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972 results for “morphological barcode”
Figure 2 in DNA barcoding, dwelling morphology, and fecundity of the gall-forming shrimp Paratypton siebenrocki Balss, 1914 (Caridea: Palaemonidae)
Figure 2. Phylogeny reconstruction based on 16S and COI mtDNA. Paratypton siebenrocki (in bold) does not show a clear clustering with Anapontonia or Metapontonia in this reduced dataset from Horká et al. (2016). Topology is based on Maximum Likelihood (ML) analyses, support values are ML (UFBoot) on the left and Bayesian Inference (BI) on the right. Only values ≥ 90 are shown; – represents a value below this threshold.
FIG. 5 in DNA Barcoding and Morphological Analyses Reveal a Cryptic Species of Miniopterus from India and Sri Lanka
FIG. 5. Dorsal aspect of cranium of Miniopterus species in India and Sri Lanka. A — M. magnater (MHNG 1981.071); B — M. fuliginosus (ZMMU S-164504); C — M. pusillus (V/M/ERS/570); D — M. phillipsi sp. nov. (NMSL 2021.03.01.NH, holotype)
FIG. 6 in DNA Barcoding and Morphological Analyses Reveal a Cryptic Species of Miniopterus from India and Sri Lanka
FIG. 6. Lateral aspect of cranium and mandible of Miniopterus species in India and Sri Lanka. A — M. magnater (MHNG 1981.071); B — M. fuliginosus (ZMMU S-164504); C — M. pusillus (V/M/ERS/570); D — M. phillipsi sp. nov. (NMSL 2021.03.01.NH, holotype)
FIG. 2 in DNA Barcoding and Morphological Analyses Reveal a Cryptic Species of Miniopterus from India and Sri Lanka
FIG. 2. Plot of the first two components of a principal component (PC) analysis for craniodental measurements of the Miniopterus species in India and Sri Lanka (M. philipsii sp. nov. — blue circle; M. fuliginosus — green circle; M. magnater — black circle; M. pusillus — purple circle). Arrow points to holotype. See Table 2 for the variables used in this analysis and the loadings on PC1 and PC2
FIG. 1 in DNA Barcoding and Morphological Analyses Reveal a Cryptic Species of Miniopterus from India and Sri Lanka
FIG. 1. Bayesian majority-rule consensus tree of the COI gene of Asian Miniopterus species. Dark circles depict nodes with Bayesian posterior probability ≥ 0.95 and maximum likelihood bootstrap support ≥ 70. The outgroup Chaerephon plicatus is not shown. Scale bar indicates the number of substitutions per site
FIG. 3 in DNA Barcoding and Morphological Analyses Reveal a Cryptic Species of Miniopterus from India and Sri Lanka
FIG. 3. Map of South and Southeast Asia showing sampling localities of M. phillipsi sp. nov. and Miniopterus specimens of mainland Asia mentioned in this study with biomes of ecoregions (Dinerstein et al., 2017). Type locality of M. phillipsi sp. nov. is marked by a black star
FIG. 7 in DNA Barcoding and Morphological Analyses Reveal a Cryptic Species of Miniopterus from India and Sri Lanka
FIG. 7. Ventral aspect of cranium of Miniopterus species in India and Sri Lanka. A — M. magnater (MHNG 1981.071); B — M. fuliginosus (ZMMU S-164504); C — M. pusillus (V/M/ERS/570); D — M. phillipsi sp. nov. (NMSL 2021.03.01.NH, holotype)
FIG. 8 in DNA Barcoding and Morphological Analyses Reveal a Cryptic Species of Miniopterus from India and Sri Lanka
FIG. 8. Tragus of Miniopterus species in India and Sri Lanka. A — M. magnater (ZMMU S-172585); B — M. fuliginosus (ZMMU S-164505); C — M. phillipsi sp. nov. (NMSL 2021.03.01.NH, holotype); D — M. pusillus (ZMMU S-172595)
FIG. 8 in DNA barcoding and morphological analyses reveal a cryptic species of Miniopterus from India and Sri Lanka
FIG. 8. Tragus of Miniopterus species in India and Sri Lanka. A — M. magnater (ZMMU S-172585); B — M. fuliginosus (ZMMU S-164505); C — M. phillipsi sp. nov. (NMSL 2021.03.01.NH, holotype); D — M. pusillus (ZMMU S-172595)
FIG. 2 in DNA barcoding and morphological analyses reveal a cryptic species of Miniopterus from India and Sri Lanka
FIG. 2. Plot of the first two components of a principal component (PC) analysis for craniodental measurements of the Miniopterus species in India and Sri Lanka (M. philipsii sp. nov. — blue circle; M. fuliginosus — green circle; M. magnater — black circle; M. pusillus — purple circle). Arrow points to holotype. See Table 2 for the variables used in this analysis and the loadings on PC1 and PC2
FIG. 3 in DNA barcoding and morphological analyses reveal a cryptic species of Miniopterus from India and Sri Lanka
