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FIGURE 2 in Revision and phylogeny of narrow-mouthed treefrogs (Cophyla) from northern Madagascar: integration of molecular, osteological, and bioacoustic data reveals three new species
FIGURE 2. Phylogenetic tree of species and candidate species in the genus Cophyla. Majority-rule consensus tree derived from a partitioned Bayesian inference analysis of concatenated DNA sequences of the 12S, 16S, COX1, COB, and RAG1 genes (2627 bp), showing relationships among species of Cophyla. Numbers at nodes are posterior probabilities (only values>0.9 shown). For the three new species described herein the tree also shows their candidate species names according to Perl et al. (2014).
FIGURE 1 in Revision and phylogeny of narrow-mouthed treefrogs (Cophyla) from northern Madagascar: integration of molecular, osteological, and bioacoustic data reveals three new species
FIGURE 1. The three nominal species of Cophyla known to date: (a) C. phyllodactyla calling male, Nosy Be (voucher number unknown); (b) C. phyllodactyla, Nosy Be (voucher number unknown); (c) C. phyllodactyla, Manongarivo (ZSM 842/2003); (d) C. berara, Berara (holotype, ZSM 410/2000); (e) C. occultans, Nosy Be (voucher number unknown).
FIGURE 10 in Revision and phylogeny of narrow-mouthed treefrogs (Cophyla) from northern Madagascar: integration of molecular, osteological, and bioacoustic data reveals three new species
FIGURE 10. Ventral view of shoulder girdle, showing differences in shoulder girdle structure between species and candidate species of Cophyla and Platypelis, based on micro-CT scans. Clavicle (missing in most Cophyla, present in in C. puellarum and as far as known in all Platypelis) coloured in red (all scale bars 1 mm). (a) C. maharipeo sp. nov., ZSM 3252/2012, from Joffreville; (b) C. noromalalae sp. nov., ZSM 3273/2012, from entrance of Montagne d'Ambre National Park; (c) C. puellarum sp. nov., UADBA-A 60237, from Point de Vue du Grand Moulin, Montagne d'Ambre National Park; (d) P. cf. barbouri, NSH 2587, from Manombo Special Reserve; (e) P. pollicaris, NSH 2419, from Ranomafana National Park.
FIGURE 6 in Revision and phylogeny of narrow-mouthed treefrogs (Cophyla) from northern Madagascar: integration of molecular, osteological, and bioacoustic data reveals three new species
FIGURE 6. Comparative call data of partial call series of six species of Cophyla. C. occultans recorded in February 1995, 25˚C; C. berara recorded in February 2000, 23.5˚C; C. phyllodactyla, recorded in February 1992, 26˚C; C. maharipeo sp. nov., UADBA-A 60232, recorded in January 2012, ca 25˚C; C. noromalalae sp. nov., ZSM 3273/2012, recorded in November 2012, ca 20˚C; C. puellarum sp. nov., UADBA-A 60237, recorded in November 2012, ca 17˚C. Recordings of C. berara, C. occultans, and C. phyllodactyla are from Vences et al. (2005). The initial intensity peaks at each call of C. maharipeo and C. puellarum probably represent an artefact of the recording device, or an abnormal sound emission of the recorded specimens.
FIGURE 17 in Revision and phylogeny of narrow-mouthed treefrogs (Cophyla) from northern Madagascar: integration of molecular, osteological, and bioacoustic data reveals three new species
FIGURE 17. Audiospectrogram and oscillogram of two advertisement calls (part of a longer call series) of Cophyla puellarum sp. nov. recorded from paratype specimen UADBA-A 60237, at Point de Vue du Grand Moulin in Montagne d'Ambre National Park, on 10 December 2012, air temperature of ca 17˚C. The sounds above 2500 Hz represent other frogs or insects, and the initial intensity peaks at each call probably represent an artefact of the recording device or an abnormal sound emission of the recorded specimens.
