Pangeneric genome analyses reveal the evolution and diversity of the orchid genus Dendrobium

IF 15.8 1区 生物学 Q1 PLANT SCIENCES
Yan Li, Bin Zhang, Songyao Zhang, Chui Eng Wong, Qiqi Liang, Shuai Pang, Yujin Wu, Ming Zhao, Hao Yu
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引用次数: 0

Abstract

Orchids constitute one of the most diverse families of angiosperms, yet their genome evolution and diversity remain unclear. Here we construct and analyse chromosome-scale de novo assembled genomes of 17 representative accessions spanning 12 sections in Dendrobium, one of the largest orchid genera. These accessions represent a broad spectrum of phenotypes, lineages and geographical distributions. We first construct haplotype-resolved genomes for a Dendrobium hybrid and uncover haplotypic variations and allelic imbalance in the heterozygous genome, demonstrating the significance of diverse ancestry. At Dendrobium genus-wide scale, we further elucidate phylogenetic relationships, evolutionary dynamics, entire gene repertoire, and the mechanisms of preserving ancient genetic variants and rapid recent genome evolution for habitat adaption. We also showcase distinctive evolutionary trajectories in MADS-box and PEBP families over 28 Ma. These results considerably contribute to unearthing the mystery of orchid origin, evolution and diversification, laying the foundation for efficient use of genetic diversity in breeding.

Abstract Image

泛基因基因组分析揭示了兰花属石斛的进化和多样性
兰花是被子植物中最多样化的科之一,但它们的基因组进化和多样性尚不清楚。在这里,我们构建并分析了石斛属(最大的兰花属之一)12个区段的17个代表性材料的染色体尺度的从头组装基因组。这些材料代表了广泛的表型、谱系和地理分布。我们首先构建了石斛杂种的单倍型解析基因组,并揭示了杂合基因组中的单倍型变异和等位基因失衡,证明了多样化祖先的重要性。在全属范围内,我们进一步阐明了石斛的系统发育关系、进化动力学、全基因库以及保存古代遗传变异和快速进化的机制。我们还展示了MADS-box和PEBP家族在28 Ma以上的独特进化轨迹。这些结果有助于揭示兰花的起源、进化和多样化之谜,为有效利用遗传多样性进行育种奠定基础。
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来源期刊
Nature Plants
Nature Plants PLANT SCIENCES-
CiteScore
25.30
自引率
2.20%
发文量
196
期刊介绍: Nature Plants is an online-only, monthly journal publishing the best research on plants — from their evolution, development, metabolism and environmental interactions to their societal significance.
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