2022_in_paleoentomology

2022 in paleoentomology

2022 in paleoentomology

Overview of the events of 2022 in paleoentomology


This paleoentomology list records new fossil insect taxa that are to be described during the year 2022, as well as notes other significant paleoentomology discoveries and events which occurred during that year.

Quick Facts List of years in paleoentomology ...

Clade Amphiesmenoptera

Lepidoptera

More information Name, Novelty ...

Lepidopteran research

  • A description of new specimens of caterpillars from the Cretaceous Burmese amber, expanding the morphological diversity of Cretaceous caterpillars, is published by Gauweiler et al. (2022), who also attempt to determine whether Cretaceous caterpillars might have represented an adequate food source for early birds.[3]
  • Review of the fossil record of caterpillars in Dominican and Mexican amber, including description of new specimens, is published by Haug et al. (2022).[4]

Tarachoptera

More information Name, Novelty ...

Trichoptera

More information Name, Novelty ...

Other amphiesmenopterans

More information Name, Novelty ...

Other amphiesmenopteran research

  • Khramov, Naugolnykh & Węgierek (2022) report the presence of elongate mouthparts with similar morphology to those of some present-day nectarivorous beetles and hymenopterans in Permian protomeropids from Russia, representing the earliest record of insects with siphonate-like mouthparts, which were possibly used to gather sugary fluids from the semi-closed ovulate organs of the gymnosperms of a peltaspermalean affinity known from the same locality.[16]

Clade Antliophora

Dipterans

Brachycerans

More information Name, Novelty ...

Nematocerans

More information Name, Novelty ...
Dipteran research
  • A redescription of Minyohelea nexuosa, based on data from a new specimen from the Lower Cretaceous Lebanese amber, is published by Pielowska-Ceranowska, Azar & Szwedo (2022).[48]
  • A review of the fossil record of the subfamily Microphorinae is published by Shamshev & Perkovsky (2022).[49]

Mecoptera

More information Name, Novelty ...

Clade Archaeorthoptera

†Cnemidolestida

More information Name, Novelty ...

Orthopterans

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Orthopteran research

  • Putative liomopterid Alekhosara reticulata is reinterpreted as a possible locustavid caeliferan, and thus possibly the oldest known caeliferan, by Aristov & Gorochov (2022).[79]
  • Evidence of the presence of the earliest tympanal ears and sound-producing system in exceptionally preserved Mesozoic katydids, interpreted as indicating that katydids evolved a high diversity of singing frequencies at least by the Late Triassic, and complex acoustic communication at least by the Middle Jurassic, is presented by Xu et al. (2022).[80]

†Titanoptera

More information Name, Novelty ...

Other panorthopterans

More information Name, Novelty ...

Clade Coleopterida

Coleopterans

Adephaga

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Archostemata

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Myxophaga

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†Protocoleoptera

Protocoleopteran research
  • A study on the anatomy and affinities of Coleopsis archaica is published by Schädel, Yavorskaya & Beutel (2022).[94]
  • A study on the anatomy and phylogenetic affinities of members of the family Tshekardocoleidae is published by Boudinot et al. (2022), who name new clades Mesocoleoptera (containing all coleopterans except tshekardocoleids) and Metacoleoptera (containing all mesocoleopterans except permocupedids).[95]