FIG. 3. Map of South and Southeast Asia showing sampling localities of M. phillipsi sp. nov. and Miniopterus specimens of mainland Asia mentioned in this study with biomes of ecoregions (Dinerstein et al., 2017). Type locality of M. phillipsi sp. nov. is marked by a black star
FIG. 1 in DNA barcoding and morphological analyses reveal a cryptic species of Miniopterus from India and Sri Lanka
FIG. 1. Bayesian majority-rule consensus tree of the COI gene of Asian Miniopterus species. Dark circles depict nodes with Bayesian posterior probability ≥ 0.95 and maximum likelihood bootstrap support ≥ 70. The outgroup Chaerephon plicatus is not shown. Scale bar indicates the number of substitutions per site
FIG. 7 in DNA barcoding and morphological analyses reveal a cryptic species of Miniopterus from India and Sri Lanka
FIG. 7. Ventral aspect of cranium of Miniopterus species in India and Sri Lanka. A — M. magnater (MHNG 1981.071); B — M. fuliginosus (ZMMU S-164504); C — M. pusillus (V/M/ERS/570); D — M. phillipsi sp. nov. (NMSL 2021.03.01.NH, holotype)
FIG. 5 in DNA barcoding and morphological analyses reveal a cryptic species of Miniopterus from India and Sri Lanka
FIG. 5. Dorsal aspect of cranium of Miniopterus species in India and Sri Lanka. A — M. magnater (MHNG 1981.071); B — M. fuliginosus (ZMMU S-164504); C — M. pusillus (V/M/ERS/570); D — M. phillipsi sp. nov. (NMSL 2021.03.01.NH, holotype)
, phillipsi holotype. the M of of Measurements Measurements. . n purposes size sample comparative and , range for , SD shown ± 0 are as presented Lanka Sri and Measurements India in authors . occurring Lanka different Sri, Idulgashinna Miniopterus of of assortment from species an . by nov other. sp and specimens phillipsi species other . M new the of ) the while mm of (, TK measurements individuals by taken other were Cranial and types . 4. ABLE paratypes nov. T sp in DNA barcoding and morphological analyses reveal a cryptic species of Miniopterus from India and Sri Lanka
, phillipsi holotype. the M of of Measurements Measurements. . n purposes size sample comparative and , range for , SD shown ± 0 are as presented Lanka Sri and Measurements India in authors . occurring Lanka different Sri, Idulgashinna Miniopterus of of assortment from species an . by nov other. sp and specimens phillipsi species other . M new the of ) the while mm of (, TK measurements individuals by taken other were Cranial and types . 4. ABLE paratypes nov. T sp
FIG. 6 in DNA barcoding and morphological analyses reveal a cryptic species of Miniopterus from India and Sri Lanka
FIG. 6. Lateral aspect of cranium and mandible of Miniopterus species in India and Sri Lanka. A — M. magnater (MHNG 1981.071); B — M. fuliginosus (ZMMU S-164504); C — M. pusillus (V/M/ERS/570); D — M. phillipsi sp. nov. (NMSL 2021.03.01.NH, holotype)
FIGURES 1–7 in Morphological redescription and DNA barcoding of Diamesa parancysta Serra-Tosio (Diptera: Chironomidae: Diamesinae)
FIGURES 1–7. Adult male of Diamesa parancysta Serra-Tosio from Upper Angara River (1–4), Magadan Region (5), Khakassia (6) and Kazakh Mountain Altai (7). 1, 5, 6–7, hypopygium in dorsal view; 2, apical part of anal point; 3, apex of gonostylus; 4, gonocoxite and gonostylus in ventral view.
FIGURE 18 in Morphological redescription and DNA barcoding of Diamesa parancysta Serra-Tosio (Diptera: Chironomidae: Diamesinae)
FIGURE 18. Ultrametric Bayesian inference (BI) tree based on the cytochrome c oxidase I (COI) nucleotide sequence data of Diamesa parancysta Serra-Tosio and morphologically closest species with Syndiamesa edwardsi (Pagast) as outgroup. Bayesian posterior probabilities (higher than 0.7) are given above tree nodes. Specimens obtained in this study are in bold.
FIGURES 8–17 in Morphological redescription and DNA barcoding of Diamesa parancysta Serra-Tosio (Diptera: Chironomidae: Diamesinae)
FIGURES 8–17. Pupa (8–12) and larva (13–17) of Diamesa parancysta Serra-Tosio. 8, thoracic horn and precorneals; 9, segments IV–V, lateral view; 10, segments VI–VII, lateral view; 11, segments VII–VIII, lateral view; 12, segment VIII and anal segment, lateral view; 13, mentum; 14, mandible; 15, antenna; 16, premandible; 17, S-setae of labrum. Scale bars: Fig. 14—50 μm; Figs. 15–17—20 μm.
Morphology and mini-barcodes: The inclusion of larval sampling and NGS-based barcoding improves robustness of ecological analyses of mosquito communities
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