Vladilo Giovanni
INAF-Osservatorio Astronomico di Trieste, Via G.B. Tiepolo 11, 34143 Trieste, Italy.
Life (Basel). 2022 Oct 17;12(10):1620. doi: 10.3390/life12101620.
The abundance and biological role of potassium suggest that its unstable nuclide was present in all stages of terrestrial biogenesis. With its enhanced isotopic ratio in the Archean eon, 40K may have contributed to the special, perhaps unique, biogenetic conditions that were present in the primitive Earth. Compared to the U and Th radionuclides, 40K has a less disruptive radiochemical impact, which may drive a moderate, but persistent evolution of the structural and functional properties of proto-biological molecules. In the main β-decay route of 40K, the radiation dose generated by an Archean solution with potassium ions can be larger than the present background radiation on Earth by one to two orders of magnitude. Estimates of the rates of organic molecules indirectly affected by β decays are provided for two schematic models of the propagation of secondary events in the solvent of prebiotic solutions. The left-handed β- particles emitted by 40K are the best candidates to trigger an enantiomeric excess of L-type amino acids via weak nuclear forces in the primitive Earth. The concentration-dependent radiation dose of 40K fits well in dry-wet scenarios of life's origins and should be considered in realistic simulations of prebiotic chemical pathways.
钾的丰度及其生物学作用表明,其不稳定核素存在于地球生物发生的各个阶段。在太古宙时期,由于其同位素比率增加,40K可能促成了原始地球上存在的特殊(或许是独特)的生物发生条件。与铀和钍放射性核素相比,40K的放射化学影响较小,这可能推动了原始生物分子结构和功能特性的适度但持续的进化。在40K的主要β衰变途径中,含有钾离子的太古宙溶液产生的辐射剂量可能比目前地球的背景辐射大1至2个数量级。针对益生元溶液溶剂中二次事件传播的两种示意模型,给出了受β衰变间接影响的有机分子速率估计值。40K发射的左旋β粒子是通过原始地球上的弱核力引发L型氨基酸对映体过量的最佳候选者。40K的浓度依赖性辐射剂量与生命起源的干湿情景非常契合,在益生元化学途径的实际模拟中应予以考虑。