Polyphaga

Bostrichiformia
More information Name, Novelty ...
Cucujiformia
More information Name, Novelty ...
Cucujiform research
  • Description of new specimens of scraptiid larvae with large, elongated terminal ends from the Eocene Baltic amber and Cretaceous Burmese amber (the latter representing the oldest record of these larvae reported to date), and a study on the morphological variation of these larvae is published by Zippel et al. (2022).[148]
  • Revision of the fossil lymexylids originally assigned to the genus Raractocetus is published by Li et al. (2022), who transfer the species Raractocetus balticus, R. extinctus, R. fossilis and R. sverlilo to the genus Cretoquadratus, and consider the species Cretoquadratus engeli to be a junior synonym of Cretoquadratus fossilis.[136]
Elateriformia
More information Name, Novelty ...
Elateriform research
  • The first fossil larva of a representative of Elmidae reported to date is described from the Eocene Baltic amber by Zippel et al. (2022).[181]
Scarabaeiformia
More information Name, Novelty ...
Scarabaeiform research
  • Cretaceous scarabaeoid Mesoceratocanthus, originally assigned to the family Hybosoridae, is reinterpreted as a member of the passaloid lineage including the families Passalopalpidae and Passalidae (probably closely related to the extinct family Passalopalpidae) by Li et al. (2022).[186]
Staphyliniformia
More information Name, Novelty ...
Staphyliniform research
  • A larva of an ant-like stone beetle, similar to the second stage larvae of extant Stenomastigus longicornis and likely belonging to the group Mastigini, is described from the Cretaceous amber from Myanmar by Haug et al. (2022).[199]

Clade Dictyoptera

More information Name, Novelty ...

Dictyopteran research

  • An assemblage of specimens of Subioblatta madygenica, with several specimens preserving the coloration on wings, is described from the Triassic Madygen Formation (Kyrgyzstan) by Hinkelman (2022).[217]
  • Probable termite coprolites with different proportions are described from the Lower Cretaceous Huolinhe Formation (Huolinhe Basin, China) by Dong et al. (2022), who interpret this finding as indicating that the Early Cretaceous termites from the Huolinhe Basin had wood-feeding habits, and suggesting that the division of labor among termites already existed in the Early Cretaceous.[218]
  • Borings filled with coprolites similar to those produced by extant termites belonging to the family Kalotermitidae are described from silicified conifer woods from the Albian Kachaike Formation (Argentina) by Greppi et al. (2022), who interpret the presence of kalotermitids as indicative of arid climatic conditions.[219]

†Glosselytrodea

More information Name, Novelty ...

Hymenopterans

"Symphyta"

More information Name, Novelty ...

"Symphytan" research

  • A study on the phylogenetic affinities of the Oligocene pamphiliid Tapholyda caplani is published by Jouault et al. (2022), who transfer this species to the subfamily Juralydinae.[232]

Apocrita

Apoidea

More information Name, Novelty ...

Chalcidoidea

More information Name, Novelty ...

Chrysidoidea

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Diaprioidea

More information Name, Novelty ...

Evanioidea

More information Name, Novelty ...

Formicoidea

More information Name, Novelty ...

Ichneumonoidea

More information Name, Novelty ...

Mymarommatoidea

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Proctotrupoidea

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Serphitoidea

More information Name, Novelty ...

Stephanoidea

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Tiphioidea

More information Name, Novelty ...

Other Apocrita

More information Name, Novelty ...

Apocritan research

  • A bethylid specimen belonging to the genus Eupsenella (currently confined to Australia and New Zealand and with the fossil record previously only known from the Old World) is described from the Eocene Green River Formation by Brazidec & Perrichot (2022).[278]
  • Richter et al. (2022) describe almost completely preserved internal head structures of a specimen of Gerontoformica gracilis from the Cretaceous amber from Myanmar.[279]
  • Zhuang et al. (2022) describe a female specimen of Zigrasimecia with exceptionally preserved soft tissues from the Cretaceous amber from Myanmar.[280]

Clade Neuropterida

Megaloptera

Megalopteran research

Neuroptera

More information Name, Novelty ...

Neuropteran research

  • A study on the fossil record of aphidlions and aphidlion-like lacewing larvae, including reports of new specimens from the Cretaceous Burmese amber and Eocene Baltic amber and a study on the morphological diversity of the heads of the fossil larvae, is published by Haug et al. (2022).[308]
  • Haug et al. (2022) describe an aphidlion-like larva from the Cretaceous Burmese amber, preserved in close proximity to an empty egg case, and interpreted by the authors as likely representing the first newly hatched aphidlion-like larva reported from the Burmese amber.[309]
  • A hemerobiid aphidlion preserved with possible Cf. Germaraphis prey, representing the first possible case of a cooccurrence of predator and prey for lacewing larvae reported to date, is described from a piece of the Eocene Baltic amber by Haug et al. (2022).[310]
  • An overview of the diversity and fossil record of the larvae of the families Ithonidae, Sisyridae and Coniopterygidae is published by Haug et al. (2022).[311]
  • Two probable berothid larvae with extremely enlarged trunks are described from a single piece of the Cretaceous Kachin amber from Myanmar by Haug & Haug (2022), representing the oldest case of the extreme inflation of the trunk in insects reported to date.[312]

Raphidioptera

More information Name, Novelty ...

