Et latet et lucet: Discoveries from the Phyletisches Museum amber and copal collection in Jena, Germany

IF 1.3 3区 农林科学 Q2 ENTOMOLOGY Deutsche Entomologische Zeitschrift Pub Date : 2024-04-19 DOI:10.3897/dez.71.112433
B. Boudinot, Bernhard L. Bock, Michael Weingardt, Daniel Tröger, Jan Batelka, Di Li, Adrian Richter, Hans Pohl, Olivia T. D. Moosdorf, Kenny Jandausch, Jörg U. Hammel, Rolf G. Beutel
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引用次数: 1

Abstract

As the only direct records of the history of evolution, it is critical to determine the geological source of biota-bearing fossils. Through the application of synchrotron-radiation micro-computed tomography (SR-µ-CT), Fourier-transformed infrared-spectroscopy (FT-IR), visual evaluation of ultraviolet fluorescence (UV-VS), radiocarbon dating (14C quantification), and historical sleuthing, we were able to identify and sort 161 (83 Baltic amber, 71 Copal and 7 Kauri gum pieces) individually numbered and largely mislabeled pieces of East African Defaunation resin (~145 years old) and copal (~390 years old), as well as Baltic amber (~35 million years old) from the Phyletisches Museum collection. Based on this collection, we define two new species: ‡Amphientomum knorrei Weingardt, Bock & Boudinot, sp. nov. (Psocodea: Amphientomidae, copal) and †Baltistena nigrispinata Batelka, Tröger & Bock, sp. nov. (Coleoptera: Mordellidae, Baltic amber). For selected taxa, we provide systematic reviews of the fossil record, including: Amphientomidae, for which we provide a key to all species of Amphientomum, extant and extinct, and recognize the junior synonymy of Am. ectostriolatum Li, 2002 (an unjustified emendation) under Am. ectostriolate Li, 1999 (syn. nov.); the fossil ant genus †Yantaromyrmex and the clades Dorylinae, Plagiolepidini, Camponotus, Crematogaster, and Pheidole (Formicidae); the Nevrorthidae (Neuroptera); and Doliopygus (Coleoptera: Curculionidae: Platypodinae). We synonymize Palaeoseopsis Enderlein, 1925 with Amphientomum Pictet, 1854, syn. nov. and transfer one species from Amphientomum, forming Lithoseopsis indentatum (Turner, 1975), comb. nov. To prevent the uncritical usage of unidentifiable fossils attributed to Camponotus for macroevolutionary analysis, we transfer 29 species to the form genus †Camponotites Steinbach, 1967, which we consider to be most useful as incertae sedis in the Formicinae. We treat †Ctt. ullrichi (Bachmayer, 1960), comb. nov. as unidentifiable hence invalid stat. nov. We also transfer †Ca. mengei Mayr, 1868 and its junior synonym †Ca. igneus Mayr, 1868 to a new genus, †Eocamponotus Boudinot, gen. nov., which is incertae sedis in the Camponotini. Concluding our revision of Camponotus fossils, we transfer †Ca. palaeopterus (Zhang, 1989) to Liometopum (Dolichoderinae), resulting in †L. palaeopterumcomb. nov. and the junior synonymy of †Shanwangella Zhang, 1989, syn. nov. under Liometopum Mayr, 1861. Because the type specimens of the genera †Palaeosminthurus Pierce & Gibron, 1962, stat. rev. and †Pseudocamponotus Carpenter, 1930 are unidentifiable due to poor preservation, we consider these taxa unidentifiable hence invalid stat. nov. To avoid unsupported use of the available fossils names attributed to Crematogaster for divergence dating calibration points, we transfer three species to a new collective taxon that is incertae sedis in Myrmicinae, †Incertogaster Boudinot, gen. nov., forming †In. aurora (LaPolla & Greenwalt, 2015), †In. praecursor (Emery, 1891), comb. nov., and †In. primitiva (Radchenko & Dlussky, 