Skern-Mauritzen Rasmus, Malde Ketil, Eichner Christiane, Dondrup Michael, Furmanek Tomasz, Besnier Francois, Komisarczuk Anna Zofia, Nuhn Michael, Dalvin Sussie, Edvardsen Rolf B, Klages Sven, Huettel Bruno, Stueber Kurt, Grotmol Sindre, Karlsbakk Egil, Kersey Paul, Leong Jong S, Glover Kevin A, Reinhardt Richard, Lien Sigbjørn, Jonassen Inge, Koop Ben F, Nilsen Frank
Institute of Marine Research, Postboks 1870 Nordnes, 5817 Bergen, Norway.
Institute of Marine Research, Postboks 1870 Nordnes, 5817 Bergen, Norway; Sea Lice Research Centre. Department of Biological Sciences, University of Bergen, Thormøhlens Gate 53, 5006 Bergen, Norway.
Genomics. 2021 Nov;113(6):3666-3680. doi: 10.1016/j.ygeno.2021.08.002. Epub 2021 Aug 14.
Copepods encompass numerous ecological roles including parasites, detrivores and phytoplankton grazers. Nonetheless, copepod genome assemblies remain scarce. Lepeophtheirus salmonis is an economically and ecologically important ectoparasitic copepod found on salmonid fish. We present the 695.4 Mbp L. salmonis genome assembly containing ≈60% repetitive regions and 13,081 annotated protein-coding genes. The genome comprises 14 autosomes and a ZZ-ZW sex chromosome system. Assembly assessment identified 92.4% of the expected arthropod genes. Transcriptomics supported annotation and indicated a marked shift in gene expression after host attachment, including apparent downregulation of genes related to circadian rhythm coinciding with abandoning diurnal migration. The genome shows evolutionary signatures including loss of genes needed for peroxisome biogenesis, presence of numerous FNII domains, and an incomplete heme homeostasis pathway suggesting heme proteins to be obtained from the host. Despite repeated development of resistance against chemical treatments L. salmonis exhibits low numbers of many genes involved in detoxification.
桡足类动物具有多种生态角色,包括寄生虫、食腐动物和浮游植物食草动物。尽管如此,桡足类动物的基因组组装仍然很少。鲑虱是一种在鲑科鱼类身上发现的具有经济和生态重要性的体外寄生桡足类动物。我们展示了695.4兆碱基对的鲑虱基因组组装,其中约60%为重复区域,有13081个注释的蛋白质编码基因。该基因组由14条常染色体和一个ZZ-ZW性染色体系统组成。组装评估确定了92.4%的预期节肢动物基因。转录组学支持注释,并表明宿主附着后基因表达发生了显著变化,包括与昼夜节律相关的基因明显下调,这与放弃昼夜迁移相吻合。该基因组显示出进化特征,包括过氧化物酶体生物发生所需基因的缺失、大量纤连蛋白II结构域的存在以及不完整的血红素稳态途径,这表明血红素蛋白是从宿主获得的。尽管对化学处理的抗性不断发展,但鲑虱参与解毒的许多基因数量较少。