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美洲鱘基因组为早期脊椎动物的染色体进化和骨骼矿化提供了新的见解。

The American Paddlefish Genome Provides Novel Insights into Chromosomal Evolution and Bone Mineralization in Early Vertebrates.

机构信息

Key Laboratory of Freshwater Biodiversity Conservation, Ministry of Agriculture and Rural Affairs of P.R. China, Yangtze River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Wuhan, China.

Shenzhen Key Lab of Marine Genomics, Guangdong Provincial Key Lab of Molecular Breeding in Marine Economic Animals, BGI Academy of Marine Sciences, BGI Marine, BGI, Shenzhen, China.

出版信息

Mol Biol Evol. 2021 Apr 13;38(4):1595-1607. doi: 10.1093/molbev/msaa326.

Abstract

Sturgeons and paddlefishes (Acipenseriformes) occupy the basal position of ray-finned fishes, although they have cartilaginous skeletons as in Chondrichthyes. This evolutionary status and their morphological specializations make them a research focus, but their complex genomes (polyploidy and the presence of microchromosomes) bring obstacles and challenges to molecular studies. Here, we generated the first high-quality genome assembly of the American paddlefish (Polyodon spathula) at a chromosome level. Comparative genomic analyses revealed a recent species-specific whole-genome duplication event, and extensive chromosomal changes, including head-to-head fusions of pairs of intact, large ancestral chromosomes within the paddlefish. We also provide an overview of the paddlefish SCPP (secretory calcium-binding phosphoprotein) repertoire that is responsible for tissue mineralization, demonstrating that the earliest flourishing of SCPP members occurred at least before the split between Acipenseriformes and teleosts. In summary, this genome assembly provides a genetic resource for understanding chromosomal evolution in polyploid nonteleost fishes and bone mineralization in early vertebrates.

摘要

鲟形目鱼类位于硬骨鱼类的基部,虽然它们的骨骼像软骨鱼类一样是软骨的。这种进化地位和它们的形态特化使它们成为研究的焦点,但它们复杂的基因组(多倍体和微染色体的存在)给分子研究带来了障碍和挑战。在这里,我们生成了美洲匙吻鲟(Polyodon spathula)的第一个高质量染色体水平的基因组组装。比较基因组分析揭示了最近的物种特异性全基因组复制事件,以及广泛的染色体变化,包括在匙吻鲟中一对完整的、大的祖先染色体的头对头融合。我们还概述了负责组织矿化的匙吻鲟 SCPP(分泌钙结合磷蛋白)谱,表明 SCPP 成员的最早繁荣至少发生在鲟形目和硬骨鱼之间的分裂之前。总之,这个基因组组装为理解多倍体非硬骨鱼类的染色体进化和早期脊椎动物的骨骼矿化提供了遗传资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d2c/8042750/b3eaee1635a8/msaa326f1.jpg

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