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Making Sense of Transcription Networks

机译:了解转录网络

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When transcription regulatory networks are compared among distantly related eukaryotes, a number of striking similarities are observed: a larger-than-expected number of genes, extensive overlapping connections, and an apparently high degree of functional redundancy. It is often assumed that the complexity of these networks represents optimized solutions, precisely sculpted by natural selection; their common features are often asserted to be adaptive. Here, we discuss support for an alternative hypothesis: the common structural features of transcription networks arise from evolutionary trajectories of "least resistance''-that is, the relative ease with which certain types of network structures are formed during their evolution.
机译:当在远距离相关的真核生物中比较转录调控网络时,观察到许多惊人的相似之处:基因数量超乎预期,广泛的重叠连接以及功能上的高度冗余。通常认为,这些网络的复杂性代表了优化的解决方案,是由自然选择精确地雕刻而成的。通常认为它们的共同特征是自适应的。在这里,我们讨论了对另一种假设的支持:转录网络的共同结构特征来自“最小抗性”的进化轨迹,即某些类型的网络结构在进化过程中相对容易形成。

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