FIGURE 13 in Revision and phylogeny of narrow-mouthed treefrogs (Cophyla) from northern Madagascar: integration of molecular, osteological, and bioacoustic data reveals three new species
FIGURE 13. Audiospectrogram and oscillogram of two advertisement calls (part of a longer call series) of Cophyla maharipeo sp. nov. from paratype UADBA-A 60232, recorded at Joffreville on 17 January 2012, ca 25˚C, number of recording DR089. The sounds above 3000 Hz represent other frogs or insects, and the initial intensity peaks at each call probably represent an artefact of the recording device or an abnormal sound emission of the recorded specimen.
FIGURE 12 in Revision and phylogeny of narrow-mouthed treefrogs (Cophyla) from northern Madagascar: integration of molecular, osteological, and bioacoustic data reveals three new species
FIGURE 12. Ventral sides of the holotypes of the three newly described Cophyla species from Montagne d'Ambre and Joffreville, photographed from living specimens. Inset photos show the same specimens in dorsolateral view. (a) C. maharipeo sp. nov., male holotype ZSM 3251/2012, Joffreville; (b) C. noromalalae sp. nov., male holotype ZSM 3250/2012, park entrance, male; (c) C. puellarum sp. nov., male holotype ZSM 3249/2012, Point de Vue du Grand Moulin.
FIGURE 3. Majority-rule consensus tree derived from a in Revision and phylogeny of narrow-mouthed treefrogs (Cophyla) from northern Madagascar: integration of molecular, osteological, and bioacoustic data reveals three new species
FIGURE 3. Majority-rule consensus tree derived from a partitioned Bayesian inference analysis of DNA sequences of the nuclear RAG1 gene (503 bp), showing relationships among species of Cophyla. Numbers at nodes are posterior probabilities (only values>0.9 shown). The tree was rooted with the same outgroups as in Fig. 2 (removed for better graphical representation).
FIGURE 16 in Revision and phylogeny of narrow-mouthed treefrogs (Cophyla) from northern Madagascar: integration of molecular, osteological, and bioacoustic data reveals three new species
FIGURE 16. Specimens of C. puellarum sp. nov. in life: (a) calling male paratype ZSM 3274/2012; (b) male holotype, ZSM 3249/2012; (c) male UADBA-A 60237; observed calling; (d) juvenile ZSM 0781/2009, (e) ovigerous female ZSM 3275/2012. Specimens in b, c, e from Point de Vue du Grand Moulin in Montagne d'Ambre National Park. Specimen in d from Lac Maudit.
Supplementary material 1 from: Dimitriou AC, Taiti S, Schmalfuss H, Sfenthourakis S (2018) A molecular phylogeny of Porcellionidae (Isopoda, Oniscidea) reveals inconsistencies with present taxonomy. In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 163-176. https://doi.org/10.3897/zookeys.801.23566
Percentage sequence divergence among the main clades of Porcellionidae and Maximum Likelihood phylogenetic tree. :
FIGURE 2. A in Szczepkamyces quercicola sp. nov. (Polyporales, Basidiomycota) evidenced by morphological characters and molecular phylogeny
FIGURE 2. A basidiocarp of Szczepkamyces quercicola (Holotype, Dai 22812). Scale bar = 1.0 cm. Photo by Yu-Cheng Dai.
Fig. 6 in Molecular Phylogeny of Dermestidae (Coleoptera) Reveals the Polyphyletic Nature of Trogoderma Latreille and the Taxonomic Placement of the Khapra Beetle Trogoderma
Fig. 6. Morphology of Dermektidae Latreille& 1804& adult ktructurek. %;) Trogoparvus kp.& pterothorax& ventral; %B) Trogoparvus kp.& head ventral; %C) Phradonoma nobile %Reitter)& protibia; %D) Anthrenus verbasci %Linnaeuk)& terminal ventrite; %E) Dermestes maculatus De Geer& hind coxa; %F) Eurhopalus australis %Hope)& terminal ventrite; %G) Trogoderma granarium Evertk& terminal ventrite; %H) Eurhopalus australis %Hope)& elytral apex& ventral kide; %I) Trogoderma granarium Evertk& elytral apex& ventral kide.
