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Termites (Isoptera): Their phylogeny, classification, and rise to ecological dominance

机译:白蚁(等翅目):系统发育,分类和生态优势

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Like ants, termites are entirely eusocial and have profound ecological significance in the tropics. Following upon recent studies reporting more than a quarter of all known fossil termites, we present the first phylogeny of termite lineages using exemplar Cretaceous, Tertiary, and Recent taxa. Relationships among Recent families were largely unaffected by the addition of extinct taxa, but the analysis revealed extensive grades of stem-group taxa and the divergence of some modern families in the Cretaceous. Rhinotermitidae, Serritermitidae, and the "higher" termites (family Termitidae), which comprise 84% of the world termite species, diverged and radiated entirely in the Tertiary, corresponding to a significant increase in termite individuals in the fossil record. Radiation of the higher termites may have affected the formation of terrestrial carbon reserves like oil and coal. The higher classification of Isoptera is slightly revised based on the phylogenetic results. The following new taxa are proposed: Cratomastotermitidae, new family; Euisoptera, new clade; Archotermopsidae, new family; and Neoisoptera, new clade. In addition, the families Stolotermitidae, Stylotermitidae, and Archeorhinotermitidae are newly recognized or resurrected, and the families Termopsidae and Hodotermitidae are significantly restricted in composition.
机译:像蚂蚁一样,白蚁在整个热带地区完全是社会共生的,具有深远的生态意义。在最近的研究报告了所有已知化石白蚁的四分之一之后,我们提出了使用示例性白垩纪,第三纪和最近的分类群的白蚁谱系的第一个系统发育史。近来家庭之间的关系在很大程度上不受灭绝的分类单元的影响,但是分析显示,干群分类单元的等级较高,并且白垩纪的一些现代家庭也存在分歧。占世界白蚁物种84%的白蚁,白蚁科和“高等”白蚁(白蚁科)在第三纪完全散布和辐射,这与化石记录中白蚁个体的大量增加相对应。高等白蚁的辐射可能已经影响了诸如石油和煤炭等陆地碳储量的形成。根据系统发育结果,对等翅目的较高分类进行了稍微修改。提出了以下新的分类单元:Cratomastotermitidae,新的家庭; Euisoptera,新进化枝;始祖科,新家族;和新翼手,新进化枝。此外,新发现或复活了Stolotermitidae科,Stylotermitidae科和Archeorhinotermitidae科,并且Termopsidae科和Hodotermitidae科在组成上受到很大限制。

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