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The taxonomic status of recently described Isophya taxa from Serbia (Tettigoniidae, Phaneropterinae)
(2024)
During recent decades, increasing research of the taxonomy of the genus Isophya resulted in taxonomic descriptions of several new species. The delimitation of these species is mainly based on oscillographic song analysis of the male song in combination with morphological characters, such as the shape of male cerci, tegmina and ovipositor. In the present paper, we used an integrative taxonomic approach in order to resolve the status of four recently described Isophya taxa from Serbia. Based on our molecular and bioacoustic analyses, all analyzed taxa belong to a single species: Isophya modestior. The majority of the morphological characters used to differentiate the taxa showed strong intra- and interpopulational variability, proving that describing new species within the genus Isophya should not rely on morphological characters alone, but needs to consider bioacoustic analyses as the main tool and a larger series of specimens.
Neopanorpa van der Weele, 1909 is the second largest genus in Panorpidae, and over 170 Oriental species have been reported hitherto. In this paper, we describe two new species: Neopanorpa luojishana sp. nov. and Neopanorpa xingmini sp. nov. from Southwest China. We also report the first discovery of the male of Neopanorpa ocellaris (Navás, 1908) from Guangxi and Guizhou, China, a species recorded from Sikkim previously. Neopanorpa brevivalvae Chou & Wang, 1988 is synonymized with Neopanorpa lungtaushana Cheng, 1957. In addition, Neopanorpa furcula nom. nov. is proposed for Neopanorpa furcata Zhou, 2005, a junior homonym preoccupied by Neopanorpa furcata (Hardwicke, 1825). The biogeographical implications of some Neopanorpa species are discussed in brief.
A number of nomenclatural issues regarding Neotropical Scarabaeoidea are addressed. Athyreus soesilae Makhan, 2008 is synonymized with Neoathyreus (Neoathyreus) excavatus (Laporte, 1840) (Geotrupidae: Bolboceratinae: Athyreini). Scalmus Zang, 1905 is replaced with its senior synonym Neleuops Kuwert, 1891, nec Neleurops Kuwert, 1891, and the four species it presently contains are thus transferred to Neleuops (Passalidae: Passalinae: Passalini). The spelling of the name Oxysternon oberthueri Olsoufi eff, 1924, a junior synonym of Oxysternon (Oxysternon) conspicillatum (Weber, 1801), is fi xed (Scarabaeidae: Scarabaeinae: Phanaeini). The year of description of Oxysternon (Oxysternon) festivum (Linnaeus, 1758) is corrected, its existing lectotype invalidated, and a new lectotype designated (Scarabaeidae: Scarabaeinae: Phanaeini). The correct spelling of Phanaeus (Phanaeus) prasinus trinidadens Arnaud, 2001 and Phanaeus (Phanaeus) prasinus joliyi Arnaud, 2001 is discussed (Scarabaeidae: Scarabaeinae: Phanaeini). The seniority of Chlorota aulica Burmeister, 1844 over Chlorota metallica Burmeister, 1844 is restored (Scarabaeidae: Rutelinae: Rutelini). The year of description of Rutela lineola (Linnaeus, 1758) is corrected and a lectotype is designated (Scarabaeidae: Rutelinae: Rutelini). Cyclocephala aulustjaorum nomen novum is proposed as a replacement name for the preoccupied name Cyclocephala brevis Höhne, 1923 (Scarabaeidae: Dynastinae: Cyclocephalini). The spelling of the generic name Harposceles Burmeister, 1847 is fi xed (Scarabaeidae: Dynastinae: Cyclocephalini). The incorrect subsequent spelling Stenocrates haackae Ratcliffe, 1977 is preserved (Scarabaeidae: Dynastinae: Cyclocephalini). The name Scarabaeus simson Linnaeus, 1767 is invalidated as a synonym of Megasoma actaeon (Linnaeus, 1758) (Scarabaeidae: Dynastinae: Dynastini). The spelling of the generic name Coelosis Hope, 1837 is found to be correct (Scarabaeidae: Dynastinae: Oryctini). The validity of Steyskal’s emendation of the name Megaceropsis quadridentata Dechambre, 1976 is confi rmed (Scarabaeidae: Dynastinae: Oryctini). The lectotype of Podischnus agenor (Olivier, 1789) is invalidated and a new lectotype is designated (Scarabaeidae: Dynastinae: Oryctini).
