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The limits of subfunctionalization

机译:子功能化的局限性

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Background The duplication-degeneration-complementation (DDC) model has been proposed as an explanation for the unexpectedly high retention of duplicate genes. The hypothesis proposes that, following gene duplication, the two gene copies degenerate to perform complementary functions that jointly match that of the single ancestral gene, a process also known as subfunctionalization. We distinguish between subfunctionalization at the regulatory level and at the product level (e.g within temporal or spatial expression domains). Results In contrast to what is expected under the DDC model, we use in silico modeling to show that regulatory subfunctionalization is expected to peak and then decrease significantly. At the same time, neofunctionalization (recruitment of novel interactions) increases monotonically, eventually affecting the regulatory elements of the majority of genes. Furthermore, since this process occurs under conditions of stabilizing selection, there is no need to invoke positive selection. At the product level, the frequency of subfunctionalization is no higher than would be expected by chance, a finding that was corroborated using yeast microarray time-course data. We also find that product subfunctionalization is not necessarily caused by regulatory subfunctionalization. Conclusion Our results suggest a more complex picture of post-duplication evolution in which subfunctionalization plays only a partial role in conjunction with redundancy and neofunctionalization. We argue that this behavior is a consequence of the high evolutionary plasticity in gene networks.
机译:背景技术已经提出了复制-变性-互补(DDC)模型来解释复制基因的意外高保留率。该假设提出,在基因复制后,两个基因拷贝会退化以执行互补功能,从而共同匹配单个祖先基因的互补功能,这一过程也称为亚功能化。我们在监管级别和产品级别(例如在时间或空间表达域内)区分亚功能化。结果与DDC模型下的预期结果相反,我们使用计算机模拟来表明预期的监管功能不足会达到峰值,然后显着下降。同时,新功能化(新相互作用的募集)单调增加,最终影响大多数基因的调控元件。此外,由于此过程是在稳定选择的条件下发生的,因此无需调用肯定选择。在产品水平上,亚功能化的频率不高于偶然的预期,这一发现已通过酵母微阵列时程数据得到证实。我们还发现,产品功能不足不一定由监管功能不足引起。结论我们的结果表明了复制后演化的更为复杂的图景,其中亚功能仅与冗余和新功能一起发挥部分作用。我们认为,这种行为是基因网络中高度进化可塑性的结果。

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