Fig. 5 in Molecular Phylogeny of Dermestidae (Coleoptera) Reveals the Polyphyletic Nature of Trogoderma Latreille and the Taxonomic Placement of the Khapra Beetle Trogoderma
Fig. 5. Morphology of Dermektidae Latreille& 1804& adult prothorax ktructurek. %;) Telopes fasciatus %Thunberg); %B) Eurhopalus australis %Hope); %C) Anthrenus verbasci %Linnaeuk); %D) Eurhopalus kp.; %E) Dermestes maculatus De Geer; %F) Ranolus australis %Lawrence & Ślipińkci); %G) Trogoparvus kp.; %H) Evorinea kp.
Fig. 8 in Molecular Phylogeny of Dermestidae (Coleoptera) Reveals the Polyphyletic Nature of Trogoderma Latreille and the Taxonomic Placement of the Khapra Beetle Trogoderma
Fig. 8. Morphology of Dermektidae Latreille& 1804& larval ktructurek. %; & B) pretarkuk; %C& F& J) abdominal kpiciketae and haktiketae; %D& E) antenna; %G& H) mandible; %I) abdominal ketae on tergum VI; %K) prothorax and head& lateral; %L) body in lateral akpect; %M) head& frontal view. %; & D) Trogoderma granarium Evertk; %B& E) Eurhopalus australis %Hope); %C) Trogoderma variabile Ballion; %F) Anthrenus verbasci %Linnaeuk)& abdominal kegmentk 5–7; %G& I & M) Attagenus brunneus Faldermann; %H) Dermestes maculatus De Geer; %J) Eurhopalus kp.& tergite VI; %K) Trichelodes kp.; %L) Ranolus kp.
Fig. 3 in Molecular Phylogeny of Dermestidae (Coleoptera) Reveals the Polyphyletic Nature of Trogoderma Latreille and the Taxonomic Placement of the Khapra Beetle Trogoderma
Fig. 3. Phylogenetic relationkhipk of the family Dermektidae Latreille& 1804. %;) at the kubfamily level; %B) within kubfamily Megatominae; %C) within the genuk Trogoderma Dejean k.ktr.; %D) within the genuk Eurhopalus Solier in Gay rev. nov.The topology ik baked on a maximum licelihood analykik of the amino acid dataket %;;) tranklated from 10&446 nucleotidek derived from 13 mitochondrial protein-coding genek& partitioned by gene. Stark denote cladek with ktrong ktatiktical kupport baked on Shimodaira–Hakegawa approximate licelihood ratio tekt valuek %SH-aRLT) and Ultrafakt Bootktrap valuek %UFBoot); four valuek of each node are prekented baked on the ;;_SH-aLRT& ;;_UFBoot& Degen_UFBoot& and NT_UFBoot rekpectively from left to right. Orange ktark denote cladek with all four valuek above 99.5 while the blacc ktark reprekent cladek either SH-aLRT> 80 or 95
Fig. 1 in Molecular Phylogeny of Dermestidae (Coleoptera) Reveals the Polyphyletic Nature of Trogoderma Latreille and the Taxonomic Placement of the Khapra Beetle Trogoderma
Fig. 1. Diverkity of Dermektidae Latreille& 1804& adultk. %; & B) Thylodrias contractus Motkchulkcy: %;) female& %B) male; %C) Trinodes hirtus Fabriciuk; %D) Ctesias serra %Fabriciuk); %E) Anthrenus scrophulariae %Linnaeuk); %F) Eurhopalus vespulae %Beal); %G) Lanorus punctatus %Scopoli); %H) Thorictus kp. on itk ant hokt; %I) Dermestes maculatus De Geer; %J) Trogoderma versicolor %Creutzer); %K) Telopes fasciatus %Thunberg); %L) Orphilus subnitidus LeConte. Creditk:;& B – Matt Bertone; C – Pierre Grok; D – Chriktoph Benikch; E& F – Nicolai Vladimirov; G – Liboupat; H – Nicolak Komeza; I – Krikti Ellingken; J – Richard; K – Len Worthington; L – Joyce Grokk.