Phylogenetic inference, based on five molecular markers (COI, 28S, AATS, 12S, PGD), corroborates the synonymy of the flightless genera Pieltainia Arias, 1919 and Ariasella Gil, 1923 with Tachydromia Meigen, 1803. The secondary structure of the 28S rRNA gene is used for the first time in this family to align the multiple sequences. Molecular and morphological data are largely congruent for all known species of flightless Tachydromia. This paper treats ten western Mediterranean species (nine Iberian and one Italian) in detail, including the description of four new species: T. ebejeri Gonçalves, Grootaert & Andrade sp. nov., T. stenoptera Gonçalves, Grootaert & Andrade sp. nov., T. cantabrica Gonçalves, Grootaert & Andrade sp. nov. and T. nigrohirta Gonçalves, Grootaert & Andrade sp. nov. The male of Tachydromia pieltaini (Gil Collado, 1936) and the female of Tachydromia apterygon Plant & Deeming, 2006 are described for the first time, while a lectotype is assigned to Tachydromia pandellei (Séguy, 1941). A key to all non-macropterous Tachydromia is supplied. Knowledge on the geographic distribution of most species is considerably enhanced. The mating behaviour of Tachydromia semiaptera (Gil Collado, 1923) and Tachydromia iberica (Arias, 1919) is documented for the first time, and we propose a change in the definition of terms apterous and micropterous to properly accommodate the diversity of wing states in this cluster of species.
The Brazilian endemic irroratus species group of the genus Inca (Scarabaeidae, Cetoniinae) is defined and described. This species group is composed of Inca irroratus Chevrolat, 1833 and two new species: I. axeli sp. nov. and I. neglectus sp. nov. One new synonym is proposed: I. irroratus Chevrolat, 1833 = I. burmeisteri Burmeister, 1844 syn. nov. To guarantee nomenclatural stability, a neotype is designated for I. irroratus and a lectotype for I. burmeisteri. A key to all species of Inca and a map with the distribution of the irroratus species group are provided.
A taxonomic study on twenty-nine species of jumping spiders from South China is presented. Twenty new species are diagnosed and described: Heliophanoides proszynskii Wang, Mi & Peng sp. nov. (♂♀), Myrmage lii Wang, Mi & Peng sp. nov. (♂♀), Myrmarachne hamata Wang, Mi & Peng sp. nov. (♂), M. xingrenensis Wang, Mi & Peng sp. nov. (♂♀), M. yinae Wang, Mi & Peng sp. nov. (♂♀), Phintella fodingensis Wang, Mi & Peng sp. nov. (♂♀), P. jiugongensis Wang, Mi & Peng sp. nov. (♂♀), P. liae Wang, Mi & Peng sp. nov. (♂), P. liui Wang, Mi & Peng sp. nov. (♂♀), P. subpanda Wang, Mi & Peng sp. nov. (♂♀), P. wandae Wang, Mi & Peng sp. nov. (♂♀), Ptocasius dian Wang, Mi & Peng sp. nov. (♂♀), P. subhubeiensis Wang, Mi & Peng sp. nov. (♂♀), Rhene elongata Wang, Mi & Peng sp. nov. (♂♀), Stertinius donglinsiensis Wang, Mi & Peng sp. nov. (♂♀), S. logunovi Wang, Mi & Peng sp. nov. (♂), Synagelides fanjingensis Wang, Mi & Peng sp. nov. (♂♀), Thyene xingrenensis Wang, Mi & Peng sp. nov. (♂♀), Toxeus fodingensis Wang, Mi & Peng sp. nov. (♂♀), and Yaginumaella zabkai Wang, Mi & Peng sp. nov. (♂♀). The genus Heliophanoides Prószyński, 1992 is redefined and two new combinations, transferred from the genus Phintella Strand, 1906, are proposed: H. tengchongensis (Lei & Peng 