Taboada Sergi, Kenny Nathan J, Riesgo Ana, Wiklund Helena, Paterson Gordon L J, Dahlgren Thomas G, Glover Adrian G
1Life Sciences Department, The Natural History Museum, Cromwell Road, London, SW7 5BD UK.
2Uni Research, PO Box 7810, 5020 Bergen, Norway.
Mar Biodivers. 2018;48(1):621-630. doi: 10.1007/s12526-017-0786-0. Epub 2017 Sep 30.
The abyssal demosponge is endemic to the Clarion - Clipperton Zone (CCZ) in the NE Pacific, a region with abundant seafloor polymetallic nodules and of potential interest for mining. encrusts on these nodules and is an abundant component of the ecosystem. To assess the impact of mining operations, it is crucial to understand the genetics of this species, because its genetic diversity and connectivity across the area may be representative of other nodule-encrusting invertebrate epifauna. Here we describe and characterize 14 polymorphic microsatellite markers from this keystone species using Illumina MiSeq, tested for 75 individuals from three different areas across the CCZ, including an Area of Particular Environmental Interest (APEI-6) and two areas within the adjacent UK1 mining exploration area. The number of alleles per locus ranged from 3 to 30 (13.33 average alleles for all loci across areas). Observed and expected heterozygosity ranged from 0.909-0.048 and from 0.954-0.255, respectively. Several loci displayed significant deviation from the Hardy-Weinberg equilibrium, which appears to be common in other sponge studies. The microsatellite loci described here will be used to assess the genetic structure and connectivity on populations of the sponge across the CCZ, which will be invaluable for monitoring the impact of mining operations on its habitat. Also, we provide the annotated mitochondrial genome of , compare its arrangement with other closely related species, and discuss the phylogenetic framework for the sponge after Maximum Likelihood and Bayesian Inference analyses using nucleotide and amino acid sequences data sets separately.
深海寻常海绵是东北太平洋克拉里昂-克利珀顿区(CCZ)特有的物种,该区域海底多金属结核丰富,具有潜在的开采价值。它附着在这些结核上,是生态系统中的一个丰富组成部分。为了评估采矿作业的影响,了解该物种的遗传学至关重要,因为其在该区域的遗传多样性和连通性可能代表其他附着在结核上的无脊椎动物表栖动物。在这里,我们使用Illumina MiSeq描述并表征了来自这个关键物种的14个多态性微卫星标记,对来自CCZ三个不同区域的75个个体进行了测试,包括一个特别环境关注区域(APEI-6)和相邻的UK1采矿勘探区域内的两个区域。每个位点的等位基因数量从3到30不等(所有区域所有位点的平均等位基因数为13.33)。观察到的杂合度和预期杂合度分别在0.909 - 0.048和0.954 - 0.255之间。几个位点显示出显著偏离哈迪-温伯格平衡,这在其他海绵研究中似乎很常见。这里描述的微卫星位点将用于评估整个CCZ海绵种群的遗传结构和连通性,这对于监测采矿作业对其栖息地的影响将是非常宝贵的。此外,我们提供了该物种的注释线粒体基因组,将其排列与其他密切相关的物种进行了比较,并分别使用核苷酸和氨基酸序列数据集进行最大似然和贝叶斯推断分析后,讨论了该海绵的系统发育框架。