首页> 外文期刊>Molecular ecology >Integrative species delimitation reveals cryptic diversity in the southern AppalachianAntrodiaetus unicolor(Araneae: Antrodiaetidae) species complex
【24h】

Integrative species delimitation reveals cryptic diversity in the southern AppalachianAntrodiaetus unicolor(Araneae: Antrodiaetidae) species complex

机译:综合性物种划界揭示了南方阿巴拉契西氏菌(Araneae:Antrodiaetidae)物种复合物的隐秘多样性

获取原文
获取原文并翻译 | 示例
           

摘要

Although species delimitation can be highly contentious, the development of reliable methods to accurately ascertain species boundaries is an imperative step in cataloguing and describing Earth's quickly disappearing biodiversity. Spider species delimitation remains largely based on morphological characters; however, many mygalomorph spider populations are morphologically indistinguishable from each other yet have considerable molecular divergence. The focus of our study, theAntrodiaetus unicolorspecies complex containing two sympatric species, exhibits this pattern of relative morphological stasis with considerable genetic divergence across its distribution. A past study using two molecular markers,COIand 28S, revealed thatA. unicoloris paraphyletic with respect toA. microunicolor. To better investigate species boundaries in the complex, we implement the cohesion species concept and use multiple lines of evidence for testing genetic exchangeability and ecological interchangeability. Our integrative approach includes extensively sampling homologous loci across the genome using a RADseq approach (3RAD), assessing population structure across their geographic range using multiple genetic clustering analyses that includestructure, principal components analysis and a recently developed unsupervised machine learning approach (Variational Autoencoder). We evaluate ecological similarity by using large-scale ecological data for niche-based distribution modelling. Based on our analyses, we conclude that this complex has at least one additional species as well as confirm species delimitations based on previous less comprehensive approaches. Our study demonstrates the efficacy of genomic-scale data for recognizing cryptic species, suggesting that species delimitation with one data type, whether one mitochondrial gene or morphology, may underestimate true species diversity in morphologically homogenous taxa with low vagility.
机译:虽然物种划界可以是高度争议的,但准确地确定物种边界的可靠方法的发展是编目和描述地球的迅速消失的生物多样性的必要步骤。蜘蛛物种划界在很大程度上基于形态特征;然而,许多Mygalomorph蜘蛛种群在形态上彼此无法区分,但具有相当大的分子分歧。我们研究的重点是含有两种合并物种的Theantrodiaetus单色综合体,在其分布上表现出这种相对形态瘀滞的这种相对形态瘀滞的模式。过去使用两个分子标记的研究Coiand 28s,揭示了茅草。 unicoloris与视对Tae的影响。 micrunicolor。为了更好地调查该复杂的物种边界,我们实施凝聚物物种概念,并使用多条证据进行测试遗传交换性和生态互换性。我们的综合方法包括使用Radseq方法(3RAD)在整个基因组上进行广泛的采样同源基因座,使用多种遗传聚类分析来评估它们的地理范围的人口结构,包括主成分分析和最近开发的无监督机器学习方法(变形AutiaceCoder)。我们利用基于利基的分布建模的大规模生态数据来评估生态相似性。根据我们的分析,我们得出结论,这综合体至少有一种额外的物种以及基于前一项综合方法的确认物种界定。我们的研究表明了基因组规模数据用于识别隐秘物种的疗效,表明物种划定与一种数据类型,无论是一种线粒体基因或形态,是否可以低估形态学均匀的分类群的真实物种,具有低模糊性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号