Raphidiopteran research

  • A study on the morphological diversity of snakefly larvae over the last 100 million years is published by Haug et al. (2022), who also describe new specimens of larval snakeflies preserved in Eocene and Cretaceous ambers.[314]
  • Makarkin et al. (2022) describe snakefly larvae from the Eocene Sakhalinian amber (the first confirmed representative of Raphidioptera from the Cenozoic of Asia) and Rovno amber (representing the first European Cenozoic immature snakefly found outside of Russo-Scandia).[315]

Clade †Palaeodictyopteroidea

†Megasecoptera

More information Name, Novelty ...

†Palaeodictyoptera

More information Name, Novelty ...

Palaeodictyopteran research

  • A study on the abdominal lateral outgrowths (flaps) of Paleozoic palaeodictyopteran larvae is published by Prokop et al. (2022), who report that these flaps show comparable structure to thoracic wings, and most likely represent wing serial homologues.[317]

Clade Palaeoptera

Ephemeroptera

More information Name, Novelty ...

Odonatoptera

More information Name, Novelty ...

Odonatopteran research

  • A study on the diversity of color patterns among Early Jurassic heterophlebiids is published by Jouault et al. (2022), who identify five different patterns of coloration in the studied fossil material, and interpret the appearance of patterns of colored spots and bands on the studied heterophlebiid wings as likely caused by the increase of the predation pressure by pterosaurs.[343]

Clade †Paoliidea

†Paoliida

More information Name, Novelty ...

Clade Paraneoptera

Hemipterans

Auchenorrhyncha

More information Name, Novelty ...

Coleorrhyncha

More information Name, Novelty ...

Heteroptera

More information Name, Novelty ...
Heteropteran research
  • Fu et al. (2022) describe adult females of the water boatman Karataviella popovi from the Middle–Late Jurassic Daohugou biota (China) bearing clutches of eggs on their left mesotibia, representing the earliest direct evidence of brood care among insects reported to date.[384]
  • Redescription of Eocenocydnus lisi is published by Lis (2022), who assigns this species to the tribe Cydnini within the family Cydnidae.[385]

Sternorrhyncha

More information Name, Novelty ...
Sternorrhyncha research
  • A redescription of Khatangaphis sibirica is published by Ogłaza, Perkovsky & Węgierek (2022).[392]
  • A redescription of Canadaphis mordvilkoi, based on data from a new specimen from the Cretaceous amber from the Kheta Formation (Taymyr Peninsula, Krasnoyarsk Krai, Russia), is published by Ogłaza, Perkovsky & Węgierek (2022).[393]

Psocodea

More information Name, Novelty ...

Thysanoptera

More information Name, Novelty ...

Clade Perlidea

Dermapterans

More information Name, Novelty ...

Embioptera

More information Name, Novelty ...

Phasmatodea

More information Name, Novelty ...

Plecopterans

More information Name, Novelty ...

Plecopteran research

  • A study on the diversity dynamics of plecopterans throughout their evolutionary history, based on data from the fossil record, is published by Jouault et al. (2022)[415]

Clade †Reculida

More information Name, Novelty ...

Other insects

More information Name, Novelty ...

