Yugra State University, The Institute of Oil and Gas, School of Ecology, Khanty-Mansiysk, Russian Federation.
Network of Researchers on the Chemical Evolution of Life, Leeds, UK.
Astrobiology. 2021 Oct;21(10):1186-1205. doi: 10.1089/ast.2020.2296. Epub 2021 Jul 13.
The search for life beyond Earth has focused on Mars and the icy moons Europa and Enceladus, all of which are considered a safe haven for life due to evidence of current or past water. The surface of Venus, on the other hand, has extreme conditions that make it a nonhabitable environment to life as we know it. This is in contrast, however, to its cloud layer, which, while still an extreme environment, may prove to be a safe haven for some extreme forms of life similar to extremophiles on Earth. We consider the venusian clouds a habitable environment based on the presence of (1) a solvent for biochemical reactions, (2) appropriate physicochemical conditions, (3) available energy, and (4) biologically relevant elements. The diversity of extreme microbial ecosystems on Earth has allowed us to identify terrestrial chemolithoautotrophic microorganisms that may be analogs to putative venusian organisms. Here, we hypothesize and describe biological processes that may be performed by such organisms in the venusian clouds. To detect putative venusian organisms, we describe potential biosignature detection methods, which include metal-microbial interactions and optical methods. Finally, we describe currently available technology that can potentially be used for modeling and simulation experiments.
对地外生命的探索主要集中在火星以及冰冷的木卫二和土卫二上,这些地方都因为有当前或过去水存在的证据而被认为是生命的安全港。另一方面,金星的表面条件极端,使其成为我们所知的生命无法生存的环境。然而,与金星表面形成鲜明对比的是它的云层,尽管仍然处于极端环境中,但它可能为一些类似于地球上极端微生物的极端生命形式提供一个安全港。我们认为金星云层是一个可居住的环境,这是基于以下几个方面的考虑:(1) 生化反应的溶剂,(2) 适当的物理化学条件,(3) 可用能源,以及 (4) 生物相关元素。地球上极端微生物生态系统的多样性使我们能够识别出可能与金星生物相似的地球化学自养微生物。在这里,我们假设并描述了这些生物可能在金星云层中进行的生物过程。为了探测可能的金星生物,我们描述了潜在的生物特征检测方法,包括金属-微生物相互作用和光学方法。最后,我们描述了目前可用于建模和模拟实验的现有技术。