Gull Maheen, Feng Tian, Bracegirdle Joe, Abbott-Lyon Heather, Pasek Matthew A
School of Geosciences, University of South Florida, 4202 E Fowler Ave., NES 204, Tampa, FL, 33620, USA.
Department of Chemistry, University of South Florida, Tampa, FL, 33620-5250, USA.
J Mol Evol. 2023 Feb;91(1):60-75. doi: 10.1007/s00239-022-10086-w. Epub 2022 Dec 28.
Reduced oxidation state phosphorus compounds may have been brought to the early Earth via meteorites or could have formed through geologic processes. These compounds could have played a role in the origin of biological phosphorus (P, hereafter) compounds. Reduced oxidation state P compounds are generally more soluble in water and are more reactive than orthophosphate and its associated minerals. However, to date no facile routes to generate C-O-P type compounds using reduced oxidation state P compounds have been reported under prebiotic conditions. In this study, we investigate the reactions between reduced oxidation state P compounds-and their oxidized products generated via Fenton reactions-with the nucleosides uridine and adenosine. The inorganic P compounds generated via Fenton chemistry readily react with nucleosides to produce organophosphites and organophosphates, including phosphate diesters via one-pot syntheses. The reactions were facilitated by NH ions and urea as a condensation agent. We also present the results of the plausible stability of the organic compounds such as adenosine in an environment containing an abundance of HO Such results have direct implications on finding organic compounds in Martian environments and other rocky planets (including early Earth) that were richer in HO than O. Finally, we also suggest a route for the sink of these inorganic P compounds, as a part of a plausible natural P cycle and show the possible formation of secondary phosphate minerals such as struvite and brushite on the early Earth.
氧化态降低的磷化合物可能是通过陨石被带到早期地球的,或者也可能是通过地质过程形成的。这些化合物可能在生物磷(以下简称P)化合物的起源中发挥了作用。氧化态降低的P化合物通常在水中的溶解度更高,并且比正磷酸盐及其相关矿物更具反应活性。然而,迄今为止,在益生元条件下,尚未有报道称存在使用氧化态降低的P化合物生成C-O-P型化合物的简便途径。在本研究中,我们研究了氧化态降低的P化合物及其通过芬顿反应生成的氧化产物与核苷尿苷和腺苷之间的反应。通过芬顿化学产生的无机P化合物很容易与核苷反应,通过一锅合成法生成有机亚磷酸盐和有机磷酸盐,包括磷酸二酯。NH离子和作为缩合剂的尿素促进了这些反应。我们还展示了在富含HO的环境中,如腺苷等有机化合物可能的稳定性结果。这些结果对于在火星环境和其他岩石行星(包括早期地球)中寻找比O更富含HO的有机化合物具有直接意义。最后,作为一个合理的自然磷循环的一部分,我们还提出了这些无机P化合物的汇的途径,并展示了早期地球上可能形成的次生磷酸盐矿物,如鸟粪石和透钙磷石。