陆地二甲基硫化物:天体生物学的模板。

IF 1.9
Bioinformation Pub Date : 2025-06-30 eCollection Date: 2025-01-01 DOI:10.6026/973206300211668
Paul Shapshak, Jean Schneider, Beata Casanas, Charurut Somboonwit, John T Sinnott
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引用次数: 0

摘要

二甲基硫醚(DMS)是二甲基磺酰丙酸酯(DMSP)的挥发性分解产物。DMS是由海洋浮游植物合成的,在地球的硫循环中起着核心作用,并且在天体生物学中越来越重要。DMS的形成是由复杂的微生物、病毒、酶和光化学过程介导的,这些过程反映了海洋生态系统内的动态相互作用。负责DMSP降解的细菌途径具有遗传多样性和生态广泛性,而浮游植物的病毒裂解有助于硫化合物的释放和再循环。一旦释放到大气中,DMS有助于硫酸盐气溶胶的形成,影响云凝结和行星反照率——这是海洋生物和气候之间生物地球化学反馈的一个例子。本报告综述了陆地DMS的生产,包括微生物、病毒和非生物的贡献。鉴于其波动性、可探测性和潜在的生物起源,DMS被认为是寻找系外行星生命的一个有前途的生物特征候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Terrestrial dimethyl sulfide: Template for astrobiology.

Dimethyl sulfide (DMS) is a volatile breakdown product of dimethyl-sulfonio-propionate (DMSP). DMS is synthesized by marine phytoplankton, plays a central role in Earth's sulfur cycle and has growing relevance in astrobiology. DMS formation is mediated by complex microbial, viral, enzymatic and photochemical processes that reflect dynamic interactions within marine ecosystems. Bacterial pathways responsible for DMSP degradation are genetically diverse and ecologically widespread, while viral lysis of phytoplankton contributes to release and recycling of sulfur compounds. Once released into the atmosphere, DMS contributes to sulfate aerosol formation, influencing cloud condensation and planetary albedo - an example of biogeochemical feedback between ocean life and climate. This report reviews terrestrial DMS production, including microbial, viral and abiotic contributions. Given its volatility, detectability and potential biological origin, DMS is considered a promising biosignature candidate in the search for life on exoplanets.

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来源期刊
Bioinformation
Bioinformation MATHEMATICAL & COMPUTATIONAL BIOLOGY-
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