General research

  • A study on the diversity dynamics of insects during the Permian and Triassic is published by Jouault et al. (2022), who find a pattern with three extinctions at the Roadian/Wordian, Permian/Triassic and Ladinian/Carnian boundaries, assess the effect of diversity changes between three or four guilds (herbivores, predators, detritivores/fungivores and generalists), and attempt to determine the factors influencing insect diversification dynamics throughout the Permian and Triassic.[424]
  • Conspecific aggregations of insects (dermapterans, neuropterans, orthopterans) and springtails are described from the Cretaceous Burmese amber by Hörnig et al. (2022), who attempt to determine whether these fossils could represent evidence of social behaviour.[425]
  • A flat wasp female preserved grasping and possibly stinging a beetle is described from the Cretaceous Burmese amber by Kiesmüller et al. (2022).[426]

References

  1. Zhang, W.; Shih, C.; Engel, M. S.; Ren, D. (2022). "Cretaceous lophocoronids with short proboscis and retractable female genitalia provide the earliest evidence for their feeding and oviposition habits". Cladistics. 38 (6): 684–701. doi:10.1111/cla.12511. PMID 35758057. S2CID 250071929.
  2. Sarto i Monteys, V.; Hausmann, A.; Solórzano-Kraemer, M. M.; Hammel, J. U.; Baixeras, J.; Delclòs, X.; Peñalver, E. (2022). "A new fossil inchworm moth discovered in Miocene Dominican amber (Lepidoptera: Geometridae)". Journal of South American Earth Sciences. 120. 104055. Bibcode:2022JSAES.12004055S. doi:10.1016/j.jsames.2022.104055.
  3. Gauweiler, J.; Haug, C.; Müller, P.; Haug, J. T. (2022). "Lepidopteran caterpillars in the Cretaceous: were they a good food source for early birds?". Palaeodiversity. 15 (1): 45–59. doi:10.18476/pale.v15.a3. S2CID 247268740.
  4. Haug, J. T.; Haug, C.; Wang, Y.; Baranov, V. A. (2022). "The fossil record of lepidopteran caterpillars in Dominican and Mexican amber". Lethaia. 55 (3): 1–14. doi:10.18261/let.55.3.7. S2CID 253416933.
  5. Wang, J.; Zhang, W.; Engel, M. S.; Sheng, X.; Shih, C.; Ren, D. (2022). "Early evolution of wing scales prior to the rise of moths and butterflies". Current Biology. 32 (17): 3808–3814.e2. doi:10.1016/j.cub.2022.06.086. PMID 35998638. S2CID 251727701.
  6. Wichard, W.; Müller, P.; Fischer, T. (2022). "Family Pseudoneureclipsidae (Insecta, Trichoptera) in mid-Cretaceous Burmese amber". Palaeodiversity. 15 (1): 1–12. doi:10.18476/pale.v15.a1. S2CID 244808328.
  7. Wichard, W.; Espeland, M. (2022). "The family Cretapsychidae (Insecta, Trichoptera) from mid-Cretaceous Burmese amber, with descriptions of two new species". European Journal of Taxonomy (833): 1–11. doi:10.5852/ejt.2022.833.1879. S2CID 251146739.
  8. Sukatsheva, I. D.; Sinitshenkova, N. D. (2022). "A new caddisfly of the family Baissoferidae (Insecta: Trichoptera) from the Lower Cretaceous of Mongolia". Palaeoentomology. 5 (3): 285–288. doi:10.11646/palaeoentomology.5.3.12.
  9. Wichard, W.; Müller, P. (2022). "Palleptoceridae fam. nov., an extinct leptoceroid family in mid-Cretaceous Burmese amber (Insecta, Trichoptera)". Palaeoentomology. 5 (5): 468–474. doi:10.11646/palaeoentomology.5.5.8. S2CID 252489813.
