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酶活性与适合度:溶液中的进化。

Enzyme activity and fitness: Evolution in solution.

机构信息

Daniel Dykhuizen is at the Dept of Ecology and Evolution, State University of New York at Stony Brook, Stony Brook, NY 11794, USA.

出版信息

Trends Ecol Evol. 1990 Aug;5(8):257-62. doi: 10.1016/0169-5347(90)90067-N.

Abstract

Natural selection should be studied as an end in itself, and this requires rigorous experimental tests of theoretical models linking molecular phenotypes to differences in fitness. We describe the experimental verification of one such model and thereby demonstrate that the causal relations between genotype and fitness need not be as hopelessly complex as many have assumed. The model uses metabolic control theory to link enzyme activity to metabolic flux and then assumes that fitness is proportional to flux. The model was tested using the pathway for the uptake and metabolism of growth-rate-limiting concentrations of lactose in E. coli inhabiting chemostats. Many of the properties expected of natural selection are manifest in this system.

摘要

自然选择应该被作为一个目的本身来进行研究,这就需要对将分子表型与适应度差异联系起来的理论模型进行严格的实验检验。我们描述了对这样一个模型的实验验证,从而证明了基因型与适应度之间的因果关系并不像许多人假设的那样复杂得不可救药。该模型利用代谢控制理论将酶活性与代谢通量联系起来,然后假设适应度与通量成正比。该模型使用在恒化器中生长的大肠杆菌中摄取和代谢生长速率限制浓度乳糖的途径进行了测试。许多被认为是自然选择的特性在这个系统中表现得很明显。

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