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Role of Stable Isotopes in Life—Testing Isotopic Resonance Hypothesis

机译:稳定同位素在生命中的作用-测试同位素共振假说

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摘要

Stable isotopes of most important biological elements, such as C, H, N and O, affect living organisms. In rapidly growing species, deuterium and to a lesser extent other heavy isotopes reduce the growth rate. At least for deuterium it is known that its depletion also negatively impacts the speed of biological processes. As a rule, living organisms “resist” changes in their isotopic environment, preferring natural isotopic abundances. This preference could be due to evolutionary optimization; an additional effect could be due to the presence of the “isotopic resonance”. The isotopic resonance phenomenon has been linked to the choice of earliest amino acids, and thus affected the evolution of genetic code. To test the isotopic resonance hypothesis, literature data were analyzed against quantitative and qualitative predictions of the hypothesis. Four studies provided five independent datasets, each in very good quantitative agreement with the predictions. Thus, the isotopic resonance hypothesis is no longer simply plausible; it can now be deemed likely. Additional testing is needed, however, before full acceptance of this hypothesis.
机译:最重要的生物元素(例如C,H,N和O)的稳定同位素会影响生物。在快速生长的物种中,氘和少量其他重同位素会降低生长速率。至少对于氘来说,众所周知,其消耗也会对生物过程的速度产生负面影响。通常,活生物体“抵抗”其同位素环境的变化,偏爱天然同位素丰度。这种偏好可能是由于进化的优化。另外的影响可能是由于“同位素共振”的存在。同位素共振现象与最早氨基酸的选择有关,因此影响了遗传密码的进化。为了测试同位素共振假说,针对假说的定量和定性预测分析了文献数据。四项研究提供了五个独立的数据集,每个数据集都与预测非常吻合。因此,同位素共振假说不再简单合理。现在可以认为它是可能的。但是,在完全接受此假设之前,需要进行其他测试。

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