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104 results for “tiger moth”
Data from: Evolutionary potential and constraints in an aposematic species: Genetic correlations between warning coloration and fitness components in wood tiger moths
<p>Phenotypic data and pedigrees of two laboratory populations of wood tiger moths (<em>Arctia plantaginis</em>) of Finnish (=FIN) and Estonian (=EST) ancestry.</p> <p><strong>Pedigree: </strong><br>ID: individual identifier<br>sire = Father<br>dam=mother</p> <p><strong>Pheno.data: </strong><br>ID: individual identifier<br>Sex: 1=male; 2=female<br>hatchingdate: date when larva hatched<br>pupadate: date of pupation<br>adultdate: date of exclusion<br>Pupa.Weight: weight of pupa [mg]<br>Female.Colour = hindwing colour of females. In this species hindwing colour in females varies continuously from yellow to red. It was quantified by visual matching of hinwdings against a colour scale ranging from 1 = yellow to 6 = red. <br>Signal.Size = larva signal size. Larvae show an orange patch of variable size on the back of their black body. The size is given as number of segments<br>Egg.N = egg number produced by the individual<br>Off.N = offspring number. Larvae were counted 2-3 weeks after egg laying</p> <p> </p>
Figures 1-2 in A new genus and two new species of arctiine tiger moth (Noctuidae, Arctiinae, Arctiini) from Costa Rica
Figures 1-2. Adult habitus of Leichosila gen. n. 1. Leichosila talamanca sp. n., male holotype. 2. Leichosila wagneri sp. n., male holotype.
Figures 3-5 in A new genus and two new species of arctiine tiger moth (Noctuidae, Arctiinae, Arctiini) from Costa Rica
Figures 3-5. Male genitalia of Leichosila. 3a. L. talamanca (paratype), genital capsule (ventral view); 3b. phallus (left lateral view), with inflated vesica (ventrobasal diverticulum highlighted); 4a. L. wagneri (holotype), genital capsule (ventral view); 4b. phallus (left lateral view) with inflated vesica (ventrobasal diverticulum highlighted); 5. L. talamanca, 8th abdominal sternite, showing medioventral sclerite and lateral lobes.
Figs 6–7 in Dodia Maja Sp. N., A New Tiger Moth From The Magadan Territory, Russia (Lepidoptera, Arctiidae)
Figs 6–7. Male genitalia of Dodia sp.: 8 = D. albertae DYAR, 1901, Yukon Territory, Canada; 9 = D. kononenkoi TSHISTJAKOV et LAFONTAINE, 1984, Magadanskaia oblast, Russia; 10 = D. maja sp. n.,
Figs 17–19 in Dodia Maja Sp. N., A New Tiger Moth From The Magadan Territory, Russia (Lepidoptera, Arctiidae)
Figs 17–19. Genitalia of D. maja sp. n.: 17 = m, holotype; 18 = aedeagus with vesica everted, holotype; 19 = f, paratype
Figs 15–16 in Dodia Maja Sp. N., A New Tiger Moth From The Magadan Territory, Russia (Lepidoptera, Arctiidae)
Figs 15–16. Female genitalia of Dodia sp.: 15 = D. kononenkoi TSHISTJAKOV et LAFONTAINE, 1984, Yukon Territory, Canada; 16 = D. maja sp. n., paratype
Figs 11–14 in Dodia Maja Sp. N., A New Tiger Moth From The Magadan Territory, Russia (Lepidoptera, Arctiidae)
Figs 11–14. Male genitalia – aedeagus with everted vesica of Dodia sp.: 11 = D. albertae DYAR, 1901, Yukon Territory, Canada; 12 = D. kononenkoi TSHISTJAKOV et LAFONTAINE, 1984, Magadanskaia
Figure 6 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 6. Imaginal phenology of Arctia tundrana based on the long-term collection data of 1904-2019 (Bolotov et al. 2015: Table S2; this study: Table 1). Specimens with uncertain collecting dates were excluded from the data set.
Figure 2 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 2. Female specimens of Arctia tundrana. (A) Near Bugrino village, Kolguev Island [locality no. 1; see Fig. 4], 26.vii.2009 [coll. RMBH]. (B) Near Seyakha village, Yamal Peninsula [locality no. 49; see Fig. 4 and 5D], 31.vii.2014 [coll. RMBH]. (C) Agapa River, Taymyr [locality no. 17; see Fig. 4], 12.vii.1976 [coll. ZMMU]. Scale bar = 10 mm. (Photos: Elisaveta A. Spitsyna and Vitaly M. Spitsyn).
Figure 1 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 1. Male specimens of Arctia tundrana. (A) Shokalsky Island [locality no. 48; see Figs. 4 and 5C], 06.viii.2019 [coll. RMBH]. (B) Tareya village, Taymyr [locality no. 12; see Fig. 4], vii.1967 [coll. ZMMU]. (C) Agapa River, Taymyr [locality no. 17; see Fig. 4], 23.vii.1973 [coll. ZMMU]. (D) Kresty village, Taymyr [locality no. 14; see Fig. 4], 12.vii.1976 [coll. ZMMU]. (E) Uelen settlement, Chukotka [locality no. 51; see Fig. 4], 19.vii.1979 [coll. ZMMU]. (F- H) Naukan settlement, Chukotka [locality no. 51; see Fig. 4], 14.vii.1979 [coll. ZMMU]. Scale bar = 10 mm. (Photos: Elisaveta A. Spitsyna and Vitaly M. Spitsyn).
