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2,581 results for “amphibians”
Figure 8 from: Lee K-H, Chen T-H, Shang G, Clulow S, Yang Y-J, Lin S-M (2019) A check list and population trends of invasive amphibians and reptiles in Taiwan. ZooKeys 829: 85-130. https://doi.org/10.3897/zookeys.829.27535
Figure 8 A The population of Anolissagrei was first discovered in Jiayi (1), southwestern Taiwan. Subsequently, this lizard occurred long-distance dispersal to eastern (Hualien (2)) and northwestern (Hsinchu (3)) Taiwan B a mature male showing courtship exhibition on a trunk in the invasive region C an egg and a hatchling of A.sagrei. Photographed by Ren-Jay Wang (B) and Wen-Bin Gong (C).
Supplementary material 1 from: Díaz de la Vega-Pérez AH, Jiménez-Arcos VH, Centenero-Alcalá E, Méndez-de la Cruz FR, Ngo A (2019) Diversity and conservation of amphibians and reptiles of a protected and heavily disturbed forest of central Mexico. ZooKeys 830: 111-125. https://doi.org/10.3897/zookeys.830.31490
: Data type: measurement
Figure 2 from: Díaz de la Vega-Pérez AH, Jiménez-Arcos VH, Centenero-Alcalá E, Méndez-de la Cruz FR, Ngo A (2019) Diversity and conservation of amphibians and reptiles of a protected and heavily disturbed forest of central Mexico. ZooKeys 830: 111-125. https://doi.org/10.3897/zookeys.830.31490
Figure 2 Species richness. Number of amphibian and reptile species by habitat type (Cropland = C, Pine-Oak forest = POF, Pine forest = PF, Abies forest = AF, Alpine grassland = AG, Oak forest = OF, Human constructions = HC, Pine-Alnus forest = PAF).
Figure 1 from: Díaz de la Vega-Pérez AH, Jiménez-Arcos VH, Centenero-Alcalá E, Méndez-de la Cruz FR, Ngo A (2019) Diversity and conservation of amphibians and reptiles of a protected and heavily disturbed forest of central Mexico. ZooKeys 830: 111-125. https://doi.org/10.3897/zookeys.830.31490
Figure 1 Study area. Geographic delimitation and altitudinal curves of the volcano La Malinche, between the Mexican states of Tlaxcala and Puebla.
FIGURE 5 in Nidirana chapaensis (Bourret, 1937), one additional anuran species for the amphibian fauna of China
FIGURE 5. (A) Habitat of Nidirana chapaensis in Xichou, Wenshan Prefecture, Yunnan Province, China.
Figure 7 from: Ferreira RB, Mônico AT, da Silva ET, Lirio FCF, Zocca C, Mageski MM, Tonini JFR, Beard KH, Duca C, Silva-Soares T (2019) Amphibians of Santa Teresa, Brazil: the hotspot further evaluated. ZooKeys 857: 139-162. https://doi.org/10.3897/zookeys.857.30302
Figure 7 Amphibians from Santa Teresa: ALeptodactylusaff.latransBLeptodactylusaff.spixiCPhysalaemuscrombieiDPhysalaemuscuvieriEPhysalaemusmaculiventrisFChiasmocleiscapixabaGChiasmocleisschubartiHMyersiellamicropsIProceratophrysboieiJProceratophryslaticepsKProceratophryspaviotiiLProceratophrysschirchiMPipaaff.carvalhoiNSiphonopsannulatusOSiphonopshardyi. Photographs by T Silva-Soares (A, B, L, M, N), AT Mônico (C, D, E, G, H, J, K), RB Ferreira (F, I, O).
Figure 5 from: Ferreira RB, Mônico AT, da Silva ET, Lirio FCF, Zocca C, Mageski MM, Tonini JFR, Beard KH, Duca C, Silva-Soares T (2019) Amphibians of Santa Teresa, Brazil: the hotspot further evaluated. ZooKeys 857: 139-162. https://doi.org/10.3897/zookeys.857.30302
Figure 5 Amphibians from Santa Teresa: ADendropsophusminutusBDendropsophusruschiiCDendropsophusseniculusDItapotihylalangsdorffiiEOlolygonarduousFOlolygonargyreornataGOlolygonheyeriHOlolygonkautskyiIPithecopusaff.rohdeiJPhasmahylaexilisKPhyllomedusaburmeisteriLPhyllodyteskautskyiMPhyllodytesluteolusNPhyllodytesaff.luteolusOScinaxalter. Photographs by RB Ferreira (A, D, J), AT Mônico (B, C, E, F, G, I, K, N, O), T Silva-Soares (H), CZ Zocca (L, M).
