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量化基因背景对哺乳动物重复基因的影响。

Quantifying the influence of genetic context on duplicated mammalian genes.

作者信息

Moffett Alexander S, Falcón-Cortés Andrea, Di Pierro Michele

机构信息

Center for Theoretical Biological Physics, Northeastern University, Boston, Massachusetts, 02115, USA.

Department of Physics, Northeastern University, Boston, Massachusetts, 02115, USA.

出版信息

bioRxiv. 2025 May 2:2025.04.03.647042. doi: 10.1101/2025.04.03.647042.

Abstract

Gene duplication is a fundamental part of evolutionary innovation. While single-gene duplications frequently exhibit asymmetric evolutionary rates between paralogs, the extent to which this applies to multi-gene duplications remains unclear. In this study, we investigate the role of genetic context in shaping evolutionary divergence within multi-gene duplications, leveraging microsynteny to differentiate source and target copies. Using a dataset of 193 mammalian genome assemblies and a bird outgroup, we systematically analyze patterns of sequence divergence between duplicated genes and reference orthologs. We find that target copies, those relocated to new genomic environments, exhibit elevated evolutionary rates compared to source copies in the ancestral location. This asymmetry is influenced by the distance between copies and the size of the target copy. We also demonstrate that the polarization of rate asymmetry in paralogs, the "choice" of the slowly evolving copy, is biased towards collective, block-wise polarization in multi-gene duplications. Our findings highlight the importance of genetic context in modulating post-duplication divergence, where differences in cis-regulatory elements and co-expressed gene clusters between source and target copies may be responsible. This study presents a large-scale test of asymmetric evolution in multi-gene duplications, offering new insight into how genome architecture shapes functional diversification of paralogs.

摘要

基因复制是进化创新的一个基本组成部分。虽然单基因复制的旁系同源基因之间经常表现出不对称的进化速率,但这在多大程度上适用于多基因复制仍不清楚。在这项研究中,我们利用微观共线性来区分源拷贝和目标拷贝,研究遗传背景在塑造多基因复制内进化差异中的作用。使用包含193个哺乳动物基因组组装数据和一个鸟类外群的数据集,我们系统地分析了复制基因与参考直系同源基因之间的序列差异模式。我们发现,那些迁移到新基因组环境中的目标拷贝,与处于祖先位置的源拷贝相比,表现出更高的进化速率。这种不对称性受拷贝之间的距离和目标拷贝大小的影响。我们还证明,旁系同源基因中速率不对称的极化,即选择进化缓慢的拷贝,在多基因复制中倾向于集体性、成块极化。我们的研究结果突出了遗传背景在调节复制后差异中的重要性,源拷贝和目标拷贝之间顺式调控元件和共表达基因簇的差异可能是原因所在。这项研究对多基因复制中的不对称进化进行了大规模测试,为基因组结构如何塑造旁系同源基因的功能多样化提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ebe/12051666/635fd89d050f/nihpp-2025.04.03.647042v2-f0001.jpg

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