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In situ Dynamics of O2 pH Light and Photosynthesis in Ikaite Tufa Columns (Ikka Fjord Greenland)—A Unique Microbial Habitat

机译:Ikaite Tufa色谱柱(格陵兰岛Ikka峡湾)中O2pH光和光合作用的原位动力学-一种独特的微生物栖息地

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摘要

The Ikka Fjord (SW Greenland) harbors a unique microbial habitat in the form of several hundred submarine tufa columns composed of ikaite, a special hexahydrate form of calcium carbonate that precipitates when alkaline phosphate- and carbonate-enriched spring water seeping out of the sea floor meets cold seawater. While several unique heterotrophic microbes have been isolated from the tufa columns, the microbial activity, and the boundary conditions for microbial growth in ikaite have remained unexplored. We present the first detailed in situ characterization of the physico-chemical microenvironment and activity of oxygenic phototrophs thriving within the ikaite columns. In situ underwater microsensor measurements of pH, temperature, and irradiance in the porous ikaite crystal matrix, revealed an extreme microenvironment characterized by low temperatures, strong light attenuation, and gradients of pH changing from pH 9 at the outer column surface to above pH 10 over the first 1–2 cm of the ikaite. This outer layer of the freshly deposited ikaite matrix contained densely pigmented yellow and green zones harboring a diverse phototrophic community dominated by diatoms and cyanobacteria, respectively, as shown by amplicon sequencing. In situ O2 measurements, as well as underwater variable chlorophyll fluorescence measurements of photosynthetic activity, demonstrated high levels of oxygenic photosynthesis in this extreme gradient environment with strong irradiance-driven O2 dynamics ranging from anoxia to hyperoxic conditions in the ikaite matrix, albeit the local formation of gas bubbles buffered the day-night dynamics of O2 in the tufa columns. The microbial phototrophs in the ikaite matrix are embedded in exopolymers forming endolithic biofilms that may interact with mineral formation and cementing of ikaite crystals.
机译:Ikka Fjord(SW格陵兰)拥有一个独特的微生物栖息地,其形式是由ikaite构成的数百个海底凝灰岩柱,这是一种特殊的六水合碳酸钙形式,当富含碱性磷酸盐和碳酸盐的泉水从海底渗出时会沉淀出来。遇上冷海水。尽管已经从凝灰岩色谱柱中分离出了几种独特的异养微生物,但微生物活性以及在ikaite中微生物生长的边界条件仍待探索。我们提出了在ikaite列中兴旺的物理化学微环境和氧光养生物活动的第一个详细的原位表征。在现场水下微传感器中对多孔钾长石晶体基质中的pH,温度和辐照度进行的测量显示出一种极端的微环境,其特征在于低温,强烈的光衰减,以及pH梯度从柱外表面的pH 9变为超过pH 10 ikaite的前1-2厘米。如扩增子测序所示,新鲜沉积的钾铝石基质的外层包含密集着色的黄色和绿色区域,该区域具有分别由硅藻和蓝细菌主导的多样化的光养群落。原位O2测量以及水下光合作用的可变叶绿素荧光测量结果表明,在这种极端梯度环境中,高水平的光合作用具有很高的辐照度驱动的O2动态,从缺氧到高氧条件下都在ikaite基质中,尽管局部形成气泡缓冲了石灰粉塔中O2的昼夜动态。 ikaite基质中的微生物光养菌被嵌入到聚合物中,形成了内生生物膜,可能与矿物质的形成和ikaite晶体的固结相互作用。

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