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首页> 外文期刊>Systematic Entomology >The phylogeny of the superfamily Coccoidea (Hemiptera: Sternorrhyncha) based on the morphology of extant and extinct macropterous males.
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The phylogeny of the superfamily Coccoidea (Hemiptera: Sternorrhyncha) based on the morphology of extant and extinct macropterous males.

机译:基于现存和已灭绝的大型翼类雄虫的形态,超家族球菌(半翅目:Sternorrhyncha)的系统发育。

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摘要

Currently, 49 families of scale insects are recognised, 33 of which are extant. Despite more than a decade of DNA sequence-based phylogenetic studies of scales insects, little is known with confidence about relationships among scale insects families. Multiple lines of evidence support the monophyly of a group of 18 scale insect families informally referred to as the neococcoids. Among neococcoid families, published DNA sequence-based estimates have supported Eriococcidae paraphyly with respect to Beesoniidae, Dactylopiidae, and Stictococcidae. No other neococcoid interfamily relationship has been strongly supported in a published study that includes exemplars of more than ten families. Likewise, no well-supported relationships among the 15 extant scale insect families that are not neococcoids (usually referred to as 'archaeococcoids') have been published. We use a Bayesian approach to estimate the scale insect phylogeny from 162 adult male morphological characters, scored from 269 extant and 29 fossil species representing 43/49 families. The result is the most taxonomically comprehensive, most resolved and best supported estimate of phylogenetic relationships among scale insect families to date. Notable results include strong support for (i) Ortheziidae sister to Matsucoccidae, (ii) a clade comprising all scale insects except for Margarodidae s.s., Ortheziidae and Matsucoccidae, (iii) Coelostomidiidae paraphyletic with respect to Monophlebidae, (iv) Eriococcidae paraphyletic with respect to Stictococcidae and Beesoniidae, and (v) Aclerdidae sister to Coccidae. We recover strong support for a clade comprising Phenacoleachiidae, Pityococcidae, Putoidae, Steingeliidae and the neococcoids, along with a sister relationship between this clade and Coelostomidiidae+Monophlebidae. In addition, we recover strong support for Pityococcidae+Steingeliidae as sister to the neococcoids. Data from fossils were incomplete, and the inclusion of extinct taxa in the data matrix reduced support and phylogenetic structure. Nonetheless, these fossil data will be invaluable in DNA sequence-based and total evidence estimates of phylogenetic divergence times.
机译:目前,已识别出49种规模昆虫,其中33种已经存在。尽管有超过十年的基于鳞片昆虫的基于DNA序列的系统发育研究,但对鳞片昆虫家族之间的关系充满信心的人鲜为人知。多方面的证据支持非正式地称为新球菌的18个规模昆虫家族的单亲。在新球菌科中,已发表的基于DNA序列的估计已支持了比球虫科,线虫科和壁球虫科的肠球菌科。一项已发表的研究(包括十个以上家庭的样本)没有强烈支持其他新球菌家族的关系。同样,在现有的15个非新球类昆虫(通常称为“古球菌”)昆虫家族中,也没有得到充分支持的关系。我们使用贝叶斯方法从162个成年男性形态特征,从269个现存物种和29个化石物种(代表43/49个科)中得到的分数来估计昆虫的系统发育。结果是迄今为止,规模昆虫家族之间系统发育关系的分类分类最全面,解决最充分,支持最好。显着的结果包括:(i)松科兽科的Ortheziidae姐妹,(ii)除Margarodidae s,Ortheziidae和Matsucoccidae以外的所有鳞片昆虫的进化枝,(iii)相对于单ph科具有寄生性的腔皮tom科,(iv)相对于单毛科有寄生性的Eriococcidae Stictococcidae和Beesoniidae,以及(v)Coccidae的Aclerdidae姐妹。我们对包括苯丙酸菌科,Pityococcidae,Putoidae,Steingeliidae和新球菌的进化枝,以及该进化枝与Coelostomidiidae + Monophlebidae之间的姐妹关系,得到了强有力的支持。此外,我们还获得了对新球菌姊妹的Pityococcidae + Steingeliidae的大力支持。来自化石的数据不完整,并且在数据矩阵中包含灭绝的类群会减少支持和系统发育结构。尽管如此,这些化石数据在基于DNA序列的系统发育差异时间的总证据估计中将是无价的。

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