  10. Engel, M. S. (2022). "Establishment of some clade names for Amphiesmenoptera (Insecta: Holometabola)". Novitates Paleoentomologicae. 24 (24): 1–7. doi:10.17161/np.24.18498. S2CID 252273025.
  11. Prokop, J.; Rosová, K.; Leipner, A.; Nel, A. (2022). "First caddisfly-like insect from the Pennsylvanian of Piesberg (Mecopterida: stem group Amphiesmenoptera)". Historical Biology: An International Journal of Paleobiology. 35 (8): 1444–1448. doi:10.1080/08912963.2022.2098022. S2CID 250648539.
  12. Pierwola, A. A.; Grimaldi, D. A. (2022). "First New World Necrotaulius reflects the Laurasian land masses (Insecta: Amphiesmenoptera: Necrotauliidae)". Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen. 304 (1): 37–50. doi:10.1127/njgpa/2022/1056. S2CID 248639629.
  13. Khramov, A. V.; Naugolnykh, S. V.; Węgierek, P. (2022). "Possible long-proboscid insect pollinators from the Early Permian of Russia". Current Biology. 32 (17): 3815–3820.e2. doi:10.1016/j.cub.2022.06.085. PMID 35858616. S2CID 250647525.
  14. Carmo, D. D. D.; Sampronha, S.; Santos, C. M. D.; Ribeiro, G. C. (2022). "Cretaceous Horse flies and their phylogenetic significance (Diptera: Tabanidae)". Arthropod Systematics & Phylogeny. 80: 295–307. doi:10.3897/asp.80.e86673. S2CID 250974222.
  15. Han, Y.; Shih, C.; Ren, D.; Wang, Y. (2022). "New wood soldier flies from mid-Cretaceous Myanmar amber (Diptera, Stratiomyomorpha, Xylomyidae)". Cretaceous Research. 134: Article 105142. Bibcode:2022CrRes.13405142H. doi:10.1016/j.cretres.2022.105142. S2CID 245950382.
  16. Greenwalt, D. E.; Amorim, D. S.; Hauser, M.; Kerr, P. H.; Fitzgerald, S. J.; Winterton, S. L.; Cumming, J. M.; Evenhuis, N. L.; Sinclair, B. J. (2022). "Diptera of the Middle Eocene Kishenehn Formation II". Palaeontologia Electronica. 25 (2): Article number 25.2.a22. doi:10.26879/1215.
  17. Bickel, D. J.; Martin, J.; Agnihotri, P.; Singh, H. (2022). "Dolichopodidae (Diptera) from the Eocene amber deposits of Cambay and Kutch Basins, India". Palaeoentomology. 5 (5): 475–486. doi:10.11646/palaeoentomology.5.5.9. S2CID 252472963.
  18. Nel, A.; Jouault, C. (2023). "A new fossil Leptogastrinae from the Oligocene of France (Diptera, Asilidae)". Historical Biology: An International Journal of Paleobiology. 35 (3): 457–463. doi:10.1080/08912963.2022.2044324. S2CID 247144681.
  19. Szadziewski, R.; Bojarski, B.; Sontag, E.; Szwedo, J. (2022). "A new giant dung midge from Miocene Ethiopian amber (Diptera: Scatopsidae)". Zootaxa. 5099 (5): 549–562. doi:10.11646/zootaxa.5099.5.3. PMID 35391397.
  20. Kania-Kłosok, I.; Perrichot, V.; Krzemiński, W. (2022). "Cretaceous Antodicranomyia (Diptera: Limoniidae) and their paleohabitat". Scientific Reports. 12 (1): Article number 10167. Bibcode:2022NatSR..1210167K. doi:10.1038/s41598-022-14182-1. PMC 9205968. PMID 35715511.
  21. Lukashevich, E. D. (2022). "Revision of Archizelmira Rohdendorf, 1962 (Diptera, Archizelmiridae)". Palaeoentomology. 5 (3): 254–261. doi:10.11646/palaeoentomology.5.3.8. S2CID 250161601.
  22. Baranov, V. A.; Haug, J. T.; Greenwalt, D. E.; Harbach, R. (2022). "Diversity of culicomorphan dipterans in the Eocene Kishenehn Konservat-Lagerstätte (Montana, USA) and its palaeoecological implications". Palaeontologia Electronica. 25 (1): Article number 25.1.a4. doi:10.26879/1165.