Figure 4 from: Ferreira RB, Mônico AT, da Silva ET, Lirio FCF, Zocca C, Mageski MM, Tonini JFR, Beard KH, Duca C, Silva-Soares T (2019) Amphibians of Santa Teresa, Brazil: the hotspot further evaluated. ZooKeys 857: 139-162. https://doi.org/10.3897/zookeys.857.30302
Figure 4 Amphibians from Santa Teresa: ABoanacrepitansBBoanafaberCBoanapardalisDBoanapolytaeniaEBoanasemilineataFBokermannohylacaramaschiiGDendropsophusberthalutzaeHDendropsophusbipunctatusIDendropsophusbranneriJDendropsophusbromeliaceusKDendropsophusdecipiensLDendropsophuselegansMDendropsophusgiesleriNDendropsophushaddadiODendropsophusmicrops. Photographs by AT Mônico (A, C, D, E, F, H, L, M, N, O), RB Ferreira (B, G, I, J), ET Silva (K).
Figure 1 from: Ferreira RB, Mônico AT, da Silva ET, Lirio FCF, Zocca C, Mageski MM, Tonini JFR, Beard KH, Duca C, Silva-Soares T (2019) Amphibians of Santa Teresa, Brazil: the hotspot further evaluated. ZooKeys 857: 139-162. https://doi.org/10.3897/zookeys.857.30302
Figure 1 Location of the municipality of Santa Teresa, southeastern Brazil. Forest remnants from SOS Mata Atlântica (2014).
Figure 6 from: Ferreira RB, Mônico AT, da Silva ET, Lirio FCF, Zocca C, Mageski MM, Tonini JFR, Beard KH, Duca C, Silva-Soares T (2019) Amphibians of Santa Teresa, Brazil: the hotspot further evaluated. ZooKeys 857: 139-162. https://doi.org/10.3897/zookeys.857.30302
Figure 6 Amphibians from Santa Teresa: AScinaxcuspidatusBScinaxeurydiceCScinaxfuscovariusDScinaxhayiiEScinaxaff.pererecaFScinaxcf.x-signatusGTrachycephalusmesophaeusHTrachycephalusnigromaculatusICrossodactylusaff.gaudichaudiiJCrossodactylustimbuhyKHylodeslateristrigatusLCrossodactylodesbokermanniMCrossodactylodesizecksohniNLeptodactyluscupreusOLeptodactylusfuscus. Photographs by ET Silva (A, E, F), CZ Zocca (B, O), T Silva-Soares (C), AT Mônico (D, I, K, L), RB Ferreira (G, H, J, M), JFR Tonini (N).
Figure 2 from: Ferreira RB, Mônico AT, da Silva ET, Lirio FCF, Zocca C, Mageski MM, Tonini JFR, Beard KH, Duca C, Silva-Soares T (2019) Amphibians of Santa Teresa, Brazil: the hotspot further evaluated. ZooKeys 857: 139-162. https://doi.org/10.3897/zookeys.857.30302
Figure 2 Amphibians from Santa Teresa: AAllobatescapixabaBBrachycephalusalipioiCIschnocnemaabditaDIschnocnemacolibriEIschnocnemacf.nasutaFIschnocnemaaff.guentheriGIschnocnemaoeaHIschnocnemagr.parva sp. new 1 IIschnocnemagr.parva sp. new 2 JIschnocnemaverrucosaKDendrophryniscuscarvalhoiLRhinellacruciferMRhinellagranulosaNRhinelladiptychaOVitreoranaaff.eurygnatha. Photographs by JFR Tonini (A), CN Fraga (B), RB Ferreira (C, D, H, I, K), AT Mônico (E, G, J, K, L, M, N, O), T Silva-Soares (F).
Figure 3 from: Ferreira RB, Mônico AT, da Silva ET, Lirio FCF, Zocca C, Mageski MM, Tonini JFR, Beard KH, Duca C, Silva-Soares T (2019) Amphibians of Santa Teresa, Brazil: the hotspot further evaluated. ZooKeys 857: 139-162. https://doi.org/10.3897/zookeys.857.30302
Figure 3 Amphibians from Santa Teresa: AVitreoranauranoscopaBEuparkerellatridactylaCHaddadusbinotatusDThoropamiliarisEZachaenuscarvalhoiFAdelophryneglandulataGFritzianaaff.fissilisHFritzianatonimiIGastrothecamegacephalaJAparasphenodonbrunoiKAplastodiscuscavicolaLAplastodiscusaff.eugenioiMAplastodiscusweygoldtiNBoanaalbomarginataOBoanaalbopunctata. Photographs by AT Mônico (A, C, D, G, H, K, L, O), RB Ferreira (B, E, F, I, N), C Zocca (J), T Silva-Soares (M).
