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首页> 外文期刊>Systematic Entomology >Phylogenetic revision of Agapophytinae subf.n. (Diptera : Therevidae) based on molecular and morphological evidence
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Phylogenetic revision of Agapophytinae subf.n. (Diptera : Therevidae) based on molecular and morphological evidence

机译:Agapophytinae subf.n的系统发生修订。 (双翅目:Therevidae)基于分子和形态学证据

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摘要

Agapophytinae subf.n. is a highly diverse lineage of Australasian Therevidae, comprising eight described and two new genera: Agapophytus Guerin-Meneville, Acupalpa Krober, Acraspisa Krober, Belonalys Krober, Bonjeania Irwin & Lyneborg, Parapsilocephala Krober, Acatopygia Krober, Laxotela Winterton & Irwin, Pipinnipons gen.n. and Patanothrix gen.n. A genus-level cladistic analysis of the subfamily was undertaken using sixty-eight adult morphological characters and c. 1000 base pairs of the elongation factor-1 alpha (EF-1 alpha) protein coding gene. The morphological data partition produced three most parsimonious cladograms, whereas the molecular data partition gave a single most parsimonious cladogram, which did not match any of the cladograms found in the morphological analysis. The level of congruence between the data partitions was determined using the partition homogeneity test (HTF) and Wilcoxon signed ranks rest. Despite being significantly incongruent in at least one of the incongruence tests, the partitions were combined in a simultaneous analysis. The combined data yielded a single cladogram that was better supported than that of the individual partitions analysed separately. The relative contributions of the data partitions to support for individual nodes on the combined cladogram were investigated using Partitioned Bremer Support. The level of support for many nodes on the combined cladogram was non-additive and often greater than the sum of support for the respective nodes on individual partitions. This synergistic interaction between incongruent data partitions indicates a common phylogenetic signal in both partitions. It also suggests that criteria for partition combination based solely on incongruence may be misleading. The phylogenetic relationships of the genera are discussed using the combined data. A key to genera of Agapophytinae is presented, with genera diagnosed and figured. Two new genera are described: Patanothrix with a new species (Pat. skevingtoni) and Pat. wilsoni (Mann) transferred from Parapsilocephala, and Pipinnipons with a new species (Pip. kroeberi). Pipinnipons fascipennis (Krober) is transferred from Squamopygin Krober and Pip. imitans (Mann) is transferred from Agapophytus. Agapophytus bicolor (Krober) is transferred from Parapsilocephala. Agapophytus varipennis Mann is synonymised with Aga, queenslandi Krober and Aga. flavicornis Mann is synonymised with Aga. pallidicornis (Krober). [References: 79]
机译:变形杆菌亚种是澳大利亚特雷维达科的一个高度多样化的世系,包括八个已描述的科和两个新属:Agapophytus Guerin-Meneville,Acupalpa Krober,Acraspisa Krober,Belonalys Krober,Bonjeania Irwin和Lyneborg,Papsipsilocephala Krober,Acatopygia Krober,Laxotela Wintertonons和Irxongen。 。和Patanothrix gen.n.使用68个成年形态特征和c对亚科进行属水平分类分析。 1000个碱基对的延伸因子1α(EF-1 alpha)蛋白编码基因。形态数据分区产生了三个最简约的枝状图,而分子数据分区给出了一个最简约的枝状图,这与形态分析中发现的任何枝状图都不匹配。使用分区均匀性测试(HTF)确定数据分区之间的一致性水平,并用Wilcoxon符号秩进行排序。尽管在至少一项不一致测试中显着不一致,但在同时分析中合并了分区。合并的数据产生了一个单一的分支图,它比单独分析的各个分区得到了更好的支持。使用分区的不来梅支持调查了数据分区支持组合的分支图上的各个节点的相对贡献。组合分支图上许多节点的支持级别是非累加的,并且通常大于单个分区上各个节点的支持总和。不一致的数据分区之间的这种协同相互作用表明两个分区中都有共同的系统发生信号。它还表明,仅基于不一致的分区组合标准可能会产生误导。使用组合数据讨论属的系统发育关系。介绍了Agapophytinae属的关键,并诊断和确定了属。描述了两个新属:具有新物种的Patatanthrix(Pat。skevingtoni)和Pat。 wilsoni(Mann)从Parapsilocephala和Pipinnipons转移了一个新物种(Pip。kroeberi)。 Pipinnipons fascipennis(Krober)从Squamopygin Krober和Pip转移而来。亚胺(Mann)从Agapophytus转移而来。从双翅目昆虫转移了双色无头藻(Krober)。 Agapophytus varipennis Mann是Aga,Queenslandi Krober和Aga的代名词。 flavicornis Mann是Aga的代名词。 pallidicornis(克罗伯)。 [参考:79]

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