Department of Biology, James Madison University, Harrisonburg, VA, USA.
Institute of Marine Research, Bergen, Norway.
Sci Rep. 2022 Apr 22;12(1):6616. doi: 10.1038/s41598-022-10585-2.
The genome size of organisms impacts their evolution and biology and is often assumed to be characteristic of a species. Here we present the first published estimates of genome size of the ecologically and economically important ectoparasite, Lepeophtheirus salmonis (Copepoda, Caligidae). Four independent L. salmonis genome assemblies of the North Atlantic subspecies Lepeophtheirus salmonis salmonis, including two chromosome level assemblies, yield assemblies ranging from 665 to 790 Mbps. These genome assemblies are congruent in their findings, and appear very complete with Benchmarking Universal Single-Copy Orthologs analyses finding > 92% of expected genes and transcriptome datasets routinely mapping > 90% of reads. However, two cytometric techniques, flow cytometry and Feulgen image analysis densitometry, yield measurements of 1.3-1.6 Gb in the haploid genome. Interestingly, earlier cytometric measurements reported genome sizes of 939 and 567 Mbps in L. salmonis salmonis samples from Bay of Fundy and Norway, respectively. Available data thus suggest that the genome sizes of salmon lice are variable. Current understanding of eukaryotic genome dynamics suggests that the most likely explanation for such variability involves repetitive DNA, which for L. salmonis makes up ≈ 60% of the genome assemblies.
生物体的基因组大小影响其进化和生物学特性,通常被认为是物种的特征。在这里,我们首次公布了生态和经济上重要的外寄生虫鲑鱼虱(桡足纲,Caligidae 科)的基因组大小的估计值。我们对北大西洋亚种鲑鱼虱鲑鱼虱的四个独立的鲑鱼虱基因组组装进行了研究,包括两个染色体水平的组装,得到的组装大小范围从 665 到 790 Mbps。这些基因组组装在其发现结果上是一致的,并且看起来非常完整,通过基准通用单拷贝直系同源物分析发现,预期基因的比例超过 92%,转录组数据集通常可映射超过 90%的读长。然而,两种细胞测量技术,流式细胞术和 Feulgen 图像分析密度计,在鲑鱼虱的单倍体基因组中得出了 1.3-1.6 Gb 的测量值。有趣的是,早期的细胞测量报告称,来自芬迪湾和挪威的鲑鱼虱鲑鱼虱样本的基因组大小分别为 939 和 567 Mbps。因此,现有数据表明,鲑鱼虱的基因组大小是可变的。目前对真核生物基因组动态的理解表明,这种变异性最有可能的解释涉及重复 DNA,对于鲑鱼虱来说,重复 DNA 约占基因组组装的 60%。