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1,138 results for “cryptic diversity”
Figures 1-4 from: Berggren K, Aarvik L, Huemer P, Lee KM, Mutanen M (2022) Integrative taxonomy reveals overlooked cryptic diversity in the conifer feeding Batrachedra pinicolella (Zeller, 1839) (Lepidoptera, Batrachedridae). ZooKeys 1085: 165-182. https://doi.org/10.3897/zookeys.1085.76853
Figures 1-4 Adults and labels of Batrachedra1 lectotype Cosmopteryx pinicolella Zeller, 1839 (NHMUK; copyright Trustees of the Natural History Museum, London) 2 labels of lectotype 3 holotype of Batrachedra confusella sp. nov. 4 adult of Batrachedra pinicolella. Scale: 10 mm.
Supplementary material 3 from: Mullin KE, Rakotomanga MG, Dawson J, Glaw F, Rakotoarison A, Orozco-terWengel P, Scherz MD (2022) An unexpected new red-bellied Stumpffia (Microhylidae) from forest fragments in central Madagascar highlights remaining cryptic diversity. ZooKeys 1104: 1-28. https://doi.org/10.3897/zookeys.1104.82396
Table S1
Supplementary material 4 from: Mullin KE, Rakotomanga MG, Dawson J, Glaw F, Rakotoarison A, Orozco-terWengel P, Scherz MD (2022) An unexpected new red-bellied Stumpffia (Microhylidae) from forest fragments in central Madagascar highlights remaining cryptic diversity. ZooKeys 1104: 1-28. https://doi.org/10.3897/zookeys.1104.82396
Table S2
Supplementary material 2 from: Mullin KE, Rakotomanga MG, Dawson J, Glaw F, Rakotoarison A, Orozco-terWengel P, Scherz MD (2022) An unexpected new red-bellied Stumpffia (Microhylidae) from forest fragments in central Madagascar highlights remaining cryptic diversity. ZooKeys 1104: 1-28. https://doi.org/10.3897/zookeys.1104.82396
Figure S2
Supplementary material 1 from: Mullin KE, Rakotomanga MG, Dawson J, Glaw F, Rakotoarison A, Orozco-terWengel P, Scherz MD (2022) An unexpected new red-bellied Stumpffia (Microhylidae) from forest fragments in central Madagascar highlights remaining cryptic diversity. ZooKeys 1104: 1-28. https://doi.org/10.3897/zookeys.1104.82396
Figure S1
Supplementary material 2 from: Praz C, Genoud D, Vaucher K, Bénon D, Monks J, Wood TJ (2022) Unexpected levels of cryptic diversity in European bees of the genus Andrena subgenus Taeniandrena (Hymenoptera, Andrenidae): implications for conservation. Journal of Hymenoptera Research 91: 375-428. https://doi.org/10.3897/jhr.91.82761
Table S2. List of all examined specimens.
Fig. 9 in The Caribbean intertidal mite Alismobates inexpectatus (Acari, Oribatida), an unexpected case of cryptic diversity?
Fig. 9 Graph showing results of Non-metric Multidimensional Scaling (NMDS) and Linear Discriminant Analysis (LDA) performed on size corrected data of four Caribbean Alismobates piratus sp. n. populations
Fig. 7 in The Caribbean intertidal mite Alismobates inexpectatus (Acari, Oribatida), an unexpected case of cryptic diversity?
Fig. 7 Graph showing results of Non-metric Multidimensional Scaling (NMDS) performed on raw and size-corrected morphometric data of the two Alismobates species
Fig. 2 in The Caribbean intertidal mite Alismobates inexpectatus (Acari, Oribatida), an unexpected case of cryptic diversity?
Fig. 2 Map showing records of the two Alismobates species in the Caribbean and TCS haplotype network based on their COI sequences. Light red arrows on map indicate ocean currents and their directions. Each circle in the network corresponds to one haplotype and its size
Fig. 6 in The Caribbean intertidal mite Alismobates inexpectatus (Acari, Oribatida), an unexpected case of cryptic diversity?
Fig. 6 Dorsal (left) and ventral (right) depictions (legs omitted or only partially drawn) of the two genetically distinct Alismobates species, illustrating the phenotypic similarity. a) A. piratus sp. n. (specimen from Barbados BA_22); b) A. inexpectatus (specimen from the Dominican Republic DR_03)
Fig. 4 in The Caribbean intertidal mite Alismobates inexpectatus (Acari, Oribatida), an unexpected case of cryptic diversity?
