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1,138 results for “cryptic diversity”
FIGURE 1 in Cryptic diversity within the narrowly endemic Lerista wilkinsi group of north Queensland—two new species (Reptilia: Scincidae)
FIGURE 1. Map of collection localities for Lerista cinerea (red), Lerista hobsoni sp. nov. (orange), Lerista vanderduysi sp. nov. (aqua) and Lerista vittata (dark blue). Large symbols indicate type localities; symbols with a dark centre indicate genetic samples as well as voucher specimens. Inset, map of Australia showing study area (Google © 2016; Image Landsat Data S10, NOAA, U.S. Navy, NGA, GEBCO).
FIGURE 2 in Cryptic diversity within the narrowly endemic Lerista wilkinsi group of north Queensland—two new species (Reptilia: Scincidae)
FIGURE 2. Majority rule consensus tree of Queensland Lerista species and outgroup taxa based on four independent runs of the concatenated data set combining multiple loci (12S, 16S, ND4, flanking tRNAs and nuclear ATPs β). Branches with <60% support were collapsed and posterior probabilities are indicated above the branches. The letter codes falling below four of the branches (A, B, B1 and B2) are the clades referred to in the text. Scale bar represents 5% of uncorrected sequence divergence.
FIGURE 5 in Cryptic diversity within the narrowly endemic Lerista wilkinsi group of north Queensland—two new species (Reptilia: Scincidae)
FIGURE 5. Lerista vanderduysi sp. nov. head scalation (QMJ79057, holotype), (A) lateral view, (B) dorsal view, (C) ventral view.
FIGURE 8 in Cryptic diversity within the narrowly endemic Lerista wilkinsi group of north Queensland—two new species (Reptilia: Scincidae)
FIGURE 8. Lerista hobsoni sp. nov. head scalation (QMJ93709, holotype), (A) lateral view, (B) dorsal view, (C) ventral view.
FIGURE 30 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 30. Bayesian tree (TPM2uf+G) for Aegla species based on partial fragment of 16S. Node numbers represent posterior probabilities (values <50% are not shown), and divergence time in millions of years (my); *indicates the calibration points to molecular clock. The clade C proposed by Pérez-Losada et al. (2004) is highlighted in grey. The basin and sub-basin origin of the discussed species in this study are shown after the specific names.
FIGURE 1 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 1. Distribution of the species of Aegla in four main hydrographic basins of southern Brazil: Rio Grande, Rio Tietê (Upper Paraná system), Rio Paraíba do Sul and Ribeira de Iguape. Indications L1 through L7 refer to the locations mentioned under "sampling area" in the Material & Methods section.
FIGURE 24. A–L in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 24. A–L, proximal portion of fifth pereiopod showing coxa and sexual tube of long and narrow type. A–B, Aegla paulensis Schmitt, 1942 s. str., male topotype (MZUSP 34368). C–D, Aegla rosanae Campos Jr., 1998, male topotype (MZUSP 34369). E–F, Aegla vanini n. sp., male paratype (MZUSP 34372). G–H, Aegla japi n. sp., male paratype (MZUSP 34375). I–J, Aegla jaragua n. sp. male paratype (MZUSP 34378). K-L, Aegla jundiai n. sp., male paratype (MZUSP 13490). Bars: A–D, F– H, J = 200 µm; K, L = 100 µm; E, I = 500 µm.
FIGURE 8 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 8. Types of Aegla Leach, 1820 male sexual tubes. A, long and narrow (A. lancinhas Bond-Buckup & Buckup in Santos et al., 2015, MZUSP 34403). B, short and wide (A. leptochela Bond-Buckup & Buckup, 1994, MZUSP 34491).
FIGURE 9 in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 9. Dorsal pattern of three Cyrtodactylus sibling species: A) Cyrtodactylus phongnhakebangensis from Vietnam (Phong Nha-Ke Bang National Park); B) Cyrtodactylus calamei sp. nov.; and C) Cyrtodactylus hinnamnoensis sp. nov. (VNUF R.2013.4), from Laos. Photos: T. Ziegler & V. Q. Luu.
FIGURE 12 in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 12. Dorsal pattern of two Cyrtodactylus pairs from Hin Nam No NPA (left side) and Phong Nha-Ke Bang NP (right side): A) Paratype of Cyrtodactylus sommerladi sp. nov. (NUOL R-2013.21) from Laos and B) paratype of Cyrtodactylus roesleri (ZFMK 86433) from Vietnam; C) Cyrtodactylus cryptus (VNUF R.2014.86) from Laos and D) Cyrtodactylus cryptus from Vietnam. Photos: V. Q. Luu & T. Ziegler.
FIGURE 8. A in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 8. A) Dorsal view of the holotype (IEBR A.2013.90); and dorsal views of the paratypes of Cyrtodactylus hinnamnoensis sp. nov. in life B) VNUF R.2014.99; and C) VNUF R.2013.3. Photos: V. Q. Luu.
FIGURE 6 in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 6. Map showing the localities (blue) of the three new Cyrtodactylus species (type localities are encircled with black line) and the new Cyrtodactylus country record from Khammouane Province, central Laos.
FIGURE 11 in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 11. Comparison of dorsal scale structure of Cyrtodactylus sommerladi sp. nov. (A: with homogenous tubercle-like scales) and C. roesleri (B: with distinct dorsal tubercle rows). Photos: N. Schneider & T. Ziegler.
FIGURE 5 in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 5. Principal components analysis comparing head shape of Cyrtodactylus sommerladi sp. nov. (red dots) and Cyrtodactylus roesleri (black dots) based on relative head width and head height.
FIGURE 3 in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 3. Correspondence analysis showing species association of Cyrtodactylus from Laos (except for Cyrtodactylus phongnhakebangensis and C. roesleri which are from Vietnam) based on morphological comparisons.
FIGURE 2 in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 2. Cluster analysis showing species correlation of the Cyrtodactylus species based on morphological comparisons (1000 bootstrap replicates).
FIGURE 1 in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 1. Phylogram based on the Bayesian analysis. Number above and below branches are MP/ML bootstrap values and Bayesian posterior probabilities (>50%), respectively. Asterisk denotes 100% value. Hyphen indicates the statistical support value lower than 50%. Scale shows the number of expected substitutions per position as calculated in MrBayes v3.2. New species and records marked in bold.
FIGURE 7. A in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 7. A) Dorsolateral view of the holotype (VNUF R.2015.28); B) lateral view of the paratype (NUOL R.2015.22) of Cyrtodactylus calamei sp. nov. in life. Photos: V. Q. Luu.
FIGURE 4 in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 4. Correspondence analysis comparing all adult male measurements of four Cyrtodactylus sibling species: Cyrtodactylus hinnamnoensis sp. nov. (blue dots); Cyrtodactylus darevskii (pink dots); Cyrtodactylus calamei sp. nov. (red dots); and Cyrtodactylus phongnhakebangensis (black dots).
FIGURE 10. A in Evolution in karst massifs: Cryptic diversity among bent-toed geckos along the Truong Son Range with descriptions of three new species and one new country record from Laos
FIGURE 10. A) Dorsal view of the holotype (VNUF R.2013.22); and dorsal views of the paratypes of Cyrtodactylus sommerladi sp. nov. in life B) VNUF R.2013.67; C) IEBR A.2015.39; and D) NUOL R-2013.105. Photos: V. Q. Luu.
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International Brain Laboratory public data
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OpenNeuro
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