Department of Biological Sciences, Auburn University, Auburn, AL 36849, USA.
Bioinformatics REU Program, Department of Biological Sciences, Auburn University, Auburn, AL 36849, USA.
G3 (Bethesda). 2021 Oct 19;11(11). doi: 10.1093/g3journal/jkab266.
Daphnia species are well-suited for studying local adaptation and evolutionary responses to stress(ors) including those caused by algal blooms. Algal blooms, characterized by an overgrowth (bloom) of cyanobacteria, are detrimental to the health of aquatic and terrestrial members of freshwater ecosystems. Some strains of Daphnia pulicaria have demonstrated resistance to toxic algae and the ability to mitigate toxic algal blooms. Understanding the genetic mechanism associated with this toxin resistance requires adequate genomic resources. Using whole-genome sequence data mapped to the Daphnia pulex reference genome (PA42), we present reference-guided draft assemblies from one tolerant and one sensitive strain of D. pulicaria, Wintergreen-6 (WI-6), and Bassett-411 (BA-411), respectively. Assessment of the draft assemblies reveal low contamination levels, and high levels (95%) of genic content. Reference scaffolds had coverage breadths of 98.9-99.4%, and average depths of 33X and 29X for BA-411 and WI-6, respectively. Within, we discuss caveats and suggestions for improving these draft assemblies. These genomic resources are presented with a goal of contributing to the resources necessary to understand the genetic mechanisms and associations of toxic prey resistance observed in this species.
水蚤物种非常适合研究局部适应和对压力(包括藻类大量繁殖引起的压力)的进化反应。藻类大量繁殖,以蓝藻的过度生长(繁殖)为特征,对淡水生态系统中的水生和陆地成员的健康有害。一些 Daphnia pulicaria 品系表现出对有毒藻类的抗性和减轻有毒藻类大量繁殖的能力。了解与这种毒素抗性相关的遗传机制需要足够的基因组资源。使用映射到 Daphnia pulex 参考基因组(PA42)的全基因组序列数据,我们分别从耐受和敏感的 D. pulicaria 冬绿-6(WI-6)和巴塞特-411(BA-411)菌株中呈现了参考指导的草案组装。对草案组装的评估显示出低污染水平和高基因含量(95%)。参考支架的覆盖度分别为 98.9-99.4%,平均深度为 BA-411 和 WI-6 的 33X 和 29X。在其中,我们讨论了改进这些草案组装的注意事项和建议。这些基因组资源是为了促进理解在该物种中观察到的有毒猎物抗性的遗传机制和关联所需的资源而呈现的。