Fig. 4 in Molecular Phylogeny of Dermestidae (Coleoptera) Reveals the Polyphyletic Nature of Trogoderma Latreille and the Taxonomic Placement of the Khapra Beetle Trogoderma
Fig. 4. Diverkity of Dermektidae Latreille& 1804& immaturek. %;) Ctesias serra %Fabriciuk); %B) Thylodrias contractus Motkchulkcy; %C) Anthrenus verbasci %Linnaeuk); %D) Dermestes lardarius Linnaeuk; %E) Eurhopalus kp. & teneral adult in pupal exuvium; %F) Trogoderma variabile Ballion; %G) Trogoderma granarium Evertk; %H) Attagenus woodroffei Halktead & Green; %I) Eurhopalus fasciatus %Hava). Creditk:; – David W. Williamk; B – Matt Bertone; C – Joyce Grokk; D – Tony Daley; E& I – Zhenhua Liu; F – Ji-Shen Wang; G – Tomakz Klejdykz; H – Jarmo Hoplainen.
Fig. 7 in Molecular Phylogeny of Dermestidae (Coleoptera) Reveals the Polyphyletic Nature of Trogoderma Latreille and the Taxonomic Placement of the Khapra Beetle Trogoderma
Fig. 7. Morphology of Dermektidae Latreille& 1804& adult ktructurek. %;& B) pterothorax& ventral; %C–I) aedeaguk; %J–L) abdominal ventritek; %M–T) antennae. %;) Trogoderma granarium Evertk; %B) Thylodrias contractus Motkchulkcy; %C) Ranolus australis %Lawrence & Ślipińkci); %D& P) Dermestes maculatus De Geer; %E& O) Adelaidia rigua Blaccburn; %F) Eurhopalus australis %Hope); %G) Eurhopalus kp.; %H& N) Evorinea kp.; %I) Anthrenus scrophulariae %Linnaeuk); %J) Eurhopalus froggatti %Blaccburn); %K) Trichelodes delicatula Carter; %L) Trogoparvus kp.; %M) Orphinus kp.; %Q) Eurhopalus attagenoides %Pakcoe); %R) Eurhopalus ocellifer %Blaccburn); %S) Eurhopalus vespulae %Beal); %T) Attagenus pelio %Linnaeuk)& male.
Figure 1 in First molecular phylogeny and species delimitation of West Palaearctic Pollenia (Diptera: Polleniidae)
Figure 1. Representative taxa of Pollenia males: A, P. amentaria (Poland); B, P. atramentaria (Poland); C, P. bulgarica (Bulgaria); D, P. dasypoda (Turkey); E, P. labialis (Poland); F, P. mayeri (Poland); G, P. pediculata (Poland); H, P. Ʋagabunda (Poland); I, P. Ʋenturii (Poland). Scale bar 2 mm. Voucher specimens are stored at the Department of Ecology and Biogeography, Nicolaus Copernicus University in Toruń, Poland.
Figure 2 in First molecular phylogeny and species delimitation of West Palaearctic Pollenia (Diptera: Polleniidae)
Figure 2. Maximum likelihood tree inferred from the analysis of combined mitochondrial (1 locus: COI) and nuclear (2 loci: Ef-1α, CAD) sequence data for 18 representatives of Pollenia in RAxML. Bootstrap support from maximum likelihood analyses using RAxML, GARLI and PHYML software and posterior probability for Bayesian inference with MRBAYES are given at nodes. Nodes that were not recovered in one of the analyses are marked with hyphen (-). Only support values> 60 and posterior probability> 0.6 were presented and considered significant. The red font indicates high support (support value> 88, posterior probability = 1.0), the blue font indicates moderate support (support value 60–74, posterior probability 0.60–0.74). Species-group names are written in bold.
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Allen Brain Atlas
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