Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
277
datasets available to search
ShareScore release 0.7.1
Dataset results
277 results for “Heliconius”
FIGURE 156. H. erato cyrbia Godart, 1819 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 156. H. erato cyrbia Godart, 1819 (dorsal, ventral). Ecuador: Pichincha, Région de Lita, Chuchuví. Found on the Pacific slope of Ecuador, where it is the co-mimic of H. melpomene cythera (Fig. 61). (image source: https:// cliniquevetodax.com/Heliconius/pages/erato%20cyrbia.html)
FIGURE 152. Heliconius pachinus Salvin, 1871 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 152. Heliconius pachinus Salvin, 1871(dorsal, ventral). Costa Rica: Cerro Chirripo. Image source: https:// cliniquevetodax.com/Heliconius/pages/pachinus.html
FIGURE 168. H. erato petiverana Doubleday, 1847 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 168. H. erato petiverana Doubleday, 1847 (dorsal, ventral). Mexico: Veracruz, Nanciyaga. (image source: https://cliniquevetodax.com/Heliconius/pages/erato%20petiverana.html)
FIGURE 151 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 151. Hybrid #97 (dorsal, ventral). Colombia: Cundinamarca, Chirijara (sic), 1991, leg. D. Acosta (according to Mallet et al. 2007) or D. Silva (according to Salazar 1993). Schmidt-Mumm collection (IAvH). Interpreted by Mallet et al. (2007) as a H. heurippa (Fig. 148) x H. melpomene melpomene (Fig. 128) F1 backcross to H. heurippa. As may be seen in Figure 149, this phenotype does not appear in crosses of the putative "parental" species of H. heurippa, nor in a cross of those hybrids back to H. heurippa (Fig. 150). Note also that the red band is more proximal, almost reaching the end of the FW discal cell, and that this specimen lacks the fine line of black scales between the yellow and red forewing band seen in H. heurippa. Phenotypes such as this one appear in crosses between "postman" patterned H. melpomene with a red FW band and "dennis-ray" patterned H. melpomene in French Guiana and elsewhere, and at this locality, it is not implausible that this specimen is a H. melpomene melpomene x H. melpomene malleti (Fig. 14) F1 backcross to H. melpomene melpomene.
FIGURE 179. H. ethilla aerotome C. Felder & R. Felder 1862 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 179. H. ethilla aerotome C. Felder & R. Felder 1862 (dorsal, ventral). Peru: San Martín, Juanjui. (image source: https://cliniquevetodax.com/Heliconius/pages/ethilla aerotome.html). Note the tawny shading of the distal FW, and the yellowish tint of the transverse band on the HWV.
FIGURE 173. H in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 173. H. hortense Guérin, 1844 (dorsal, ventral; two different specimens). Mexico: [Veracruz], Las Tuxtlas (dorsal); Mexico: Chiapas (ventral.) (image source: https://cliniquevetodax.com/Heliconius/pages/hortense.html)
FIGURE 176. H. hecalesia formosus Bates, 1866 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 176. H. hecalesia formosus Bates, 1866 (dorsal, ventral). Panama (indicated as the same specimen, but the antennae and separation of the left pair of wings suggest otherwise). (image source: https://cliniquevetodax.com/ Heliconius/pages/hecalesia%20formosus.html)
FIGURE 170. H in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 170. H. sara sara (Fabricius, 1793) wild-type phenotype (dorsal, ventral, above) and genetically modified WntA knockout mutant (dorsal, vental, below). (image source: http://www.pnas.org/content/suppl/2017/08/29/ 1708149114.DCSupplemental).
FIGURE 150 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 150. Experimental crosses by Mávarez et al. (2006; Image source: http://evolucionarios.blogalia.com/ historias/40884). H. cydno cordula x H. melpomene melpomene F3 phenotypes from the F2 phenotype with asterisk in Fig. 149 (left). Homozygous hybrid phenotype crossed to H. heurippa and F1 offspring (right) The individual below the right box is a wild specimen from San Cristobal, similar to (or the same individual as) #88 (Fig. 137). Note that the heterozygous condition of the B allele changes the color of the FW red band from rosy-red to brick-red.
FIGURE 164 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 164. Hybrid #156 (dorsal). Peru: San Martín, Rodriguez de Mendoza-Omia km 11, ~1986. König collection (NMW). Interpreted by Mallet et al. (2007) as H. himera (Fig. 157) x H. erato favorinus (Fig. 161) backcross to H. erato. The locality data of this specimen are the same as Hybrid #155. König (1986) does not mention this specimen, but it is not as dramatic a hybrid as Hybrid #153. The shape of the FW red band is more consistent with those of the putative parental forms than is that of Hybrid #154.
FIGURE 149 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 149. Experimental crosses by Mávarez et al. (2006): H. cydno cordula, H. heurippa and H. melpomene melpomene parental forms, (top row) H. cydno cordula x H. melpomene melpomene hybrid F1 (2nd row) and backcross phenotypes (in boxes). Individuals to left and right of boxes are Mávarez hybrid specimens #28 (Fig. 129), 29 (Fig. 130) and 34 (Fig. 135). (Image source: http://evolucionarios.blogalia.com/historias/40884). All wings shown FWD and HWV. The fact that the specimen at the bottom of the left box has a different phenotype from the F1, even though their indicated genotypes are the same, shows that there must be additional genes involved in expression of the two patterns than the three described in the figure. There are also evident epistatic interactions involving the yellow forewing band, the HWV forceps mark and the color and distal displacement of the red band: for example, the expression of the HW forceps mark is complete in Brbr heterozygotes in the H. cydno backcross, but is only partly expressed in the Brbr heterozygote in the H. melpomene backcross.
