorded during the experiment. An observer-effect was tested, by comparing imagery data gathered by different scientists. Most factors based on image analyses concerning Bathymodiolus azoricus mussels were shown to be valid representations of the corresponding samples. Additional ecological assets, based exclusively on imagery, were included.
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