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水中的益生元反应网络

Prebiotic Reaction Networks in Water.

作者信息

Tran Quoc Phuong, Adam Zachary R, Fahrenbach Albert C

机构信息

School of Chemistry, UNSW Sydney, Sydney, NSW 2052, Australia.

Department of Planetary Sciences, University of Arizona, Tucson, AZ 85721, USA.

出版信息

Life (Basel). 2020 Dec 16;10(12):352. doi: 10.3390/life10120352.

Abstract

A prevailing strategy in origins of life studies is to explore how chemistry constrained by hypothetical prebiotic conditions could have led to molecules and system level processes proposed to be important for life's beginnings. This strategy has yielded model prebiotic reaction networks that elucidate pathways by which relevant compounds can be generated, in some cases, autocatalytically. These prebiotic reaction networks provide a rich platform for further understanding and development of emergent "life-like" behaviours. In this review, recent advances in experimental and analytical procedures associated with classical prebiotic reaction networks, like formose and Miller-Urey, as well as more recent ones are highlighted. Instead of polymeric networks, i.e., those based on nucleic acids or peptides, the focus is on small molecules. The future of prebiotic chemistry lies in better understanding the genuine complexity that can result from reaction networks and the construction of a centralised database of reactions useful for predicting potential network evolution is emphasised.

摘要

生命起源研究中的一个主流策略是探索在假设的益生元前条件下受到限制的化学过程如何导致那些被认为对生命起源至关重要的分子和系统层面的过程。这一策略已经产生了模型益生元前反应网络,这些网络阐明了相关化合物能够产生的途径,在某些情况下是通过自催化作用。这些益生元前反应网络为进一步理解和发展新兴的“类生命”行为提供了一个丰富的平台。在这篇综述中,重点介绍了与经典益生元前反应网络(如甲醛聚糖和米勒-尤里实验)以及更新的反应网络相关的实验和分析程序的最新进展。这里关注的不是聚合物网络,即基于核酸或肽的网络,而是小分子。益生元前化学的未来在于更好地理解反应网络可能产生的真正复杂性,并强调构建一个有助于预测潜在网络演化的集中式反应数据库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9cf/7765580/74d51e3971f5/life-10-00352-g001.jpg

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