FIGURE 145 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 145. Hybrid #95 (dorsal, ventral). Venezuela: Barinas, Above Barinitas, 900 m, (no date) In the Mattei family collection. Interpreted by Brown & Fernández (1985) and by Mallet et al. (2007) as a H. cydno barinasensis (Fig. 146) x H. melpomene melpomene (Fig. 128) F1. These photos are underexposed. In Brown & Fernández (1985, Fig. 177), there is clearly a partial hourglass mark in the FW discal cell and a shadowy submarginal white band on the dorsal and ventral hindwing. Nevertheless, the brick-red distal forewing band is not found in the local H. melpomene.
FIGURE 144. H in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 144. H. cydno gadouae Brown & Fernández, 1985 (dorsal, ventral). Venezuela: Táchira, San Juan de Colon, 850m. (image source: https://cliniquevetodax.com/Heliconius/pages/cydno%20gadouae).
FIGURE 147 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 147. Hybrid #96 (dorsal, ventral). Venezuela: possibly Barinas, Above Barinitas, 900 m, (no date) In the Mattei family collection. Interpreted by Mallet et al. (2007) as a H. cydno barinasensis (Fig. 146) x H. melpomene melpomene (Fig. 128) F1 backcross to H. cydno. These photos are underexposed. In Brown & Fernández (1985), a similar specimen (from Táchira, La Fundación, 1400m, 16 Feb. 1976, leg. KS Brown. Jr.) is illustrated (their #169), which is interpreted as a H. cydno cordula (Fig. 127) x H. cydno barinasensis (Fig. 146) interracial hybrid. Neither of these interpretations seems correct. H. cydno barinasensis has a broad white submarginal HW band, and this would surely be visible in a backcross if it is evident in an F1 (see Hybrid #95, Fig. 145, above). Likewise, both H. cydno cordula and H. cydno barinasensis have a broad FW band, with at least a partial hourglass mark in the discal cell. Given its questionable locality data and its similarity to Brown's specimen from La Fundación, this specimen can be interpreted the same way as Hybrids #89-#91.
FIGURE 146. H. cydno barinasensis Masters, 1973 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 146. H. cydno barinasensis Masters, 1973 (dorsal, ventral). Venezuela: [Cojedes], Las Minas. (image source: https://cliniquevetodax.com/Heliconius/pages/cydno%barinasensis)
FIGURE 142 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 142. Hybrid #93 (dorsal). Venezuela: Táchira(?), ~1980. This specimen is probably in the Romero family collection, Maracay. Interpreted by Mallet et al. (2007) as a H. cydno cordula (Fig. 127) x H. melpomene melpomene (Fig. 128) F1 backcross to H. cydno. It bears a striking superficial resemblance to H. heurippa (Fig. 148).
FIGURE 178 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 178. And finally, Hybrid specimen #06-921 (dorsal, ventral). Not included in Mallet et al. (2007). Peru: San Martín, Rumiyacu, near Moyobamba 06°05'23"S 76°58'09"W, 2006 (?), no collector indicated (MUSM). Image source: https://www.researchgate.net/publication/6036804_Genetic_analysis_of_a_wild-caught_hybrid_between_nonsister_Helico nius_butterfly_species/figures). This rather rubbed specimen was sequenced for mtDNA COI-COII and for several nuclear genes (invected, Mpi, Tpi, Tektin, Rpl5), which exhibited double bands in the chromatograms suggestive of a heterozygote condition. Dasmahapatra et al. (2007) interpreted these data to suggest that the specimen is an F1 heterozygote cross between H. melpomene amaryllis (Fig. 180) and H. ethilla aerotome (Fig. 179). The specimen's main H. melpomene-like morphological feature is a yellow transverse HWV band (a feature also found in a number of H. ethilla races). Otherwise, it looks mostly silvaniform, with reduced yellow and black markings on the FW, and a tawny postdiscal FW patch that Dasmahapatra et al. (2007) considered to represent the influence of H. melpomene amaryllis' red FW band. The basal red spot in HWV cell CU2 characteristic of H. ethilla is not evident in the image, but it appears that the published figure has been rather clumsily modified to increase contrast and color saturation.
FIGURE 158 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 158. Hybrid #111 (dorsal, ventral). H. erato cyrbia (Fig. 156) x H. himera (Fig. 157) F1 (dorsal, ventral). Ecuador: El Oro, Guayquichuma site 4, 1993 (Neukirchen collection, FLMNH). The yellow forewing bands are replaced with red, but otherwise the specimen looks like H. himera.
FIGURE 141 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 141. Hybrid #92 (dorsal, ventral). Venezuela: Táchira, Río Negro, 11-13 Dec. 1980. Leg. José A. Clavijo (UCVM). Interpreted by Brown & Fernández (1985) and by Mallet et al. (2007) as a H. cydno cordula (Fig. 127) x H. melpomene melpomene (Fig. 128) F1.
FIGURE 139 in Alternative facts: a reconsideration of putatively natural interspecific hybrid specimens in the genus Heliconius (Lepidoptera: Nymphalidae)
FIGURE 139. Hybrid # 90 (dorsal, ventral). Venezuela: Táchira, Parque Nacional Paramillo, 1140m. Leg. M. Linares. Interpreted by Mallet et al. (2007) as a H. cydno cordula (Fig. 127) x H. melpomene melpomene (Fig. 128) F1 backcross to H. cydno, presumably due to the missing hourglass mark in the FW discal cell.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.