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首页> 外文期刊>Journal of Experimental Botany >A Darwinian view of metabolism: molecular properties determine fitness
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A Darwinian view of metabolism: molecular properties determine fitness

机译:达尔文主义的代谢观:分子性质决定适应性

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Why do organisms make the types of chemicals that they do? Evolutionary theory tells us that individuals within populations will be subject to mutation and that some of those mutations will be enzyme variants that make new chemicals. A mutant making a novel chemical for that species will only survive in the population if the 'cost' of making the new chemical is outweighed by the benefits that result from making that molecule. The benefits, or adverse consequences, that a novel chemical X can confer to the individual organism are not a property of the simple existence of X in the cell but can be traced to one of the multiple properties that X will possess because of its molecular structure. By considering only three basic types of molecular property and by considering how selection pressures will differ for each kind of property, it is possible to account for much of the chemical diversity made by organisms. Such an evolutionary model can also explain why the properties of enzymes will differ depending on the molecular properties of the chemicals they make, and why the widely accepted terms 'primary metabolism' and 'secondary metabolism' have been so misleading and unsatisfactory.
机译:为什么有机物会产生它们所要化学物质的种类?进化论告诉我们,种群中的个体会发生突变,其中一些突变将是制造新化学物质的酶变体。为该物种制造新化学物质的突变体只有在制造新化学物质的“成本”被制造该分子所带来的好处所抵消的情况下,才能在种群中生存。新化学物质X可以赋予个体生物的益处或不利后果,不是细胞中X单纯存在的特性,而是可以追溯到X由于其分子结构而拥有的多种特性之一。通过仅考虑分子特性的三种基本类型,并考虑每种特性的选择压力如何变化,就可以解释生物体产生的许多化学多样性。这样的进化模型也可以解释为什么酶的性质会根据它们所制造化学物质的分子性质而有所不同,以及为什么广为接受的术语“初次代谢”和“二次代谢”是如此令人误解和不令人满意。

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