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Using Noninvasive Genetic Sampling to Survey Rare Butterfly Population
<p><strong>Supplementary Table 1.</strong> Sanger sequencing and NCBI BLAST results for exemplar amplicons from each treatment of the proof-of concept study.</p> <p>From: Using Noninvasive Genetic Sampling to Survey Rare Butterfly Populations</p>
FIGURE 1 in New records and their associated DNA barcodes of the butterfly family Hesperiidae in Tibet, China
FIGURE 1. The maximum likelihood (ML) tree based on COI. Values at nodes represent the bootstrap support (BP) values.
FIGURE 2 in New records and their associated DNA barcodes of the butterfly family Hesperiidae in Tibet, China
FIGURE 2. Majority-rule consensus tree from the Bayesian analysis (BI) based on COI. Values at nodes represent the posterior probabilities (PP) of BI analysis.
FIGURE 5 in New records and their associated DNA barcodes of the butterfly family Hesperiidae in Tibet, China
FIGURE 5. Male genitalia of newly recorded Hesperiidae from Tibet. A, Ochlodes brahma; B, Barca bicolor; C, Aeromachus propinquus; D, Celaenorrhinus consanguineus; E, Pedesta bivitta; F, Baoris penicillata chapmani. Scale bar=1 mm.
FIGURE 5 in New records and their associated DNA barcodes of the butterfly family Hesperiidae in Tibet, China
FIGURE 5. Male genitalia of newly recorded Hesperiidae from Tibet. A, Ochlodes brahma; B, Barca bicolor; C, Aeromachus propinquus; D, Celaenorrhinus consanguineus; E, Pedesta bivitta; F, Baoris penicillata chapmani. Scale bar=1 mm.
FIGURE 2 in New records and their associated DNA barcodes of the butterfly family Hesperiidae in Tibet, China
FIGURE 2. Majority-rule consensus tree from the Bayesian analysis (BI) based on COI. Values at nodes represent the posterior probabilities (PP) of BI analysis.
FIGURE 4 in New records and their associated DNA barcodes of the butterfly family Hesperiidae in Tibet, China
FIGURE 4. Male adults of newly recorded Hesperiidae from Tibet. A, Ochlodes brahma; B, Barca bicolor; C, Aeromachus propinquus; D, Celaenorrhinus consanguineus; E, Pedesta bivitta; F, Baoris penicillata chapmani. A, B, C, right, upperside; left, underside; D, E, F, right, underside, left upperside. Scale bar=1 cm.
FIGURE 1 in New records and their associated DNA barcodes of the butterfly family Hesperiidae in Tibet, China
FIGURE 1. The maximum likelihood (ML) tree based on COI. Values at nodes represent the bootstrap support (BP) values.
Heliconiine Butterfly Collection Records from University of Cambridge
These are collection records from the research group of Chris Jiggins at the University of Cambridge derived from almost 20 years of field studies. Many records include images as well as locality data.
A complete time-calibrated multi-gene phylogeny of the European butterflies - data
<p>The datasets used for the article on phylogenetic relationships of European butterflies, including the treefile for all European species, as well as the posterior distributions of ages of each node.</p>
Fig. 1 in Species radiation in the Alps: multiple range shifts caused diversification in Ringlet butterflies in the European high mountains
Fig. 1 Sampling locations of all studied species, with Erebia cassioides arvernensis (grey circles), Erebia c. cassioides (black circles), Erebia c. neleus in the Balkan region (black-white circles), Erebia nivalis (white triangles), Erebia tyndarus (white circles) and Erebia ottomana (grey triangles) (a). The detailed map shows the distribution of the samples in the Alps (b). Given numbers coincide with other figures and tables
Fig. 4 in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 4 Map showing all the known localities for Yphthimoides gabriela, Yphthimoides bella, and Yphthimoides iserhardi
Fig. 10 Phylogenetic relationships among 14 in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 10 Phylogenetic relationships among 14 species of Yphthimoides based on DNA sequences of CoxI and obtained by a maximum likelihood analysis. Numbers below branches are bootstrap support
Fig. 3 Yphthimoides gabriela, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 3 Yphthimoides gabriela, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d Edeagus (dorsal view). e Edeagus (lateral view)
Fig. 9 in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 9 Frequency distribution of pairwise individual genetic distances within (gray) and between (black) the seven species of Yphthimoides
Fig. 8 Yphthimoides iserhardi, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 8 Yphthimoides iserhardi, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d Edeagus (dorsal view). e Edeagus (lateral view)
Fig. 2 Yphthimoides gabriela. a Male wing venation. b Female wing venation. c Male palpus. d Male foreleg. e Male midleg. f in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 2 Yphthimoides gabriela. a Male wing venation. b Female wing venation. c Male palpus. d Male foreleg. e Male midleg. f Female foreleg
Fig. 2 a in Does size matter? Comparative population genetics of two butterflies with different wingspans
Fig. 2 a Map showing the groups formed when individuals were divided into populations based on sampling proximity (AGA Agastyamalais, ANA Anamalais, WAC Wayanad and Coorg, and NKAR North Karnataka). b and c Spatial multivariate analysis in sPCA. Squares represent first axis sPCA scores for b ML and c YB. In this figure, the color of the squares denotes positive (black) or negative (white) spatial autocorrelation, and the size of the squares denotes the magnitude of genetic variance. Thus, squares of different sizes are used to represent different absolute values: large black squares are well differentiated from large white squares, but small squares are less differentiated
Fig. 4 a in Controversial patterns of Wolbachia infestation in the social parasitic Maculinea butterflies (Lepidoptera: Lycaenidae)
Fig. 4 a UPGMA dendrogram based on allozymes using Cavalli-Sforza and Edwards' chord distances. b The results of PCA in M. alcon. Each symbol represents one sample in the reduced space by variances. The first two axes explain 66.6 % of the total variance. The 'cruciata and pneumonanthe types' of M. alcon clearly differ along the first axis
Fig. 6 Yphthimoides bella, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 6 Yphthimoides bella, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d Edeagus (dorsal view). e Edeagus (lateral view)
ScienceDex guides
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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.