Fig. 4 Multidimensional graph produced by the genetic landscape ▸ shape interpolation analysis, shown from different angles. Dark blue peaks represent areas with high genetic discontinuities and yellow valleys indicate low genetic distances of individuals across the distribution of Alismobates species in the Caribbean. Most important peaks and valleys are indicated on the map below
Fig. 1 in Unveiling cryptic diversity among Müllerian co-mimics: insights from the Western Palaearctic Syntomis moths (Lepidoptera: Erebidae: Arctiinae)
Fig. 1 Geographical distribution of Syntomis phegea, S. ragazzii, S. marjana and S. quercii in the Western Palaearctic region, and geographical locations of the 36 populations sampled and analysed. Locations are numbered as in Table 1. Dotted lines outline the approximate range of the different subspecies named in the text. The map was drawn using the software Canvas 11 (ACD Systems of America, Inc.)
Fig. 4 in Extensive cryptic diversity in the cosmopolitan sludge worm Limnodrilus hoffmeisteri (Clitellata, Naididae)
Fig. 4 Morphological characters of Limnodrilus hoffmeisteri sensu stricto (species IX), from slide-mounted specimens. a Neotype. Atrium, vas deferens and penis sheath. b Neotype. Second penis sheath. c Neotype. Chaetae in VII (some broken), a partly developed chaeta at bottom. d Specimen from China (CE12498). Reproductive organs. e–f
Fig. 5 in The Caribbean enigma: the presence of unusual cryptic diversity in intertidal mites (Arachnida, Acari, Oribatida)
Fig. 5 Photographic comparison (stacked stereomicroscopic images) of all Caribbean Carinozetes lineages highlighting the remarkable morphological similarity between and within the cryptic groups. Upper
Fig. 2 in The Caribbean enigma: the presence of unusual cryptic diversity in intertidal mites (Arachnida, Acari, Oribatida)
Fig. 2 Bayesian inference tree based on COI sequences (564 bp) with the summary from all species delimitation analyses. Posterior probabilities (BI) and bootstrap values (NJ, ML) ranging from 85 to 95 are indicated by empty stars, values over 95 by black stars near nodes. Vertical bars at terminal branches specify delimited species obtained from three different approaches
Fig. 7 in The Caribbean enigma: the presence of unusual cryptic diversity in intertidal mites (Arachnida, Acari, Oribatida)
Fig. 7 CVA scatter plots of different populations of three Carinozetes mangrovi lineages and PCA graph for two different populations of the "Caribbean" C. bermudensis on size-corrected data. Percentage of total variation explained by the axes given in parentheses. Carinozetes mangrovi specimens from different locations in Florida and individuals
Fig. 6 in The Caribbean enigma: the presence of unusual cryptic diversity in intertidal mites (Arachnida, Acari, Oribatida)
Fig. 6 CVA scatter plots of five Carinozetes lineages; female and male specimens shown in separate graphs. Percentage of total variation explained by the axes given in parentheses
FIGURE 1 in Cryptic diversity of stygobiotic shrimp genus Xiphocaridinella Sadowsky, 1930 (Crustacea: Decapoda: Atyidae): the first case of species co-occurrence in the same cave system in the Western Caucasus
FIGURE 1. Schematic map of the placement of Otap and Abrskil caves in AbkhaZia, Western CaUcasUs.
Figure 5 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Figure 5 Microscopic structures of Skeletocutis ochroalba (reproduced after Niemelä (1985)). A spores B encrusted tomentum hyphae arising from dense cortical tissue C section through context, showing generative and skeletal hyphae and ramified side-branches resembling binding hyphae D ramified arbuscule-like binding hypha, arising from a generative hypha E dissepiment edge hyphae F cystidioles and basidioles G vertical section through a dissepiment edge, showing trama, hymenium with a hyphal peg and sparsely encrusted dissepiment edge hyphae.
Figure 6 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Figure 6 Microscopic structures of the Skeletocutis nivea complex. A S. lepida, tramal skeletal hypha amongst generative hyphae (holotype) B S. semipileata, ends of generative and skeletal hyphae in trama (Miettinen 17135) C S. nemoralis, tube trama and hymenium (holotype) D S. nivea, tube trama and hymenium with encrusted generocystidia (epitype) E S. nivea, basidia (Miettinen 16350) F S. semipileata, basidia (epitype) G S. cummata, the largest basidia in the the S. nivea complex (Niemelä 9088).
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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