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Is Extraterrestrial Life Suppressed on Subsurface Ocean Worlds due to the Paucity of Bioessential Elements?

机译:由于缺乏生物必需元素,地下海洋世界的外星生命受到抑制吗?

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摘要

The availability of bioessential elements for “life as we know it”, such as phosphorus (P) or possibly molybdenum (Mo), is expected to restrict the biological productivity of extraterrestrial biospheres. Here, we consider worlds with subsurface oceans and model the dissolved concentrations of bioessential elements. In particular, we focus on the sources and sinks of P (available as phosphates) and find that the average steady-state oceanic concentration of P is likely to be lower than the corresponding value on Earth by a few orders of magnitude, provided that the oceans are alkaline and possess hydrothermal activity. While our result does not eliminate the prospects of life on subsurface worlds like Enceladus, it suggests that the putative biospheres might be oligotrophic and perhaps harder to detect. Along these lines, potential biospheres in the clouds of Venus may end up being limited by the availability of Mo. We also point out the possibility that stellar spectroscopy can be used to deduce potential constraints on the availability of bioessential elements on planets and moons.
机译:有望获得“我们所知道的生命”的生物必需元素,例如磷(P)或可能的钼(Mo),将限制地外生物圈的生物生产力。在这里,我们考虑具有地下海洋的世界,并对生物必需元素的溶解浓度进行建模。特别是,我们着眼于P的来源和汇(以磷酸盐的形式),发现P的平均稳态海洋浓度很可能比地球上相应的值低几个数量级,但前提是海洋是碱性的,具有热液活动。尽管我们的结果并未消除像土卫二这样的地下世界的生命前景,但它表明假定的生物圈可能是贫营养的,也许更难发现。沿着这些思路,金星云中潜在的生物圈可能最终会受到Mo可用性的限制。我们还指出,恒星光谱学可用于推断对行星和卫星上生物必需元素的可用性的潜在限制。

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