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多倍体化后褐藻的进化速率增加和转录反应保守。

Increased evolutionary rates and conserved transcriptional response following allopolyploidization in brown algae.

机构信息

CCMAR-Centro de Ciências do Mar da Universidade do Algarve, Edifício 7, Gambelas, Faro, 8005-139, Portugal.

Long Marine Laboratory, University of California, Santa Cruz, California, 95064.

出版信息

Evolution. 2019 Jan;73(1):59-72. doi: 10.1111/evo.13645. Epub 2018 Nov 26.

Abstract

Genome mergers between independently evolving lineages, via allopolyploidy, can potentially lead to instantaneous sympatric speciation. However, little is known about the consequences of allopolyploidy and the resultant "genome shock" on genome evolution and expression beyond the plant and fungal branches of the Tree of Life. The aim of this study was to compare substitution rates and gene expression patterns in two allopolyploid brown algae (Phaeophyceae and Heterokonta) and their progenitors in the genus Pelvetiopsis N. L. Gardner in the north-east Pacific, and to date their relationships. We used RNA-seq data, all potential orthologues, and putative single-copy loci for phylogenomic, divergence, and gene expression analyses. The multispecies coalescent placed the origin of allopolyploids in the late Pleistocene (0.35-0.05 Ma). Homoeologues displayed increased nonsynonymous divergence compared with parental orthologues, consistent with relaxed selective constraint following allopolyploidization, including for genes with no evidence of pseudogenization or neofunctionalization. Patterns of homoeologue-orthologue expression conservation and expression level dominance were largely shared with both natural plant and fungal allopolyploids. Our results provide further support for common cross-Kingdom patterns of allopolyploid genome evolution and transcriptional responses, here in the evolutionarily distinct marine heterokont brown algae.

摘要

通过异源多倍体,独立进化的谱系之间的基因组合并可能导致瞬时同域物种形成。然而,对于异源多倍体以及由此产生的“基因组冲击”对除植物和真菌分支以外的生命之树的基因组进化和表达的影响,人们知之甚少。本研究的目的是比较北太平洋 Pelvetiopsis N. L. Gardner 属的两种异源多倍体褐藻(Phacophyceae 和 Heterokonta)及其祖先的替代率和基因表达模式,并确定它们之间的关系。我们使用了 RNA-seq 数据、所有潜在的直系同源物和推定的单拷贝基因座,进行了系统发育、分化和基因表达分析。多物种合并将异源多倍体的起源定在了更新世晚期(0.35-0.05 Ma)。同系物与亲本直系同源物相比显示出增加的非同义分歧,这与异源多倍化后选择约束的放松一致,包括没有假基因化或新功能化证据的基因。同系物-直系同源物表达保守和表达水平优势的模式与天然植物和真菌异源多倍体基本相同。我们的研究结果为跨王国异源多倍体基因组进化和转录反应的常见模式提供了进一步的支持,这在进化上不同的海洋异源多细胞褐藻中也存在。

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