紫荆T2T基因组的单倍型解析揭示了紫荆花杂种优势的遗传基础。

IF 11.8 2区 生物学 Q1 MULTIDISCIPLINARY SCIENCES
Weixue Mu, Joshua Casey Darian, Wing-Kin Sung, Xing Guo, Tuo Yang, Mandy Wai Man Tang, Ziqiang Chen, Steve Kwan Hok Tong, Irene Wing Shan Chik, Robert L Davidson, Scott C Edmunds, Tong Wei, Stephen Kwok-Wing Tsui
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引用次数: 0

摘要

背景:香港兰树紫荆花(Bauhinia × blakeana Dunn)长期以来一直被认为是一种不育的种间杂交植物,与其可能的亲本种紫荆花(Bauhinia purpurea L.)和紫荆花(Bauhinia variegata L.)相比,表现出花的杂种优势。结果:我们为亲本物种生成了染色体水平的组装,并应用三联体方法构建了单倍型解决的黑螺旋藻端粒到端粒(T2T)基因组。比较叶绿体基因组分析证实紫芽孢杆菌为亲本。花组织的转录组分析突出显示了白桦与其母本更接近的相似性。差异基因表达分析显示,3种植物的表达模式不同,特别是在生物合成和代谢过程中。为了研究白叶白叶白花杂种优势的遗传基础,我们重点研究了白叶白花色素生物合成相关途径的基因表达模式。观察到高亲本显性和过显性表达模式,特别是在类胡萝卜素生物合成相关基因中。此外,等位基因特异性表达分析揭示了母本和父本等位基因在形成白螺旋藻基因表达模式中的平衡贡献。结论:本研究为杂种紫荆的基因组结构提供了有价值的见解,为未来紫荆属功能遗传学研究建立了全面的基因组和转录组学资源。该研究还可作为利用T2T单倍型解析基因组探索杂交物种特征的模型,为理解高杂合性复杂基因组中的遗传相互作用和进化机制提供了新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The haplotype-resolved T2T genome for Bauhinia × blakeana sheds light on the genetic basis of flower heterosis.

Background: The Hong Kong orchid tree Bauhinia × blakeana Dunn has long been proposed to be a sterile interspecific hybrid exhibiting flower heterosis when compared to its likely parental species, Bauhinia purpurea L. and Bauhinia variegata L. Here, we report comparative genomic and transcriptomic analyses of the 3 Bauhinia species.

Findings: We generated chromosome-level assemblies for the parental species and applied a trio-binning approach to construct a haplotype-resolved telomere-to-telomere (T2T) genome for B. blakeana. Comparative chloroplast genome analysis confirmed B. purpurea as the maternal parent. Transcriptome profiling of flower tissues highlighted a closer resemblance of B. blakeana to its maternal parent. Differential gene expression analyses revealed distinct expression patterns among the 3 species, particularly in biosynthetic and metabolic processes. To investigate the genetic basis of flower heterosis observed in B. blakeana, we focused on gene expression patterns within pigment biosynthesis-related pathways. High-parent dominance and overdominance expression patterns were observed, particularly in genes associated with carotenoid biosynthesis. Additionally, allele-specific expression analysis revealed a balanced contribution of maternal and paternal alleles in shaping the gene expression patterns in B. blakeana.

Conclusions: Our study offers valuable insights into the genome architecture of hybrid B. blakeana, establishing a comprehensive genomic and transcriptomic resource for future functional genetics research within the Bauhinia genus. It also serves as a model for exploring the characteristics of hybrid species using T2T haplotype-resolved genomes, providing a novel approach to understanding genetic interactions and evolutionary mechanisms in complex genomes with high heterozygosity.

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来源期刊
GigaScience
GigaScience MULTIDISCIPLINARY SCIENCES-
CiteScore
15.50
自引率
1.10%
发文量
119
审稿时长
1 weeks
期刊介绍: GigaScience seeks to transform data dissemination and utilization in the life and biomedical sciences. As an online open-access open-data journal, it specializes in publishing "big-data" studies encompassing various fields. Its scope includes not only "omic" type data and the fields of high-throughput biology currently serviced by large public repositories, but also the growing range of more difficult-to-access data, such as imaging, neuroscience, ecology, cohort data, systems biology and other new types of large-scale shareable data.
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