2019), comb. nov. Finally, we transfer †Ph. cordata (Holl, 1829) back to Pheidole, and designate a neotype from our copal collection based on all available evidence. All new species plus the neotype of ‡Ph. cordata are depicted with 3D cybertypes from our µ-CT scan data. We introduce the convention of a double dagger symbol (‡) to indicate fossils in copal or Defaunation resin, as these may yet be extant. To further contextualize our results, we provide a discussion of amber history and classification, as well as the Kleinkuhren locality, to which multiple specimens were attributed. We conclude with conspecti on key biological problems and increasing potential of µ-CT for phylogenetic paleontology.
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Et latet et lucet:德国耶拿 Phyletisches 博物馆琥珀和椰干收藏的发现
作为进化史的唯一直接记录,确定含生物群化石的地质来源至关重要。通过应用同步辐射微型计算机断层扫描(SR-µ-CT)、傅立叶变换红外光谱(FT-IR)、紫外荧光目视评估(UV-VS)、放射性碳年代测定(14C 定量)和历史调查,我们能够对 161 块化石(83 块波罗的海琥珀、71 块科帕尔琥珀和 7 块琥珀)进行鉴定和分类、我们对植物博物馆收藏的 161 件(83 件波罗的海琥珀、71 件科帕尔琥珀和 7 件考瑞树胶)单独编号的东非笛福尼树脂(约 145 年前)和科帕尔琥珀(约 390 年前)以及波罗的海琥珀(约 3500 万年前)进行了鉴定和分类。根据这些藏品,我们确定了两个新物种:‡Amphientomum knorrei Weingardt, Bock & Boudinot, sp. nov. (Psocodea: Amphientomidae, copal) 和 †Baltistena nigrispinata Batelka, Tröger & Bock, sp. nov. (Coleoptera: Mordellidae, Baltic amber)。我们对部分分类群的化石记录进行了系统回顾,包括ectostriolatum Li, 2002(不合理的修正)下的 Am. ectostriolate Li, 1999(同义词);化石鞘翅目:鞘蛾科,波罗的海琥珀。nov.);化石蚂蚁属 †Yantaromyrmex 以及 Dorylinae、Plagiolepidini、Camponotus、Crematogaster 和 Pheidole 支系(蚁科);Nevrorthidae(神经龙科);以及 Doliopygus(鞘翅目:蟋蟀科:鸭嘴兽科)。我们将 Palaeoseopsis Enderlein, 1925 与 Amphientomum Pictet, 1854, syn.为了防止在宏观进化分析中不加区分地使用归属于 Camponotus 的无法识别的化石,我们将 29 个种转移到形属 †Camponotites Steinbach, 1967 中。我们将 †Ctt.mengei Mayr, 1868 及其小异名 †Ca. igneus Mayr, 1868 转移到新属 †Eocamponotus Boudinot, gen.palaeopterumcomb. nov. and the junior synonymy of †Shanwangella Zhang, 1989, syn.由于 †Palaeosminthurus Pierce & Gibron, 1962, stat. rev. 和 †Pseudocamponotus Carpenter, 1930 的模式标本保存较差而无法识别,我们认为这些分类群无法识别,因此是无效的 stat.为了避免无根据地使用归属于 Crematogaster 的化石名称作为分歧年代的校准点,我们将 3 个种转入 Myrmicinae 中的一个新的集合类群 †Incertogaster Boudinot, gen、aurora (LaPolla & Greenwalt, 2015), †In. praecursor (Emery, 1891), comb. nov., and †In. primitiva (Radchenko & Dlussky, 2019), comb. nov.最后,我们将†Ph. cordata (Holl, 1829) 转回 Pheidole,并根据所有可用证据从我们的铜器收藏中指定一个新种。所有新种以及 ‡Ph. cordata 的新原型都通过 µ-CT 扫描数据中的 3D 网络模型进行了描述。我们采用了双匕首符号(‡)来表示科帕尔或德福尼树脂化石,因为这些化石可能是现存的。为了进一步说明我们的研究结果,我们讨论了琥珀的历史和分类,以及克莱因库伦(Kleinkuhren)的产地,多个标本被归于该产地。最后,我们对关键的生物学问题以及µ-CT 在古生物系统发育中日益增长的潜力进行了展望。
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来源期刊
CiteScore
1.60
自引率
0.00%
发文量
9
审稿时长
3 months
期刊介绍: Founded in 1857 as Berliner Entomologische Zeitschrift, Deutsche Entomologische Zeitschrift is one of the World''s oldest international journals of systematic entomology. It publishes original research papers in English on the systematics, taxonomy, phylogeny, comparative morphology, and biogeography of insects. Other arthropods are also considered where of relevance to the biology of insects. The geographical scope of the journal is worldwide. Deutsche Entomologische Zeitschrift (DEZ) is dedicated to provide an open access, high-quality forum to contribute to the documentation of insect species, their distribution, their properties, and their phylogenetic relationships. All submitted manuscripts are subject to peer-review by the leading specialists for the respective topic. The journal is published in open access high-resolution PDF, semantically enriched HTML and machine-readable XML versions.
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