Figure 5 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 5. Habitats of Arctia tundrana in Northeastern Europe (A-B) and Western Siberia (C-D). (A) Bog with lichens, mosses, and cottongrasses near Bugrino village, Kolguev Island [locality no. 1]. (B) Mountain dry willow-grass tundra near Amderma village, Yugor Peninsula [locality no. 2]. (C) Wet tundra, Shokalsky Island [locality no. 48]. (D) Nival grass-herb meadow on a southern slope of a hill near Seyakha village, Yamal [locality no. 49]. The numbers of localities correspond to those in the map (Fig. 4). (Photos: Boris Y. Filippov [A-B], Evgeny S. Babushkin [C], and Natalia A. Zubrii [D]).
Figure 4 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 4. Updated map of Arctia tundrana (Palearctic species) and A. subnebulosa (Nearctic species) occurrences (earlier version of this map is presented in Bolotov et al. 2015: Fig. 1A). The red circles indicate new occurrences of A. tundrana (Table 1). The yellow circles indicate A. tundrana occurrences published by Bolotov et al. (2015). The violet circles indicate occurrences of A. subnebulosa, a Nearctic vicariate of A. tundrana (after Bolotov et al. 2015). The numbers of localities correspond to those in Table 1 (this study) and Table S2 (Bolotov et al. 2015: Online Resource 1).
Figure 3 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 3. Male paratype of Arctia tundrana [coll. ZMMU]. (A) Dorsal view of the specimen with corresponding labels. The geographic label [in Russian] reads as follows: "Chukotka, Koluchinskaya Bay , Belyak's Sandspit, 17.vii.1988, P. Tomkovitch leg." [locality no. 24; see Fig. 4] (B) Genitalia and aedeagus. (Photos: Vitaly M. Spitsyn).
Figure 2 in A review of the tiger moth genus Amerila Walker, 1855 from Flores Island, Indonesia, with a description of a new species (Lepidoptera: Erebidae: Arctiinae)
Figure 2. Male genitalia of Amerila spp. from Flores Island, Indonesia. A-C A. rosenfeldae sp. nov.: A) male genitalia (holotype); B) aedeagus (holotype); C) female genitalia (paratype). D-E A. astreus: D) male genitalia; E) aedeagus. (Photos: Vitaly M. Spitsyn).
Figure 3 in A review of the tiger moth genus Amerila Walker, 1855 from Flores Island, Indonesia, with a description of a new species (Lepidoptera: Erebidae: Arctiinae)
Figure 3. Type locality of A. rosenfeldae sp. nov.: eucalyptus plantation with fragmented areas of natural vegetation, 8º51'45"S, 120º59'40"E, altitude 1100 m a.s.l., near Bajawa, Flores Island, Indonesia. (Photo: Vitaly M. Spitsyn).
Figure 1. Amerila spp. from Flores Island, Indonesia. A-D A in A review of the tiger moth genus Amerila Walker, 1855 from Flores Island, Indonesia, with a description of a new species (Lepidoptera: Erebidae: Arctiinae)
Figure 1. Amerila spp. from Flores Island, Indonesia. A-D A. rosenfeldae sp. nov.: A) male upperside (holotype); B) female upperside (paratype); C) male underside (holotype); D) female underside (paratype). E-F A. astreus: E) male upperside; F) female upperside. Scale bar = 10 mm. (Photos: Vitaly M. Spitsyn).
Figure 6 in A review of tiger moths (Lepidoptera: Erebidae: Arctiinae: Arctiini) from Flores Island, Lesser Sunda Archipelago, with description of a new species and new subspecies
Figure 6. Fifty-percent majority-rule consensus phylogenetic tree of Spilarctia spp. and related taxa recovered from Bayesian analysis with 26 in-group COI haplotypes (see Table 2 for details). A haplotype of Theretra natashae was used as an out-group. Black numbers near branches are Bayesian posterior probabilities. The scale bar indicates branch lengths (nucleotide substitutions per site).
Figure 4 in A review of tiger moths (Lepidoptera: Erebidae: Arctiinae: Arctiini) from Flores Island, Lesser Sunda Archipelago, with description of a new species and new subspecies
Figure 4. Spilarctia mikeli sp. nov., ♀ holotype from Flores Island, Lesser Sundas, Indonesia (RMBH, voucher no. Sph0695): A) upperside; B) underside. Scale bar: 10 mm. Photos: Vitaly M. Spitsyn.
Figure 2 in A review of tiger moths (Lepidoptera: Erebidae: Arctiinae: Arctiini) from Flores Island, Lesser Sunda Archipelago, with description of a new species and new subspecies
Figure 2. Examples of Arctiini species from Flores Island, Lesser Sundas, Indonesia: A) Euchromia horsfieldi (Moore, 1859), ♀ (Sph0723); B) Utetheisa pulchelloides Hampson, 1907, ♀ (RMBH, voucher no. Sph0717); C) Amerila astreus (Drury, 1773), ♀ (RMBH, voucher no. Sph0694); D) A. astreus, ♂ (RMBH, voucher no. Sph0693); E) Nyctemera baulus (Boisduval, 1832), ♂ (RMBH, voucher no. Sph0720); F) N. baulus, ♀ (RMBH, voucher no. Sph0721); G) Creatonotos gangis (Linnaeus, 1763), ♂ (RMBH, voucher no. Sph0595); H) Lemyra maculifascia (Walker, 1855), ♂ (RMBH, voucher no. Sph0722). Scale bar: 10 mm. Photos: Vitaly M. Spitsyn.
Figure 1 in A review of tiger moths (Lepidoptera: Erebidae: Arctiinae: Arctiini) from Flores Island, Lesser Sunda Archipelago, with description of a new species and new subspecies
Figure 1. Map of the study region. The red ball indicates West Flores, the type locality of Spilarctia mikeli sp. nov. and Aloa cardinalis danau ssp. nov. The base of the map was modified from Lohman et al. (2011).
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Allen Brain Atlas
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