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通过目标富集测序分析,解析大麦属物种基因树分歧的来源。

Disentangling sources of gene tree discordance for Hordeum species via target-enriched sequencing assays.

机构信息

State Key Laboratory of Crop Gene Resources and Breeding, Key Laboratory of Grain Crop Genetic Resources Evaluation and Utilization (MARA), Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China; State Key Laboratory of Crop Stress Biology for Arid Areas, College of Agronomy, Northwest AandF University, Yangling 712100, China.

State Key Laboratory of Crop Stress Biology for Arid Areas, College of Agronomy, Northwest AandF University, Yangling 712100, China.

出版信息

Mol Phylogenet Evol. 2024 Oct;199:108160. doi: 10.1016/j.ympev.2024.108160. Epub 2024 Jul 15.

Abstract

Hordeum is an economically and evolutionarily important genus within the Triticeae tribe of the family Poaceae, and contains 33 widely distributed and diverse species which cytologically represent four subgenomes (H, Xa, Xu and I). These wild species (except Hordeum spontaneum, which is the primary gene pool of barley) are secondary or tertiary gene-pool germplasms for barley and wheat improvement, and uncovering their complicated evolutionary relationships would benefit for future breeding programs. Here, we developed a complexity-reduced pipeline via capturing genome-wide distributed fragments via two novel target-enriched assays (HorCap v1.0 and BarPlex v1.0) in conjugation with high-throughput sequencing of the enrichments. Both assays were tested for genotyping 40 species from three genera (Hordeum, Triticum, and Aegilops) containing 82 samples 67 accessions. Either of both assays worked efficiently in genotyping, while integration of both assays can significantly improve the robustness and resolution of the Hordeum phylogenetic trees. Interestingly, the incomplete lineage sorting (ILS) was inferred for the first time as the major factor causing phylogenetic discordance among the four subgenomes, whereas in New World species (carrying I genome) post-speciation introgression events were revealed. Through revising the evolutionary relationships of the Hordeum species based on an ancestral state reconstruction for the diploids and parental donor inference for the polyploids, our results raised new queries about the Hordeum phylogeny. Moreover, both newly-developed assays are applicable in genotyping and phylogenetic analysis of Hordeum and other Triticeae wild species.

摘要

大麦属是禾本科小麦族雀麦属中经济和进化上重要的属,包含 33 个广泛分布且多样的种,其细胞学代表四个亚基因组(H、Xa、Xu 和 I)。这些野生种(除了大麦的主要基因库野生大麦外)是大麦和小麦改良的次生或三代基因库种质资源,揭示它们复杂的进化关系将有助于未来的育种计划。在这里,我们通过两种新的目标富集检测(HorCap v1.0 和 BarPlex v1.0)结合高通量测序富集,开发了一种简化复杂度的方法。两种检测都在包含 82 个样本 67 个品系的三个属(大麦属、小麦属和黑麦属)的 40 个种中进行了基因分型测试。两种检测都能有效地进行基因分型,而两种检测的整合可以显著提高大麦系统发育树的稳健性和分辨率。有趣的是,首次推断不完全谱系分选(ILS)是导致四个亚基因组之间系统发育分歧的主要因素,而在新世界物种(携带 I 基因组)中则揭示了物种形成后的基因渗入事件。通过对二倍体的祖先状态重建和多倍体的亲本供体推断,对大麦种的进化关系进行修正,我们的结果对大麦的系统发育提出了新的疑问。此外,这两种新开发的检测方法都适用于大麦和其他小麦族野生种的基因分型和系统发育分析。

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