Department of Biology, University of Utah.
Department of Biology, University of Akron.
Genome Biol Evol. 2018 Jan 1;10(1):143-156. doi: 10.1093/gbe/evx280.
Vernal pool clam shrimp (Eulimnadia texana) are a promising model system due to their ease of lab culture, short generation time, modest sized genome, a somewhat rare stable androdioecious sex determination system, and a requirement to reproduce via desiccated diapaused eggs. We generated a highly contiguous genome assembly using 46× of PacBio long read data and 216× of Illumina short reads, and annotated using Illumina RNAseq obtained from adult males or hermaphrodites. Of the 120 Mb genome 85% is contained in the largest eight contigs, the smallest of which is 4.6 Mb. The assembly contains 98% of transcripts predicted via RNAseq. This assembly is qualitatively different from scaffolded Illumina assemblies: It is produced from long reads that contain sequence data along their entire length, and is thus gap free. The contiguity of the assembly allows us to order the HOX genes within the genome, identifying two loci that contain HOX gene orthologs, and which approximately maintain the order observed in other arthropods. We identified a partial duplication of the Antennapedia complex adjacent to the few genes homologous to the Bithorax locus. Because the sex chromosome of an androdioecious species is of special interest, we used existing allozyme and microsatellite markers to identify the E. texana sex chromosome, and find that it comprises nearly half of the genome of this species. Linkage patterns indicate that recombination is extremely rare and perhaps absent in hermaphrodites, and as a result the location of the sex determining locus will be difficult to refine using recombination mapping.
春池蛤形石磺(Eulimnadia texana)是一种很有前景的模式生物系统,因为它易于在实验室中培养、世代时间短、基因组适中、具有一种罕见且稳定的两性异形雌雄同体性别决定系统,并且需要通过干燥休眠卵进行繁殖。我们使用 46 倍的 PacBio 长读长数据和 216 倍的 Illumina 短读长生成了一个高度连续的基因组组装,并使用来自雄性或雌雄同体的 Illumina RNAseq 进行注释。在这个 120Mb 的基因组中,85%的序列包含在最大的 8 个连续体中,最小的连续体大小为 4.6Mb。组装体包含 98%通过 RNAseq 预测的转录本。这个组装与基于 Illumina 支架的组装有很大的不同:它是由包含全长序列数据的长读长生成的,因此没有缺口。组装的连续性使我们能够在基因组内对 HOX 基因进行排序,确定了包含 HOX 基因直系同源物的两个基因座,并且这些基因座大约保持了在其他节肢动物中观察到的顺序。我们鉴定了与 Bithorax 基因座同源的少数基因相邻的 Antennapedia 复合体的部分重复。由于两性异形物种的性染色体特别有趣,我们使用现有的同工酶和微卫星标记来鉴定 E. texana 的性染色体,并发现它几乎占该物种基因组的一半。连锁模式表明,重组在雌雄同体中极为罕见,甚至可能不存在,因此,使用重组图谱对性别决定基因座的位置进行精确定位将很困难。