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水文地球化学对陆地温泉微生物生态学的影响。

Effects of hydrogeochemistry on the microbial ecology of terrestrial hot springs.

作者信息

Barbosa Carla, Tamayo-Leiva Javier, Alcorta Jaime, Salgado Oscar, Daniele Linda, Morata Diego, Díez Beatríz

机构信息

Department of Geology, University of Chile , Santiago, Chile.

Andean Geothermal Center of Excellence (CEGA-Fondap), University of Chile , Santiago, Chile.

出版信息

Microbiol Spectr. 2023 Sep 27;11(5):e0024923. doi: 10.1128/spectrum.00249-23.

Abstract

Temperature, pH, and hydrochemistry of terrestrial hot springs play a critical role in shaping thermal microbial communities. However, the interactions of biotic and abiotic factors at this terrestrial-aquatic interface are still not well understood on a global scale, and the question of how underground events influence microbial communities remains open. To answer this, 11 new samples obtained from the El Tatio geothermal field were analyzed by 16S rRNA amplicon sequencing (V4 region), along with 191 samples from previous publications obtained from the Taupo Volcanic Zone, the Yellowstone Plateau Volcanic Field, and the Eastern Tibetan Plateau, with their temperature, pH, and major ion concentration. Microbial alpha diversity was lower in acid-sulfate waters, and no significant correlations were found with temperature. However, moderate correlations were observed between chemical parameters such as pH (mostly constrained to temperatures below 70°C), SO and abundances of members of the phyla Armatimonadota, Deinococcota, Chloroflexota, Campilobacterota, and Thermoplasmatota. pH and SO gradients were explained by phase separation of sulfur-rich hydrothermal fluids and oxidation of reduced sulfur in the steam phase, which were identified as key processes shaping these communities. Ordination and permutational analysis of variance showed that temperature, pH, and major element hydrochemistry explain only 24% of the microbial community structure. Therefore, most of the variance remained unexplained, suggesting that other environmental or biotic factors are also involved and highlighting the environmental complexity of the ecosystem and its great potential to test niche theory ecological associated questions. IMPORTANCE This is the first approach to investigate whether geothermal processes could have an influence on the ecology of thermal microbial communities on a global scale. In addition to temperature and pH, microbial communities are structured by sulfate concentrations, which depends on the tectono-magmatic settings (such as the depth of magmatic chambers) and the local settings (such as the availability of a confining layer separating NaCl waters from steam after phase separation) and the possibility of mixing with more diluted fluids. Comparison of microbial communities from different geothermal areas by homogeneous sequence processing showed that no significant geographic distance decay was detected on the microbial communities according to Bray-Curtis, Jaccard, unweighted, and weighted Unifrac similarity/dissimilarity indices. Instead, an ancient potential divergence in the same taxonomic groups is suggested between globally distant thermal zones.

摘要

陆地温泉的温度、pH值和水化学在塑造热微生物群落方面起着关键作用。然而,在全球范围内,陆地 - 水生界面处生物和非生物因素之间的相互作用仍未得到充分理解,地下事件如何影响微生物群落的问题仍然悬而未决。为了回答这个问题,对从埃尔塔蒂奥地热田获取的11个新样本进行了16S rRNA扩增子测序(V4区域)分析,并结合了之前出版物中从陶波火山带、黄石高原火山场和青藏高原东部获取的191个样本及其温度、pH值和主要离子浓度数据。酸性硫酸盐水中的微生物α多样性较低,且未发现与温度有显著相关性。然而,观察到化学参数如pH值(主要限于70°C以下的温度)、SO 与装甲菌门、异常球菌门、绿弯菌门、弯曲杆菌门和热原体门成员的丰度之间存在适度相关性。pH值和SO 梯度是由富含硫的热液流体的相分离以及蒸汽相中还原硫的氧化所解释的,这些过程被确定为塑造这些群落的关键过程。排序和置换方差分析表明,温度、pH值和主要元素水化学仅解释了微生物群落结构的24%。因此,大部分变异仍无法解释,这表明其他环境或生物因素也参与其中,凸显了该生态系统的环境复杂性及其检验生态位理论相关问题的巨大潜力。重要性 这是首次在全球范围内研究地热过程是否会对热微生物群落生态产生影响的方法。除了温度和pH值外,微生物群落还由硫酸盐浓度构建,这取决于构造 - 岩浆环境(如岩浆房深度)和局部环境(如相分离后将NaCl水与蒸汽分隔开的封闭层的可用性)以及与更稀释流体混合的可能性。通过均匀序列处理对不同地热区微生物群落进行比较表明,根据Bray - Curtis、Jaccard、非加权和加权Unifrac相似性/不相似性指数,未检测到微生物群落存在显著的地理距离衰减。相反,在全球遥远的热区之间,同一分类群中存在古老的潜在分化迹象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f29/10581198/1480928f31e8/spectrum.00249-23.f001.jpg

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