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生命周期相关基因在褐藻中的快速更替。

Rapid turnover of life-cycle-related genes in the brown algae.

机构信息

Sorbonne Université, UPMC Univ Paris 06, CNRS, Algal Genetics Group, Integrative Biology of Marine Models, Station Biologique de Roscoff, CS 90074, F-29688, Roscoff, France.

Department of Ecology and Evolution, University of Lausanne, 1015, Lausanne, Switzerland.

出版信息

Genome Biol. 2019 Feb 14;20(1):35. doi: 10.1186/s13059-019-1630-6.

Abstract

BACKGROUND

Sexual life cycles in eukaryotes involve a cyclic alternation between haploid and diploid phases. While most animals possess a diploid life cycle, many plants and algae alternate between multicellular haploid (gametophyte) and diploid (sporophyte) generations. In many algae, gametophytes and sporophytes are independent and free-living and may present dramatic phenotypic differences. The same shared genome can therefore be subject to different, even conflicting, selection pressures during each of the life cycle generations. Here, we analyze the nature and extent of genome-wide, generation-biased gene expression in four species of brown algae with contrasting levels of dimorphism between life cycle generations.

RESULTS

We show that the proportion of the transcriptome that is generation-specific is broadly associated with the level of phenotypic dimorphism between the life cycle stages. Importantly, our data reveals a remarkably high turnover rate for life-cycle-related gene sets across the brown algae and highlights the importance not only of co-option of regulatory programs from one generation to the other but also of a role for newly emerged, lineage-specific gene expression patterns in the evolution of the gametophyte and sporophyte developmental programs in this major eukaryotic group. Moreover, we show that generation-biased genes display distinct evolutionary modes, with gametophyte-biased genes evolving rapidly at the coding sequence level whereas sporophyte-biased genes tend to exhibit changes in their patterns of expression.

CONCLUSION

Our analysis uncovers the characteristics, expression patterns, and evolution of generation-biased genes and underlines the selective forces that shape this previously underappreciated source of phenotypic diversity.

摘要

背景

真核生物的有性生命周期涉及到单倍体和二倍体阶段的周期性交替。虽然大多数动物具有二倍体生命周期,但许多植物和藻类在多细胞单倍体(配子体)和二倍体(孢子体)世代之间交替。在许多藻类中,配子体和孢子体是独立的、自由生活的,可能表现出明显的表型差异。因此,同一共享基因组在每个生命周期世代中都可能受到不同的、甚至相互矛盾的选择压力。在这里,我们分析了具有不同生命周期世代之间二态性水平的四种褐藻中,全基因组、世代偏向基因表达的性质和程度。

结果

我们表明,转录组中与生命周期阶段之间表型二态性水平广泛相关的比例是世代特异性的。重要的是,我们的数据揭示了跨褐藻中与生命周期相关的基因集的周转率非常高,并强调了不仅从一代到另一代的调控程序的共同作用,而且还强调了新兴的、谱系特异性的基因表达模式在配子体和孢子体发育程序的进化中的重要性在这个主要的真核生物群体中。此外,我们表明,世代偏向基因表现出不同的进化模式,配子体偏向基因在编码序列水平上快速进化,而孢子体偏向基因倾向于表现出表达模式的变化。

结论

我们的分析揭示了世代偏向基因的特征、表达模式和进化,并强调了塑造这种以前未被充分认识的表型多样性来源的选择压力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ff9/6374913/a99139d17656/13059_2019_1630_Fig1_HTML.jpg

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