Figure 2 from: Medina D, Ibáñez R, Lips KR, Crawford AJ (2019) Amphibian diversity in Serranía de Majé, an isolated mountain range in eastern Panamá. ZooKeys 859: 117-130. https://doi.org/10.3897/zookeys.859.32869
Figure 2 Individual-based rarefaction curves showing the estimated richness as a function of the upper 95% confidence interval (CI) calculated by the function Mao Tao. A Rarefaction curve combining all data obtained for the Serranía de Majé transect B rarefaction curves for low (120 – 150 m), intermediate (797 m), and high elevation (1,240–1,365 m) survey sites.
Figure 3 from: Medina D, Ibáñez R, Lips KR, Crawford AJ (2019) Amphibian diversity in Serranía de Majé, an isolated mountain range in eastern Panamá. ZooKeys 859: 117-130. https://doi.org/10.3897/zookeys.859.32869
Figure 3 Site-level dendrogram based on Jaccard dissimilarities and built with the unweighted pair-group method based on arithmetic averages (UPGMA). This analysis was based on all post-metamorphic amphibians captured at each site.
Figure 4 from: Medina D, Ibáñez R, Lips KR, Crawford AJ (2019) Amphibian diversity in Serranía de Majé, an isolated mountain range in eastern Panamá. ZooKeys 859: 117-130. https://doi.org/10.3897/zookeys.859.32869
Figure 4 Diagram showing a decrease with elevation in the similarities of amphibian species assemblages associated with sites from the Serranía de Piedras-Pacora mountain range and the isolated Serranía de Majé mountain range. The numbers represent the shared species between sites (N), Jaccard similarity coefficients (N) and total number of species at the site level (N). Each color represents an elevation category, where the lowlands (< 400 m) are represented in yellow, mid-elevation sites (400–800 m) in green, and highlands (> 800 m) in blue. NA = no data available.
Figure 1 from: Medina D, Ibáñez R, Lips KR, Crawford AJ (2019) Amphibian diversity in Serranía de Majé, an isolated mountain range in eastern Panamá. ZooKeys 859: 117-130. https://doi.org/10.3897/zookeys.859.32869
Figure 1 Map showing the location of the study sites in the Serranía de Majé and the Serranía de Piedras-Pacora across the valley of the Chepo River.
Supplementary material 1 from: Medina D, Ibáñez R, Lips KR, Crawford AJ (2019) Amphibian diversity in Serranía de Majé, an isolated mountain range in eastern Panamá. ZooKeys 859: 117-130. https://doi.org/10.3897/zookeys.859.32869
: Data type: specimen list.
Fig. 3. Bayesian Inference tree constructed from COX1 in Ecological and geographical speciation in Lucilia bufonivora: The evolution of amphibian obligate parasitism
Fig. 3. Bayesian Inference tree constructed from COX1 (mtDNA) sequence data. Each specimen is labelled with the species name and location abbreviation as indicated in Table 1. Sequences obtained from BOLD/GenBank are also annotated with their respective accession codes. Green text corresponds to European samples of Lucilia bufonivora; red represents Lucilia elongata; purple represents Canadian L. bufonivora; orange represents Lucilia silvarum. Scale bar represents expected changes per site. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 4 in Ecological and geographical speciation in Lucilia bufonivora: The evolution of amphibian obligate parasitism
Fig. 4. Bayesian Inference tree constructed from per gene (nDNA) sequence data. Each specimen is labelled with the species name and location abbreviation as indicated in Table 1. Green text corresponds to European samples of Lucilia bufonivora; red represents Lucilia elongata; purple represents Canadian L. bufonivora; orange represents Lucilia silvarum. Scale bar represents expected changes per site. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Figure 3 in Amphibians of Anjudiva Archipelago West Coast, Arabian Sea, India
Figure 3. Anurans found in islands: A. Euphlyctis jaladhara (Dinesh et al., 2022); B. Hoplobatrachus tigerinus (Daudin, 1802).
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