2013) comb. nov., and H. longlingensis (Lei & Peng 2013) comb. nov. The unknown sexes of the following six species are described for the first time: Phintella fanjingshan Li, Wang, Zhang & Chen, 2019, P. panda Huang, Wang & Peng, 2015, P. pygmaea (Wesołowska, 1981), P. sancha Cao & Li, 2016, P. wulingensis Huang, Wang & Peng, 2015, and Rhene yunnanensis (Peng & Xie, 1995). Brettus anchorum Wanless, 1979 and Phintella aequipeiformis Żabka, 1985 are newly recorded from China. Icius indicus (Simon, 1901) comb. nov. (transferred from Phintella) is re-described. Phintella levii Huang, Wang & Peng, 2015 is assigned to be a synonym of P. arcuata Huang, Wang & Peng, 2015. Thyene zhangi (Peng, Yin, Yan & Kim, 1998) comb. nov. is transferred from Plexippoides Prószyński, 1984, and T. bilaguncula (Xie & Peng, 1995) comb. nov. is transferred from Ptocasius Simon, 1885. Diagnostic illustrations of the twenty-nine species and the distributional maps of the studied specimens are provided.
An annotated list, including information on type species, distribution, and number of species, is provided for all of the non-flea-beetle galerucine genera known to occur in the New World (tribes Galerucini, Metacyclini, and Luperini). A diagnostic key to the genera is provided. Habitus illustrations are provided for most genera. The following new genera are proposed: Amplioluperus gen. nov., Cornuventer gen. nov., Geethaluperus gen. nov., Megarhabda gen. nov., Mexiluperus gen. nov., Monoaster gen. nov., Pyesexora gen. nov., Texiluperus gen. nov., Trachyelytron gen. nov. and Yingabruxia gen. nov. The following new taxonomic placements are proposed: Microbrotica Jacoby, 1887 is transferred from the tribe Metacyclini to the section Diabroticites Chapuis, 1875 (tribe Luperini, subtribe Diabroticina Chapuis, 1875); Pteleon Jacoby, 1888 is transferred from the section Exosomites Wilcox, 1973 (tribe Luperini, subtribe Luperina Gistel, 1848) to the section Scelidites Chapuis, 1875 (subtribe Luperina). The following new combinations are proposed: Luperodes histrio Horn, 1895, Luperus maculicollis LeConte, 1884, and Scelolyperus cyanellus Horn, 1895 are transferred from Pseudoluperus Beller & Hatch, 1932 to Amplioluperus; Luperodes tuberculatus Blake, 1942 is transferred from Pseudoluperus to Cornuventer; Luperus flavofemoratus Jacoby, 1888 is transferred from Pseudoluperus to Geethaluperus; Trirhabda obscurovittata Jacoby, 1886 is transferred from Trirhabda LeConte, 1865 to Megarhabda; Cneorane nigripes Allard, 1889 is transferred from Scelida Chapuis, 1875 to Metacycla Baly, 1861; Luperodes wickhami Horn, 1893 and Luperus dissimilis Jacoby, 1888 are transferred from Pseudoluperus to Mexiluperus; Scelolyperus tenuimarginatus Bowditch, 1925, is transferred from Scelida to Mimastra Baly, 1865 and is synonymized with Mimastra semimarginata Jacoby, 1886 syn. nov.; Pseudoluperus fulgidus Wilcox, 1965 and Pseudoluperus linus Wilcox, 1965 are transferred from Pseudoluperus to Monoaster; Crioceris detrita detrita Fabricius, 1801, Malacosoma detrita laevicollis Jacoby, 1887, Pyesia detrita meridionalis Bechyné, 1958, Pyesia elytropleuralis elytropleuralis Bechyné, 1958, and Pyesia elytropleuralis subalutacea Bechyné, 1958 are transferred from Pyesia Clark, 1865 to Pyesexora; Luperodes