  23. Amorim, D. S.; Oliveira, S. S.; Carmo, D. D. D.; Ribeiro, G. C. (2022). "The oldest Gondwanan fossil of Leiinae (Diptera, Mycetophilidae): Phylogenetic and evolutionary implications". Cladistics. 39 (1): 43–57. doi:10.1111/cla.12519. PMID 36479921. S2CID 254490590.
  24. Nel, A.; Legal, S.; Coster, P. (2022). "A new species of the March fly genus Dilophus Meigen, 1803 (Diptera: Bibionidae) from the Oligocene of Provence (France)". Palaeoentomology. 5 (4): 347–353. doi:10.11646/palaeoentomology.5.4.7. S2CID 251872474.
  25. Amorim, D. S.; Brown, B. V. (2022). "Docidiadia grimaldii sp. nov. from Myanmar amber (Diptera: Diadocidiidae), with comments on the genus Docidiadia Blagoderov & Grimaldi". Palaeoentomology. 5 (5): 505–512. doi:10.11646/palaeoentomology.5.5.12. S2CID 252473399.
  26. Peñalver, E.; Arillo, A.; Nel, A. (2022). "A review of the Cretaceous genus Eltxo (Diptera: Cecidomyiidae) with description of the new species Eltxo grimaldii from El Soplao amber". Palaeoentomology. 5 (5): 461–467. doi:10.11646/palaeoentomology.5.5.7. S2CID 252475090.
  27. Santos, D.; Teramoto Klein, B. M.; Ribeiro, G. C. (2022). "The fossil record of Eloeophila (Diptera: Tipuloidea: Limoniidae)". Historical Biology: An International Journal of Paleobiology: 1–6. doi:10.1080/08912963.2022.2147429. S2CID 253663499.
  28. Fedotova, Z. A.; Perkovsky, E. E.; Ross, A. J.; Zhang, Q. (2022). "A new genus and species of gall midges the tribe Winnertziini (Diptera, Cecidomyiidae, Porricondylinae) from lower Eocene Fushun amber from China". Palaeoentomology. 5 (1): 90–98. doi:10.11646/palaeoentomology.5.1.11. S2CID 247136916.
  29. Haenni, J.-P.; Ševčík, J. (2022). "Hoploscatopse prisca gen. et sp. nov., the first Scatopsidae (Diptera) from Mid-Cretaceous amber of Myanmar". Cretaceous Research. 137: Article 105246. Bibcode:2022CrRes.13705246H. doi:10.1016/j.cretres.2022.105246.
  30. Santos, D.; Carvalho, I. S.; Ribeiro, G. C. (2022). "A cranefly rendezvous: the highest known Mesozoic diversity of Tipulidae (Insecta: Diptera) in the Lower Cretaceous Crato Formation of Brazil". Cretaceous Research. 142. 105372. doi:10.1016/j.cretres.2022.105372. S2CID 252615739.
  31. Wang, Y.H.; Nel, A.; Fu, Y.Z.; Su, Y.T.; Cai, C.Y.; Liu, Y.M.; Gao, J.; Huang, D.Y. (2022). "New insect fossils discovered from the Lower Jurassic Sangonghe Formation at the Turpan Basin, Xinjiang, NW China". Palaeoentomology. 5 (2): 183–194. doi:10.11646/palaeoentomology.5.2.12.
  32. Azar, D.; Szwedo, J.; Maalouf, M.; Maalouf, R.; Maksoud, S. (2022). "Libanonemopalpus grimaldii, a new genus and species of Bruchomyiinae from Lower Cretaceous Lebanese amber (Diptera: Psychodidae)". Palaeoentomology. 5 (6): 569–578. doi:10.11646/palaeoentomology.5.6.7. S2CID 255078601.
  33. Azar, D.; Maalouf, M.; Maksoud, S. (2022). "Libanophlebotomites ramyi, a new genus and species of phlebotomine sandflies from Lower Cretaceous Lebanese amber (Diptera: Psychodidae: Phlebotominae)". Palaeoentomology. 5 (4): 340–346. doi:10.11646/palaeoentomology.5.4.6. S2CID 251869862.
