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135 results for “Ariophantidae”
Figure 3 A in Integrative systematics reveals the new land-snail genus Taphrenalla (Eupulmonata: Ariophantidae) with a description of nine new species from Thailand
Figure 3 A representative ML tree showing only the Taphrenalla clade. The synopsis of the radial groove on shell sculpture, genitalia showing location of dart apparatus, and live specimens of Taphrenalla spp. Results of species delimitation analyses based on the COI gene using ABGD and PTP. Black circles represent nodes with both ML (when Ē 70%) and BI (when Ē 0.95) support. White circles represent nodes with ML BS support but no BI PP support (when <0.95). Each clade colour refers to the distribution range in fig. 1.
Figure 2 in Integrative systematics reveals the new land-snail genus Taphrenalla (Eupulmonata: Ariophantidae) with a description of nine new species from Thailand
Figure 2 Representative ML tree of the Taphrenalla gen. nov., Macrochlamys, Sarika, Cryptozona, Hemiplecta, Megaustenia, and Durgella based on the combined partial sequences of the COI, 16S, and 28S genes. The code in the parenthesis next to the species name refers to voucher numbers of the analysed samples. Numbers on the branches indicate the ML BS and BI PP values.
Figure 1 in Integrative systematics reveals the new land-snail genus Taphrenalla (Eupulmonata: Ariophantidae) with a description of nine new species from Thailand
Figure 1 Map showing the sampling sites of the 11 Taphrenalla species along Southern Thailand. Each colour of the distribution range follows the phylogenetic tree of all Taphrenalla species in fig. 3.
FIGURE 10 in Multigene phylogeny reveals the ribbed shell morphotypes in the land snail genus Sarika (Eupulmonata: Ariophantidae), with description of two new species from Thailand and Myanmar
FIGURE 10 Spermatophore of Sarika costabilis sp. nov. paratype CUMZ 7945. A) General view of spermatophore that was broken into two parts. B) Head filament. C–E) Tail filament. C) Three spines located close to the sperm sac. D) Region with and without branching spines. E) Branching spines on the tip region. Red dashed line indicates a series of ten branching spines near the middle length.
FIGURE 9 in Multigene phylogeny reveals the ribbed shell morphotypes in the land snail genus Sarika (Eupulmonata: Ariophantidae), with description of two new species from Thailand and Myanmar
FIGURE 9 Genitalia of Sarika spp. A, B) S. costabilis sp. nov. paratype CUMZ 7945. A) General view of the genital system. B) Internal structure of penis. C, D) S. costata sp. nov. paratype CUMZ 7947. C) General view of the genital system. D) Internal structure of penis. White arrows indicate the end of penis.
FIGURE 11 in Multigene phylogeny reveals the ribbed shell morphotypes in the land snail genus Sarika (Eupulmonata: Ariophantidae), with description of two new species from Thailand and Myanmar
FIGURE 11 Radula of Sarika spp. A) S. theodori specimen CUMZ 7942. B) S. siamensis specimen CUMZ 7951. C) S. costabilis sp. nov. paratype CUMZ 7945. D) S. costata sp. nov. paratype CUMZ 7947. Central tooth indicated by 'C' and blue colour; yellow colour indicates lateral teeth in the transition to marginal teeth.
FIGURE 8 in Multigene phylogeny reveals the ribbed shell morphotypes in the land snail genus Sarika (Eupulmonata: Ariophantidae), with description of two new species from Thailand and Myanmar
FIGURE 8 Shells of Sarika spp. A, B) S. costabilis sp. nov. A) Holotype CUMZ 7943. B) Paratype CUMZ 7944. C, D) S. costata sp. nov. C) Holotype CUMZ 7946. D) Paratype CUMZ 7947.
FIGURE 5 in Multigene phylogeny reveals the ribbed shell morphotypes in the land snail genus Sarika (Eupulmonata: Ariophantidae), with description of two new species from Thailand and Myanmar
FIGURE 5 Spermatophore of Sarika theodori, specimen CUMZ 7941. A) General view of spermatophore that was broken into two parts. B) Head filament. C–E) Tail filament. C) Three spines located close to the sperm sac. D) Region with and without branching spines. E) Branching spines on the tip region. Yellow arrow indicates the end of spines from the tip.
FIGURE 4 in Multigene phylogeny reveals the ribbed shell morphotypes in the land snail genus Sarika (Eupulmonata: Ariophantidae), with description of two new species from Thailand and Myanmar
FIGURE 4 Genitalia of Sarika spp. A, B) S. theodori, specimen CUMZ 7941. A) General view of the genital system. B) Internal structure of penis. C, D) S. siamensis, specimen CUMZ 7952. C) General view of the genital system. D) Internal structure of penis. Yellow arrow indicates the end of epiphallic caecum. White arrows indicate the end of penis.
