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首页> 外文期刊>Molecular biology and evolution >Distinct Expression and Methylation Patterns for Genes with Different Fates following a Single Whole-Genome Duplication in Flowering Plants
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Distinct Expression and Methylation Patterns for Genes with Different Fates following a Single Whole-Genome Duplication in Flowering Plants

机译:在开花植物中单一全基因组重复后不同粘合的基因的不同表达和甲基化模式

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摘要

For most sequenced flowering plants, multiple whole-genome duplications (WGDs) are found. Duplicated genes following WGD often have different fates that can quickly disappear again, be retained for long(er) periods, or subsequently undergo small-scale duplications. However, how different expression, epigenetic regulation, and functional constraints are associated with these different gene fates following a WGD still requires further investigation due to successive WGDs in angiosperms complicating the gene trajectories. In this study, we investigate lotus (Nelumbo nucifera), an angiosperm with a single WGD during the K-pg boundary. Based on improved intraspecific-synteny identification by a chromosome-level assembly, transcriptome, and bisulfite sequencing, we explore not only the fundamental distinctions in genomic features, expression, and methylation patterns of genes with different fates after a WGD but also the factors that shape post-WGD expression divergence and expression bias between duplicates. We found that after a WGD genes that returned to single copies show the highest levels and breadth of expression, gene body methylation, and intron numbers, whereas the long-retained duplicates exhibit the highest degrees of protein-protein interactions and protein lengths and the lowest methylation in gene flanking regions. For those long-retained duplicate pairs, the degree of expression divergence correlates with their sequence divergence, degree in protein-protein interactions, and expression level, whereas their biases in expression level reflecting subgenome dominance are associated with the bias of subgenome fractionation. Overall, our study on the paleopolyploid nature of lotus highlights the impact of different functional constraints on gene fate and duplicate divergence following a single WGD in plant.
机译:对于大多数测序的开花植物,发现多种全基因组重复(WGDS)。 WGD之后的重复基因通常具有不同的释放,可以再次迅速消失,保留长(ER)时段,或随后经历小规模的重复。然而,在WGD后,WGD在WGD之后的这些不同基因命令与这些不同的基因命令相关的不同的表达,表述调节和功能约束是如何进一步调查的,由于连续的WGDS在缓解基因轨迹复杂化。在这项研究中,我们在K-PG边界期间调查莲花(Nelumbo Nucifera),具有单个WGD的Angiosperm。基于染色体水平组装,转录组和亚硫酸氢盐测序的改善的intrachecific-Synteny鉴定,我们不仅探讨了WGD后基因组特征,表达和基因甲基化模式的基因组特征,表达和甲基化模式的基本区别,但也是一种形状的因素WGD后表达发散和表达偏倚在重复组合之间。我们发现在返回单个拷贝的WGD基因后,呈现出表达,基因体甲基化和内含子数的最高水平和广度,而长期保留的重复态表现出最高程度的蛋白质 - 蛋白质相互作用和蛋白质长度,最低基因侧翼区域中的甲基化。对于那些长期的重复对,表达程度与其序列分歧,蛋白质 - 蛋白质相互作用的程度和表达水平相关,而反映亚基组优势的表达水平的偏差与亚基组分馏的偏差有关。总体而言,我们对莲花的古代多倍性质的研究突出了不同功能约束在植物中单个WGD后基因命运和重复分歧的影响。

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