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From the Cover: Exopolymer alteration of physical properties of sea ice and implications for ice habitability and biogeochemistry in a warmer Arctic

机译:从封面开始:在温暖的北极地区海冰物理特性的外聚物改变及其对冰适居性和生物地球化学的影响

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摘要

The physical properties of Arctic sea ice determine its habitability. Whether ice-dwelling organisms can change those properties has rarely been addressed. Following discovery that sea ice contains an abundance of gelatinous extracellular polymeric substances (EPS), we examined the effects of algal EPS on the microstructure and salt retention of ice grown from saline solutions containing EPS from a culture of the sea-ice diatom, Melosira arctica. We also experimented with xanthan gum and with EPS from a culture of the cold-adapted bacterium Colwellia psychrerythraea strain 34H. Quantitative microscopic analyses of the artificial ice containing Melosira EPS revealed convoluted ice-pore morphologies of high fractal dimension, mimicking features found in EPS-rich coastal sea ice, whereas EPS-free (control) ice featured much simpler pore geometries. A heat-sensitive glycoprotein fraction of Melosira EPS accounted for complex pore morphologies. Although all tested forms of EPS increased bulk ice salinity (by 11–59%) above the controls, ice containing native Melosira EPS retained the most salt. EPS effects on ice and pore microstructure improve sea ice habitability, survivability, and potential for increased primary productivity, even as they may alter the persistence and biogeochemical imprint of sea ice on the surface ocean in a warming climate.
机译:北极海冰的物理性质决定了其宜居性。冰住生物能否改变这些特性的问题很少得到解决。在发现海冰中含有大量的凝胶状细胞外聚合物质(EPS)之后,我们研究了藻类EPS对由海冰硅藻Melosira arctica培养物中含有EPS的盐溶液生长的冰的微观结构和盐分保留的影响。我们还使用了黄原胶和来自冷适应细菌Colleryia psychrerythraea菌株34H的培养物的EPS。含有Melosira EPS的人造冰的定量显微镜分析表明,具有高分形维数的回旋的冰孔形态,模仿了富含EPS的沿海海冰中的特征,而不含EPS的(对照)冰的孔隙几何形状则简单得多。 Melosira EPS的热敏糖蛋白部分占复杂的孔形态。尽管所有测试形式的EPS都比对照提高了大块冰盐度(增加11–59%),但是含有天然Melosira EPS的冰保留了最多的盐分。 EPS对冰和孔隙微结构的影响改善了海冰的可居住性,生存能力,并具有提高初级生产力的潜力,尽管它们可能会改变气候变暖时海冰在表层海洋上的持久性和生物地球化学烙印。

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