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Genomic assembly analyses of Asian teleost species seabass (Lates calcarifer) and arowana (Scleropages formosus)

机译:亚洲硬骨鱼类鲈鱼(Lates calcarifer)和金龙鱼(Scleropages formosus)的基因组装配分析

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摘要

The genome assembly and annotation of Asian seabass (Lates calcarifer) , a marine teleost with aquaculture relevance will be described, an initiative of Genome 10K . Though \u3e 500 eukaryotic genome sequences are available in public repositories, the majority are highly fragmented with incomplete assemblies, so considerable effort and resources are often spent to improve their quality. In the present study, PacBio long read sequencing , genetic and optical mapping, and syntenic inference were combined to build a chromosome-length assembly with a contig N50 size over 1 Mb and scaffold N50 size over 25 Mb that span ~90% of the genome was achieved.The population structure of L. calcarifer species complex was analyzed by re-sequencing 61 individuals representing various regions across the species’ native range from North-Western India across South-East Asia and Australia to Papua New Guinea. Tandem repeat and SNP annotation identified high levels of genetic diversity and confirmed earlier indications of a population stratification comprising three clades with signs of admixture apparent in the South-East Asian population. The quality of the Asian seabass genome assembly far exceeds that of any other fish species, and will serve as a new standard for fish genomics.The Asian arowana (Scleropages formosus), one of the world’s most expensive cultivated ornamental fishes, is an endangered species. It represents an ancient lineage of teleosts: the Osteoglossomorpha a high-quality chromosome-level reference genome of a female golden-variety arowana will be presented using a combination of deep shotgun sequencing and high-resolution linkage mapping. In addition, two draft genome assemblies for the red and green varieties were generated and assessed. Phylogenomic analysis supports a sister group relationship between Osteoglossomorpha (bonytongues) and Elopomorpha (eels and relatives), with the two clades together forming a sister group of Clupeocephala which includes all the remaining teleosts. The arowana genome retains the full complement of eight Hox clusters unlike the African butterfly fish (Pantodon buchholzi), another bonytongue fish, which possess only five Hox clusters. Differential gene expression among three varieties provides insights into the genetic basis of colour variation. A potential heterogametic sex chromosome is identified in the female arowana karyotype, suggesting that the sex is determined by a ZW/ZZ sex chromosomal system. The high-quality reference genome of the golden arowana and the draft assemblies of the red and green varieties are valuable resources for understanding the biology, adaptation and behavior of Asian arowanas.Vij et al Chromosomal-Level Assembly of the Asian Seabass Genome Using Long SequenceReads and Multi-layered Scaffolding \u22 PLOS Genetics DOI:10.1371/journal.pgen.1005954 April 15, 2016Bian et al The Asian arowana (Scleropagesformosus) genome provides new insights into the evolution of an early lineage of teleosts Scientific Reports | 6:24501 | DOI: 10.1038/srep24501 19 April 2016
机译:将描述基因组10K的一项举措,即与水产养殖相关的海洋硬骨鱼鲈鱼的基因组组装和注释。尽管在公共存储库中有500个真核基因组序列,但是大多数都高度碎片化,装配不完整,因此经常花费大量的精力和资源来提高其质量。在本研究中,PacBio长读测序,遗传和光学作图以及同义推断相结合,构建了一个染色体长度装配体,其重叠群N50大小超过1 Mb,而支架N50大小超过25 Mb,跨越了整个基因组的90%。通过对61个代表该物种原生范围各个区域的个体进行重新测序,分析了钙生L.carcarifer种复合体的种群结构,这些个体从印度西北部到东南亚,澳大利亚到巴布亚新几内亚。串联重复和SNP注释确定了高水平的遗传多样性,并确认了早期的人口分层迹象,包括在东南亚人口中明显具有混合迹象的三个进化枝。亚洲鲈鱼基因组装配的质量远远超过任何其他鱼类,将成为鱼类基因组学的新标准。世界上最昂贵的观赏观赏鱼之一的亚洲龙鱼(Scleropages formosus)是濒危物种。它代表了远古硬骨鱼类的血统:将结合深shot弹枪测序和高分辨率连锁作图技术,展示雌性金鱼龙鱼的高质量染色体水平参考基因组的骨赘。此外,生成并评估了红色和绿色品种的两个基因组草图。系统发育学分析支持骨Ost(骨舌类)和morph形(鳗鱼和亲属)之间的姐妹群关系,两个进化枝一起形成了包括所有剩余硬骨鱼的丛生头足纲的姐妹群。与非洲蝴蝶鱼(Pantodon buchholzi)不同,龙鱼的基因组保留了八个Hox簇的完整互补体,非洲蝴蝶鱼(Bontodon buchholzi)是另一只b舌鱼类,仅拥有五个Hox簇。三个变种之间的差异基因表达提供了洞察颜色变化的遗传基础的见解。在女性金龙鱼核型中鉴定出潜在的异配子性染色体,这表明该性别是由ZW / ZZ性染色体系统决定的。金龙鱼的高质量参考基因组以及红色和绿色品种的装配图草案是了解亚洲龙鱼的生物学,适应性和行为的宝贵资源。 PLOS Genetics DOI:10.1371 / journal.pgen.1005954 2016年4月15日Bian等人亚洲龙鱼(Scleropagesformosus)基因组为硬骨鱼早期世系的进化提供了新见解。 6:24501 | DOI:10.1038 / srep24501 2016年4月19日

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    Ou27Brien, Stephen;

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