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8 results for “Bombus lucorum”
Fig. 3 in Barcoding cryptic bumblebee taxa: B. lucorum, B. crytarum and B. magnus, a case study (Hymenoptera: Apidae: Bombus)
Fig. 3: Observed diagnostic character changes with position numbers mapped onto the Maximum- Likelihood tree. Black box = unambiguous diagnostic character change, grey box = ambiguous diagnostic character change, and white box = unambiguous character change.
Fig. 1 in Barcoding cryptic bumblebee taxa: B. lucorum, B. crytarum and B. magnus, a case study (Hymenoptera: Apidae: Bombus)
Fig. 1: Tree topology calculated as Maximum-Likelihood tree using Bayesian MCMC analysis with the general time reversal model of base substitutions, gamma distribution and 5 000 000 generations.
Fig. 4 in Barcoding cryptic bumblebee taxa: B. lucorum, B. crytarum and B. magnus, a case study (Hymenoptera: Apidae: Bombus)
Fig. 4: Summary of Barcode engine identification requests for specimens with identification problems (LUC-01, LUC-09, LUC-10, MAG-10, CRY-01 and CRY-10) or degraded DNA (B. lucorum terrestricoloratus, B. reinigi, B. magnus turkestanicus and new sequence for B. sp. BVP-A, AY181116). For details of misidentifications and misnamings see text.
Fig. 2.1-4 in Barcoding cryptic bumblebee taxa: B. lucorum, B. crytarum and B. magnus, a case study (Hymenoptera: Apidae: Bombus)
Fig. 2.1-4: Alignment of all parsimonious informative triplets (with uninformative sites deleted -), and with a pointer for position number (numbered for total COI) and codon position. Diagnostic (= private) positions marked with colour: green = Thymine, violet = Cytosine, red = Adenine and yellow = Guanine.
Verteilung der gefangenen Individuen von Bombus terrestris und B. lucorum auf die einzelnen Fanggebiete in den Jahren 1959—1969. in Die Veränderung der Hummelfauna Cuxhavens in diesem Jahrhundert. Der Versuch einer Deutung. )
Verteilung der gefangenen Individuen von Bombus terrestris und B. lucorum auf die einzelnen Fanggebiete in den Jahren 1959—1969.
Fig. 5 in Barcoding cryptic bumblebee taxa: B. lucorum, B. crytarum and B. magnus, a case study (Hymenoptera: Apidae: Bombus)
Fig. 5: Comparison of ABI colour traces of fresh (CRY-09) and 100 year old museum DNA (B. magnus turkestanicus), with two miscoding lesions of type T → C, one marked by Y (mixed bases IUPAC code for T/C) in the ABI output file, and one miscoding lesion of type G → A marked by R (mixed bases IUPAC code for G/A) in the ABI output file.
Figures 1-6 from: Bossert S (2015) Recognition and identification of bumblebee species in the Bombus lucorum-complex (Hymenoptera, Apidae) – A review and outlook. Deutsche Entomologische Zeitschrift 62(1): 19-28. https://doi.org/10.3897/dez.62.9000
Figures 1-6 - Shape of first collar as described in the literature. Head and parts of the mesosoma of the respective species are shown in a lateral view. 1–2. Bombus lucorum; 3–4. Bombus cryptarum; 5–6. Bombus magnus. The drawings were provided by Johann Neumayer and are based on Bertsch et al. (2004).
Figures 7-9 from: Bossert S (2015) Recognition and identification of bumblebee species in the Bombus lucorum-complex (Hymenoptera, Apidae) – A review and outlook. Deutsche Entomologische Zeitschrift 62(1): 19-28. https://doi.org/10.3897/dez.62.9000
Figures 7-9 - Labrum characters in frontal view. 7. Bombus lucorum; 8. Bombus cryptarum 9. Bombus magnus. The drawings were provided by Johann Neumayer and are based on Rasmont (1984).
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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