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对四个参考基因组的比较分析揭示了黄猴面花(Mimulus guttatus)复合体中异常的多样性和较弱的连锁选择。

Comparative Analyses of Four Reference Genomes Reveal Exceptional Diversity and Weak Linked Selection in the Yellow Monkeyflower (Mimulus guttatus) Complex.

作者信息

Lovell John T, Walstead Rachel, Lawrence Amelia, Stark-Dykema Evan, Farnitano Matthew C, Harder Avril, Brůna Tomáš, Barry Kerrie, Goodstein David, Jenkins Jerry, Lipzen Anna, Boston LoriBeth, Webber Jenell, Chovatia Mansi, Eichenberger Joanne, Talag Jayson, Grimwood Jane, Schmutz Jeremy, Kelly John K, Sweigart Andrea L, Fishman Lila, Willis John H

机构信息

Genome Sequencing Center, HudsonAlpha Institute for Biotechnology, Huntsville, Alabama, USA.

US Department of Energy Joint Genome Institute, Berkeley, California, USA.

出版信息

Mol Ecol Resour. 2025 Jul 22:e70012. doi: 10.1111/1755-0998.70012.

Abstract

Yellow monkeyflowers (Mimulus guttatus complex, Phrymaceae) are a powerful system for studying ecological adaptation, reproductive variation, and genome evolution. To initiate pan-genomics in this group, we present four chromosome-scale assemblies and annotations of accessions spanning a broad evolutionary spectrum: two from a single M. guttatus population, one from the closely related selfing species M. nasutus, and one from a more divergent species M. tilingii. All assemblies are highly complete and resolve centromeric and repetitive regions. Comparative analyses reveal such extensive structural variation in repeat-rich, gene-poor regions that large portions of the genome are unalignable across accessions. As a result, this Mimulus pan-genome is primarily informative in genic regions, underscoring limitations of resequencing approaches in such polymorphic taxa. We document gene presence-absence, investigate the recombination landscape using high-resolution linkage data, and quantify nucleotide diversity. Surprisingly, pairwise differences at fourfold synonymous sites are exceptionally high-even in regions of very low recombination-reaching ~3.2% within a single M. guttatus population, ~7% within the interfertile M. guttatus species complex (approximately equal to SNP divergence between great apes and Old World monkeys), and ~7.4% between that complex and the reproductively isolated M. tilingii. Genome-wide patterns of nucleotide variation show little evidence of linked selection, and instead suggest that the concentration of genes (and likely selected sites) in high-recombination regions may buffer diversity loss. These assemblies, annotations, and comparative analyses provide a robust genomic foundation for Mimulus research and offer new insights into the interplay of recombination, structural variation, and molecular evolution in highly diverse plant genomes.

摘要

黄猴面花(沟酸浆属复合体,透骨草科)是研究生态适应、生殖变异和基因组进化的有力系统。为启动该类群的泛基因组学研究,我们展示了四个染色体水平的组装序列及注释,这些序列来自跨越广泛进化谱系的样本:两个来自沟酸浆的单个种群,一个来自近缘的自交物种鼻花沟酸浆,另一个来自亲缘关系较远的物种蒂氏沟酸浆。所有组装序列都高度完整,并解析了着丝粒和重复区域。比较分析揭示了富含重复序列、基因稀少区域存在如此广泛的结构变异,以至于不同样本间基因组的大部分区域无法比对。因此,这个沟酸浆属泛基因组在基因区域的信息最为丰富,凸显了重测序方法在这类多态分类群中的局限性。我们记录了基因的存在与否,利用高分辨率连锁数据研究重组图谱,并量化核苷酸多样性。令人惊讶的是,四倍体同义位点的成对差异异常高——即使在重组率极低的区域也是如此,在单个沟酸浆种群内达到约3.2%,在可育的沟酸浆物种复合体内达到约7%(大致相当于大猩猩和旧世界猴之间的单核苷酸多态性差异),在该复合体与生殖隔离的蒂氏沟酸浆之间达到约7.4%。全基因组核苷酸变异模式几乎没有连锁选择的证据,相反表明高重组区域中基因(以及可能的选择位点)的集中可能缓冲多样性的丧失。这些组装序列、注释和比较分析为沟酸浆属研究提供了坚实的基因组基础,并为高度多样化植物基因组中重组、结构变异和分子进化的相互作用提供了新的见解。

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