FIGURE 2 in Multigene phylogeny reveals the ribbed shell morphotypes in the land snail genus Sarika (Eupulmonata: Ariophantidae), with description of two new species from Thailand and Myanmar
FIGURE 2 Bayesian inference tree based on a 1495 bp concatenated alignment dataset of COI + 16S + 28S genes. Numbers by the nodes are the Bayesian posterior probabilities (left) and ML bootstrap values (right); shown only for the nodes supported by BI ≥ 0.95 or ML ≥ 70%. Clade A consists of the S. resplendens-S. hainesi species groups. Clade B consists of the S. siamensis species group. Images of living snails are not to scale.
FIGURE 6 in Multigene phylogeny reveals the ribbed shell morphotypes in the land snail genus Sarika (Eupulmonata: Ariophantidae), with description of two new species from Thailand and Myanmar
FIGURE 6 Spermatophore of Sarika siamensis, specimen CUMZ 7951. A) General view of spermatophore that was broken into two parts. B) Head filament. C–E) Tail filament. C) Three spines located close to the sperm sac. D) Region with and without branching spines. E) Branching spines on the tip region. Yellow arrow indicates the end of spines from the tip.
FIGURE 1 in Multigene phylogeny reveals the ribbed shell morphotypes in the land snail genus Sarika (Eupulmonata: Ariophantidae), with description of two new species from Thailand and Myanmar
FIGURE 1 Geographic distribution of ribbed shell Sarika spp. based on the specimens examined herein. A) Distribution of S. theodori, S. costabilis sp. nov., and S. costata sp. nov. B) Distribution of S. siamensis. Black symbols indicate the DNA extracted specimens used in the molecular analysis; white symbols indicate shells or other preserved specimens.
FIGURE 3 in Multigene phylogeny reveals the ribbed shell morphotypes in the land snail genus Sarika (Eupulmonata: Ariophantidae), with description of two new species from Thailand and Myanmar
FIGURE 3 Shells of Sarika spp. A, B) S. theodori. A) Specimen NHMUK 1988.12.4.1514. B) Specimen CUMZ 7941. C, D) S. siamensis. C) Specimen CUMZ 7949. D) Specimen CUMZ 7950.
Figure 8 Shells. A–C. Taphrenalla diadema. A. specimen CUMZ 7175. B. specimen CUMZ 7177. C. specimen CUMZ 7171 showing channel-shaped suture with wide bottom. D, E. T in Integrative systematics reveals the new land-snail genus Taphrenalla (Eupulmonata: Ariophantidae) with a description of nine new species from Thailand
Figure 8 Shells. A–C. Taphrenalla diadema. A. specimen CUMZ 7175. B. specimen CUMZ 7177. C. specimen CUMZ 7171 showing channel-shaped suture with wide bottom. D, E. T. dalli sp. nov. D. holotype CUMZ 7183. E. specimen CUMZ 7189 showing channel-shaped suture with very wide bottom. Inset SEM image showing shell sculpture of each species.
Figure 1 in Record of pestiferous land snail, Macrochlamys indica Godwin-Austen 1883 (Gastropoda: Ariophantidae), on citrus and guava plants in Punjab, India
Figure 1. Snail on Kinnow mandarin nursery plant.
FIGURE 7 in Multigene phylogeny reveals the ribbed shell morphotypes in the land snail genus Sarika (Eupulmonata: Ariophantidae), with description of two new species from Thailand and Myanmar
FIGURE 7 Shell and body variation in Sarika siamensis.
Figure 7 in A new species of the genus Macrochlamys Grayı 1847 (Stylommatophora: Ariophantidae) from Western Himalayaı India
Figure 7. Scanning electron microscope images of the radula and jaw of Macrochlamys leggeae sp. nov (paratype NZSI M.31209/8): (a‒f) radula structure, (g) jaw of Macrochlamys leggeae sp. nov. (paratype NZSI M.31209/8).
Figure 4 in A new species of the genus Macrochlamys Grayı 1847 (Stylommatophora: Ariophantidae) from Western Himalayaı India
Figure 4. (a,b) Field photographs of Macrochlamys leggeae sp. nov. (c) Hilly grassland and valley above the Pushpawati River, type habitat of Macrochlamys leggeae sp. nov. (d) Extended view of valley of type habitat. (e,f) The peculiar habitat of type specimen at Valley of Flowers National Park, District Chamoli, Uttarakhand, India.
Figure 5 in A new species of the genus Macrochlamys Grayı 1847 (Stylommatophora: Ariophantidae) from Western Himalayaı India
Figure 5. The type localities of Macrochlamys species and the distributional range of Macrochlamys leggeae sp. nov. in western Himalaya of India.
Figure 1 in A new species of the genus Macrochlamys Grayı 1847 (Stylommatophora: Ariophantidae) from Western Himalayaı India
Figure 1. Shell measurements of Macrochlamys leggeae sp. nov. Abbreviations defined in the Materials and methods. Measurements in millimetres (paratype NZSI M.31209/8).
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