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“Bagno dell'Acqua”湖作为一种新型类火星模拟环境:肽核酸(PNA)和核糖核酸(RNA)构建模块及寡聚物的前生物合成

The "Bagno dell'Acqua" Lake as a Novel Mars-like Analogue: Prebiotic Syntheses of PNA and RNA Building Blocks and Oligomers.

作者信息

Ubertini Valentina, Mancin Eleonora, Bruschini Enrico, Ferrari Marco, Piacentini Agnese, Fazi Stefano, Mazzoni Cristina, Bizzarri Bruno Mattia, Saladino Raffaele, Costanzo Giovanna

机构信息

Department of Ecological and Biological Sciences (DEB), University of Tuscia, 01100 Viterbo, Italy.

Institute for Space Astrophysics and Planetology-INAF, 00133 Rome, Italy.

出版信息

Int J Mol Sci. 2025 Jul 19;26(14):6952. doi: 10.3390/ijms26146952.

Abstract

The ongoing exploration of planets such as Mars is producing a wealth of data to define habitable environments beyond the Earth. The inferred presence of neutral to alkaline aqueous fluids on Mars in its early history suggests that many potentially habitable environments existed on the planet. Terrestrial analogues with similar chemical and physical properties are being explored and characterized in order to assess their suitability for triggering the Origin of Life on Mars. Recently, a novel Mars analogue site has been identified in the Bagno dell'Acqua Lake, which is located in the island of Pantelleria in Sicily (Italy). We report here that microbialite from the Bagno dell'Acqua Lake acts as an efficient catalyst for prebiotic processes, starting from a ternary mixture of well-recognized chemical precursors, including ammonium formate, diaminomalonitrile, and alpha-amino acids. Under thermal conditions, significant amounts of building blocks of both RNA and PNA were obtained. Furthermore, samples of the water from the Bagno dell'Acqua Lake have been found to promote the polymerization of the H-form of 3',5'-cyclic GMP, resulting in the generation of RNA oligomers of up to 15 units in length.

摘要

对火星等行星的持续探索正在产生大量数据,以界定地球以外的宜居环境。火星早期历史中推断存在中性至碱性的含水流,这表明该行星上存在许多潜在的宜居环境。为了评估它们是否适合引发火星上的生命起源,正在对具有相似化学和物理性质的地球类似物进行探索和表征。最近,在位于意大利西西里岛潘泰莱里亚岛的巴尼奥德尔阿夸湖发现了一个新的火星类似物地点。我们在此报告,来自巴尼奥德尔阿夸湖的微生物岩可作为益生元过程的有效催化剂,起始原料为甲酸铵、二氨基丙二腈和α-氨基酸等公认化学前体的三元混合物。在热条件下,获得了大量的RNA和PNA构建模块。此外,已发现来自巴尼奥德尔阿夸湖的水样可促进3',5'-环鸟苷酸H型的聚合,从而产生长度达15个单元的RNA寡聚物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d75/12295259/5650b459b001/ijms-26-06952-g001.jpg

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