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生物同手性能否由相变产生?

Can biological homochirality result from a phase transition?

作者信息

Figureau A, Duval E, Boukenter A

机构信息

Institut de Physique Nucléaire de Lyon, Villeurbanne, France.

出版信息

Orig Life Evol Biosph. 1995 Jun;25(1-3):211-7. doi: 10.1007/BF01581584.

Abstract

The problem of chiral purity in living organisms is still one of the prominent difficulties in the study of the origins of life. In particular the parity non-conservation known to occur in weak interactions could not be related to this lack of symmetry: these physical forces, though universal, are very weak and up to now no amplification process had been proposed. In 1991, A. Salam remarked that, due to the attractive character of the parity violating force in electro-weak interactions, a phase transition at low temperature should exist, leading eventually to enantiomeric purity. We undertook then a series of experimental tests, looking for a sizeable change in the optical activity of cystine molecules. We found no evidence for the phase transition down to 0.01 K. The interpretation of these negative results will be discussed, and future experiments proposed.

摘要

生物体内手性纯度的问题仍然是生命起源研究中的突出难题之一。特别是已知在弱相互作用中发生的宇称不守恒,与这种对称性的缺乏并无关联:这些物理力虽然具有普遍性,但非常微弱,且至今尚未提出任何放大过程。1991年,A. 萨拉姆指出,由于电弱相互作用中宇称破缺力的吸引特性,低温下应存在相变,最终导致对映体纯度。于是我们进行了一系列实验测试,寻找胱氨酸分子旋光性的显著变化。我们未发现温度低至0.01 K时发生相变的证据。将讨论这些负面结果的解释,并提出未来的实验。

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