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Molecular Evolution in Large Steps-Codon Substitutions under Positive Selection

机译:大步长分子进化-正选择下的密码子取代

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摘要

Molecular evolution is believed to proceed in small steps. The step size can be defined by a distance reflecting physicochemical disparities between amino acid (AA) pairs that can be exchanged by single 1-bp mutations. We show that AA substitution rates are strongly and negatively correlated with this distance but only when positive selection is relatively weak. We use the McDonald and Kreitman test to separate the influences of positive and negative selection. While negative selection is indeed stronger on AA substitutions generating larger changes in chemical properties of AAs, positive selection operates by different rules. For 65 of the 75 possible pairs, positive selection is comparable in strength regardless of AA distance. However, the ten pairs under the strongest positive selection all exhibit large leaps in chemical properties. Five of the ten pairs are shared between Drosophila and Hominoids, thus hinting at a common but modest biochemical basis of adaptation across taxa. The hypothesis that adaptive changes often take large functional steps will need to be extensively tested. If validated, molecular models will need to better integrate positive and negative selection in the search for adaptive signal.
机译:分子进化被认为是一小步进行的。步长可以通过反映氨基酸 (AA) 对之间物理化学差异的距离来定义,这些氨基酸对可以通过单个 1 bp 突变进行交换。我们发现,AA替代率与该距离呈强负相关,但仅在正选择相对较弱时。我们使用 McDonald 和 Kreitman 检验来区分正选择和负选择的影响。虽然负选择确实对AA取代更强,导致AA的化学性质发生较大变化,但正选择的运作规则不同。对于 75 个可能的对中的 65 个,无论 AA 距离如何,正选择的强度都相当。然而,最强正选择下的10对在化学性质上都表现出较大的飞跃。十对中的五对在果蝇和类人猿之间共享,因此暗示了跨分类群适应的共同但适度的生化基础。适应性变化通常采取大的功能步骤的假设需要广泛测试。如果得到验证,分子模型将需要更好地整合正选择和负选择,以寻找适应性信号。

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