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Genes without prominence: a reappraisal of the foundations of biology

机译:没有突出的基因:对生物学基础的重新评估

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摘要

The sequencing of the human genome raises two intriguing questions: why has the prediction of the inheritance of common diseases from the presence of abnormal alleles proved so unrewarding in most cases and how can some 25 000 genes generate such a rich complexity evident in the human phenotype? It is proposed that light can be shed on these questions by viewing evolution and organisms as natural processes contingent on the second law of thermodynamics, equivalent to the principle of least action in its original form. Consequently, natural selection acts on variation in any mechanism that consumes energy from the environment rather than on genetic variation. According to this tenet cellular phenotype, represented by a minimum free energy attractor state comprising active gene products, has a causal role in giving rise, by a self-similar process of cell-to-cell interaction, to morphology and functionality in organisms, which, in turn, by a self-similar process entailing Darwin's proportional numbers are influencing their ecosystems. Thus, genes are merely a means of specifying polypeptides: those that serve free energy consumption in a given surroundings contribute to cellular phenotype as determined by the phenotype. In such natural processes, everything depends on everything else, and phenotypes are emergent properties of their systems.
机译:人类基因组的测序提出了两个有趣的问题:为什么在大多数情况下,对由异常等位基因的存在对常见疾病遗传的预测被证明如此无益,以及约25,000个基因如何产生如此丰富的人类表型复杂性?有人提出可以通过将进化和有机体视为自然过程取决于热力学第二定律来阐明这些问题,热力学第二定律等同于原始形式的最小作用原理。因此,自然选择会影响消耗环境能量的任何机制中的变异,而不是遗传变异。根据这一原则,细胞表型以包含活性基因产物的最小自由能吸引子状态表示,通过细胞间相互作用的自相似过程,具有引起生物体形态和功能的因果作用,反过来,通过自我相似的过程,达尔文的比例数字正在影响其生态系统。因此,基因仅仅是指定多肽的一种手段:在给定环境中提供自由能量消耗的那些基因有助于细胞表型的形成,如表型所决定。在这样的自然过程中,一切都取决于其他一切,而表型是其系统的新兴属性。

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