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首页> 外文期刊>Molecular phylogenetics and evolution >A phylotranscriptomic backbone of the orb-weaving spider family Araneidae (Arachnida, Araneae) supported by multiple methodological approaches
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A phylotranscriptomic backbone of the orb-weaving spider family Araneidae (Arachnida, Araneae) supported by multiple methodological approaches

机译:由多种方法论方法支持的织造蜘蛛家族Araneidae(Arachnida,Araneae)的植物翻译组骨架

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摘要

The orb-weaving spider family Araneidae is extremely diverse (>3100 spp.) and its members can be charismatic terrestrial arthropods, many of them recognizable by their iconic orbicular snare web, such as the common garden spiders. Despite considerable effort to better understand their backbone relationships based on multiple sources of data (morphological, behavioral and molecular), pervasive low support remains in recent studies. In addition, no overarching phylogeny of araneids is available to date, hampering further comparative work. In this study, we analyze the transcriptomes of 33 taxa, including 19 araneids – 12 of them new to this study – representing most of the core family lineages, to examine the relationships within the family using genomic-scale datasets resulting from various methodological treatments, namely ortholog selection and gene occupancy as a measure of matrix completion. Six matrices were constructed to assess these effects by varying orthology inference method and gene occupancy threshold. Orthology methods used are the benchmarking tool BUSCO and the tree-based method UPhO; three gene occupancy thresholds (45%, 65%, 85%) were used to assess the effect of missing data. Gene tree and species tree-based methods (including multi-species coalescent and concatenation approaches, as well as maximum likelihood and Bayesian inference) were used totalling 17 analytical treatments. The monophyly of Araneidae and the placement of core araneid lineages were supported, together with some previously unsound backbone divergences; these include high support for Zygiellinae as the earliest diverging subfamily (followed by Nephilinae), the placement of Gasteracanthinae as sister group toCyclosaand close relatives, and close relationships between theAraneus?+?Neosconaclade and Cyrtophorinae?+?Argiopinae clade. Incongruences were relegated to short branches in the clade comprisingCyclosaand its close relatives. We found congruence between most of the completed analyses, with minimal topological effects from occupancy/missing data and orthology assessment. The resulting number of genes by certain combinations of orthology and occupancy thresholds being analyzed had the greatest effect on the resulting trees, with anomalous outcomes recovered from analysis of lower numbers of genes.
机译:织造蜘蛛家族Araneidae非常多样化(> 3100 spp。),其成员可以是富有魅力的地面节肢动物,其中许多人都可以通过他们的标志性的野生圈网,例如共同的花园蜘蛛。尽管基于多种数据来源(形态学,行为和分子)来说,尽管更好地了解他们的骨干关系,但在最近的研究中仍然存在普遍的低支持。此外,没有迄今为止迄今为止的Araneids的总形发育,妨碍了进一步的比较工作。在这项研究中,我们分析了33个分类群的转录组,其中包括19个Araneids - 其中12个新的研究 - 代表大多数核心家族谱系,使用各种方法治疗产生的基因组规模数据集来检查家庭内的关系,即原子然的选择和基因占用作为矩阵完成的衡量标准。构建六个矩阵以通过改变正非局部推理方法和基因占用阈值来评估这些效果。使用的正轨方法是基准刀具Busco和基于树的方法omho;三种基因占用阈值(45%,65%,85%)用于评估缺失数据的效果。基因树和物种基于树的方法(包括多种播放和串联方法,以及最大可能性和贝叶斯推理)总共17种分析治疗方法。支持胃癌的一切性和核心araneid谱系的放置,以及一些以前的非答案骨干分歧;这些包括对Zygiellinae的高载体作为最早发散的亚家族(其次是Nephilinae),将气体囊素作为姐妹群到患者群体群体的患者群体,并且在塞兰氏菌属之间的密切关系?+ Neosconaclade和Cyrtophorinae?+α+α+α+α+α+?阿里帕内纳氏症的关系。将Incongruence降级到包括Cyclosa和其近亲的思工的短分支。我们发现大多数完成的分析之间的一致性,占用/缺失数据和原子学评估的最小拓扑效应。所得到的基因数量通过分析的某些正端和占用阈值的基因对所得树木的影响最大,从分析少量基因分析中回收了异常的结果。

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