  34. Szadziewski, R.; Grogan, W. L.; Sontag, E.; Bojarski, B. (2022). "A new genus of predatory midge in the Monohelea complex from Eocene Baltic amber (Diptera: Ceratopogonidae)" (PDF). Insecta Mundi. 0919: 1–9.
  35. Azar, D.; Maksoud, S. (2022). "Paleopsychoda jarzembowskii, a new Lower Cretaceous species of moth flies from Lebanese amber (Diptera: Psychodidae: Psychodinae)". Palaeoentomology. 5 (3): 262–268. doi:10.11646/palaeoentomology.5.3.9. S2CID 250161046.
  36. Rosse-Guillevic, S.; Peñalver, E.; Hammel, J. U.; León, A.; Solórzano-Kraemer, M. M. (2022). "The genus Plecia (Diptera: Bibionidae) in middle Miocene Dominican amber". Historical Biology: An International Journal of Paleobiology. 35 (5): 762–779. doi:10.1080/08912963.2022.2067755. S2CID 249444076.
  37. Peñalver, E.; Matamales-Andreu, R.; Nel, A.; Pérez-de la Fuente, R. (2022). "Early adaptations of true flies (Diptera) to moist and aquatic continental environments". Papers in Palaeontology. 8 (6). e1472. doi:10.1002/spp2.1472. S2CID 255125991.
  38. Men, Q.; Hu, Z.; Starkevich, P. (2022). "Pseudoerioptera, a new genus of Chioneinae (Diptera: Limoniidae) from the mid-Cretaceous Burmese amber". Cretaceous Research. 105418. doi:10.1016/j.cretres.2022.105418. S2CID 253497309.
  39. Wagner, R.; Agnihotri, P.; Singh, H. (2022). "A new species of Sycorax (Sycoracinae: Psychodidae) from the Lower Eocene amber of Tadkeshwar, Gujarat, India". Palaeoentomology. 5 (4): 319–326. doi:10.11646/palaeoentomology.5.4.4. S2CID 251861581.
  40. Lukashevich, E. D. (2022). "The oldest occurrence of Chaoboridae (Insecta: Diptera)". Russian Entomological Journal. 31 (4): 417–421. doi:10.15298/rusentj.31.4.12. S2CID 255692944.
  41. Azar, D.; Pielowska-Ceranowska, A.; Szwedo, J. (2022). "First record and two new species of the genus Trichomyia (Diptera: Psychodidae) from the Lower Miocene Dominican amber". Palaeoentomology. 5 (6): 579–598. doi:10.11646/palaeoentomology.5.6.8. S2CID 255076442.
  42. Lukashevich, E. D.; Vorontsov, D. D. (2022). "A new genus of net-winged midges (Diptera: Blephariceridae) from mid-Cretaceous amber of Myanmar". Cretaceous Research. 144. 105447. doi:10.1016/j.cretres.2022.105447. S2CID 254555727.
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  267. Nel, A.; Jouault, C. (2022). "The odonatan insects from the Paleocene of Menat, central France". Acta Palaeontologica Polonica. 67 (3): 631–648. doi:10.4202/app.00960.2021. S2CID 249299630.
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  297. Szwedo, J.; Bonino, E.; Tettamanzi, L.; Stroiński, A. (2022). "Yobuenahuaboshka gen. nov. of Colpopterini (Hemiptera: Fulgoromorpha: Nogodinidae) from the Lower Miocene Dominican Amber". Annales Zoologici. 72 (4): 991–1004. doi:10.3161/00034541ANZ2022.72.4.014. S2CID 254905688.
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  303. Chen, J.; Zhuo, D.; Yu, S.; Zheng, Y.; An, B.; Yang, F.; Ren, G. (2022). "Shore bug or minute litter bug: the systematic position of heteropteran genus Leptosaldinea from mid-Cretaceous Burmese amber". Cretaceous Research. 133: Article 105145. Bibcode:2022CrRes.13305145C. doi:10.1016/j.cretres.2022.105145.
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