spretus Horn, 1893 and Luperodes texanus Horn, 1893 are transferred from Pseudoluperus to Texiluperus; Chthoneis smaragdipennis Jacoby, 1888 is transferred from Platymorpha Jacoby, 1888 to Trachyelytron; Luperus albomarginatus Jacoby, 1888 is transferred from Pseudoluperus to Trichobrotica Bechyné, 1956; and Galleruca sordida LeConte, 1858, Monoxia apicalis Blake, 1939, Monoxia batisia Blatchley, 1917, and Monoxia brisleyi Blake, 1939 are transferred from Monoxia LeConte, 1865 to Yingabruxia; all comb. nov. Pseudoluperus decipiens (Horn, 1893), originally described in Scelolyperus Crotch, 1874, is reduced to a junior synonym of Pseudoluperus longulus (LeConte, 1857), syn. nov. Trachyscelida dichroma Viswajyothi & Clark is proposed as a nom. nov. for Racenisa bicolor Bechyné, 1958 (not Agelastica bicolor LeConte, 1884), as both species are currently placed in the genus Trachyscelida Horn, 1893.
A taxonomic revision of the cichlid genus Astatoreochromis is presented. Eighteen meristic and 23 morphometric measurements were taken on 185 individuals, including type specimens. While fin counts separate populations from the Lake Victoria region (Astatoreochromis alluaudi) from those of the Rusizi and Malagarazi rivers in the Lake Tanganyika basin (A. vanderhorsti and A. straeleni respectively), clear differentiation was not detected between the latter two. Mann-Whitney U-tests on specimens of comparable size from the two Tanganyika populations revealed significant differences in specimens < 75 mm SL, mainly in pharyngeal jaw proportions, but also in some other measurements on the head and body. However, these differences were not detected in specimens > 75 mm SL and Astatoreochromis vanderhorsti is herein considered a junior synonym of A. straeleni. A redescription of the two valid species of Astatoreochromis, A. alluaudi and A.straeleni, is provided.
Seven species of Drapetes Megerle (Coleoptera: Elateridae) are recognized from northern North America. Drapetes chiricahua new species is described from southeastern Arizona and north-central New Mexico. Drapetes parallelus Van Dyke is a senior homonym of Drapetes paralellus Cobos by variant spelling, and a new synonym of Drapetes cylindricus Fall. Drapetes paralellus Cobos is replaced with Drapetes cobosi new name. Drapetes clarki Bonvouloir is not a North American species and is given a redesignated type locality in Brazil. Drapetes plagiatus (Boheman) is not a California species and is given a redesignated type locality in Panama. New state records are reported for Drapetes exstriatus (Say) from Arkansas, Colorado, Nebraska, and Oklahoma. A key to the species of the region is provided and each species is illustrated.
Als Ergebnis eines aufwendigen, aber erfolgreichen Kreuzungsexperimentes von Acalles aeonii Wollaston 1864 x Acalles bodegensis Stüben 2000 wird folgende Synonymie endgültig bewiesen: Acalles aeonii Wollaston 1864 = Acalles bodegensis Stüben 2000 syn. nov. Zucht und Kreuzung der genannten Arten werden über zahlreiche Generationen hinweg an der Entwicklungspflanze Aeonium holochrysum W. & B. detailliert beschrieben und die Ergebnisse diskutiert. Mit einer ausführlichen Diskussion zur Notwendigkeit von Kreuzungsexperimenten in der taxonomisch-systematischen Forschung.