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Iron-Scytonemin Complexes: DFT Calculations on New UV Protectants for Terrestrial Cyanobacteria and Astrobiological Implications

机译:铁-Scytonemin配合物:陆上蓝细菌的新型紫外线防护剂的DFT计算及其对天体生物学的影响

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摘要

Cyanobacterial colonies produce the radiation-protectant biomolecule scytonemin as part of their response strategy for survival in environmentally stressed conditions in hot and cold deserts. These colonies frequently use sandstone rocks as host matrices for subsurface colonization, which is accompanied by a zone of depletion of iron and transportation of iron compounds to the mineral surface. It is suggested that an iron-scytonemin complex could feature in this survival strategy and facilitate the movement of iron through the rock. Calculations were carried out on several hypothetical iron-scytonemin complexes to evaluate the most stable structure energetically and examine the effect of the complexation of the biomolecule upon the electronic absorption characteristics of the radiation-protectant species. The implications for extraterrestrial planetary detection and analytical monitoring of an iron-scytonemin complex are assessed.
机译:蓝藻菌落产生辐射防护生物分子胞嘧啶,作为其在寒冷和冷漠环境中生存的应对策略的一部分。这些殖民地经常使用砂岩作为基质进行地下殖民化,并伴有铁的耗尽区和铁化合物向矿物表面的运输。有证据表明铁-胞嘧啶复合物可以在这种生存策略中发挥作用,并促进铁在岩石中的移动。对几种假设的铁-胞嘧啶铁络合物进行了计算,以从能量上评估最稳定的结构,并检查了生物分子的络合对辐射防护剂电子吸收特性的影响。评估了铁-胞嘧啶复合物对地外行星探测和分析监测的影响。

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