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49 results for “Semisulcospiridae”

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Fig. 19 in A systematic revision of the genus Juga from fresh waters of the Pacific Northwest, USA (Cerithioidea, Semisulcospiridae)

Fig. 19. Shell morphology of Juga newberryi (I. Lea, 1860). A. Melania newberryi I. Lea, 1860. Lectotype, USNM 118961. B–K. Sequenced vouchers. B. USNM 1295080. C. USNM 1295084. D. USNM 1295085. E. USNM 1413317. F. USNM 1413321. G. USNM 1413332. H. USNM 1413334. I. USNM 1413428. J. USNM 1413429. K. USNM 1413430. L–M. USNM 905120. N. USNM 12174. Scale bar = 1 cm.

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Fig. 22 in A systematic revision of the genus Juga from fresh waters of the Pacific Northwest, USA (Cerithioidea, Semisulcospiridae)

Fig. 22. Type material of Juga nigrina (I. Lea, 1856). A. Melania nigrina I. Lea, 1856. Lectotype, USNM 118992. B. Melania shastaensis I. Lea, 1856. Lectotype, USNM 119283. C. Goniobasis circumlineata Tryon, 1865. Lectotype, ANSP 27573. D. Goniobasis chacei Henderson, 1935. Holotype, UCM 18058a. E. Goniobasis coquillensis Henderson, 1935. Holotype, UCM 21168a. F. Goniobasis orickensis Henderson, 1935. Holotype, UCM 17710a. G. Goniobasis yrekaensis Henderson, 1935. Holotype, UCM 17735a. H. Goniobasis yrekaensis obscura Henderson, 1935. Holotype, UCM 17724a. Scale bar = 1 cm.

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Fig. 27 in A systematic revision of the genus Juga from fresh waters of the Pacific Northwest, USA (Cerithioidea, Semisulcospiridae)

Fig. 27. Species erroneously attributed to Juga H. Adams & A. Adams, 1854. A. Goniobasis columbiensis Whiteaves, 1905, syntype (CMML 2042), original figure (Whiteaves 1905: pl. 2 fig. 11). B. Goniobasis rubiginosa I. Lea, 1862, lectotype (Graf 2001: 91) (USNM 119297), original figure (Lea 1863a, 1863b: pl. 38 fig. 193). Scale bar = 1 cm.

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Fig. 2. Life habit. A in A systematic revision of the genus Juga from fresh waters of the Pacific Northwest, USA (Cerithioidea, Semisulcospiridae)

Fig. 2. Life habit. A. On leaves. Drift Creek on Cascade Highway NE, Oregon (J. plicifera (I. Lea, 1838)). B. Under submerged stones (with gelatinous egg masses). Youngs River Falls, just upstream of Youngs River Rd, Oregon (J. plicifera). C. On mud and leaves. Muddy Hollow, Oregon (J. bulbosa (A. Gould, 1847)). D. On submerged wood. Unnamed Creek at Skookum Creek Rd, Oregon (J. canella sp. nov.). E. On sand. Hat Creek, California (J. douglasi sp. nov.). F. On the spray-moistened sides of boulders. Pit River at U.S. Hwy 299, California (J. occata (Hinds, 1844)).

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FIGURE 11 in Diversification in ancient Lake Biwa: integrative taxonomy reveals overlooked species diversity of the Japanese freshwater snail genus Semisulcospira (Mollusca: Semisulcospiridae)

FIGURE 11 Shells of Semisulcospira salebrosa sp. nov. A–G, Holotype, KUZ Z4131. H–J, Paratype, KUZ Z4133. K–L, Paratype, KUZ Z4135. M–O, Specimen from Take-shima Island, KUZ Z4138. A–C, H, K, M, Adult shell. A–C, H, M, Female. K, Male. D, I, L, N, Operculum. E–G, J, O, Embryonic shell. Scale bars: 10 mm (A–D, H–I, K–L, M–N), 1 mm (E–G, J, O). All specimens were treated with 3% sodium hypochlorite

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FIGURE 9 in Diversification in ancient Lake Biwa: integrative taxonomy reveals overlooked species diversity of the Japanese freshwater snail genus Semisulcospira (Mollusca: Semisulcospiridae)

FIGURE 9 Shells of Semisulcospira watanabei sp. nov. A–G, Holotype, KUZ Z4109. H–J, Paratype, KUZ Z4110. K–L, Paratype, KUZ Z4114. M–N. Specimen from Oura, KUZ Z4117. O–Q, Specimen from Nihonmatsu, KUZ Z4118. R–T, Specimen from Horikiri Port, KUZ Z4120. A–C, H, K, M, O, R, Adult shell. A–C, H, O, R, Female. K, Male. M, Juvenile. D, I, L, N, P, S, Operculum. E–G, J, Q, T, Embryonic shell. Scale bars: 10 mm (A–D, H–I, K–L, M–N, O–P, R–S), 1 mm (E–G, J, Q, T). All specimens were treated with 3% sodium hypochlorite

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FIGURE 7 in Diversification in ancient Lake Biwa: integrative taxonomy reveals overlooked species diversity of the Japanese freshwater snail genus Semisulcospira (Mollusca: Semisulcospiridae)

FIGURE 7 Results of Random Forest analyses conducted for five Semisulcospira species. Euclidean distances generated from proximities among individuals are plotted. A, Female. B, Male

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FIGURE 6 in Diversification in ancient Lake Biwa: integrative taxonomy reveals overlooked species diversity of the Japanese freshwater snail genus Semisulcospira (Mollusca: Semisulcospiridae)

FIGURE 6 Map of Lake Biwa indicating geographical variation in the frequency of sculpture types in the adult females of five Semisulcospira species. Colours of locality names correspond to the colour coding in fig. 1

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FIGURE 4 in Diversification in ancient Lake Biwa: integrative taxonomy reveals overlooked species diversity of the Japanese freshwater snail genus Semisulcospira (Mollusca: Semisulcospiridae)

FIGURE 4 Results of ADMIXTURE analysis based on 738 SNP s conducted for five Semisulcospira species. Bar colours of the species in K = 5 correspond to the colour coding in fig. 3

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FIGURE 5 in Diversification in ancient Lake Biwa: integrative taxonomy reveals overlooked species diversity of the Japanese freshwater snail genus Semisulcospira (Mollusca: Semisulcospiridae)

FIGURE 5 Phylogenetic relationships of five Semisulcospira species estimated by the Neighbor-Net reconstructed based on uncorrected p-distances of 738 SNP s

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FIGURE 3 in Diversification in ancient Lake Biwa: integrative taxonomy reveals overlooked species diversity of the Japanese freshwater snail genus Semisulcospira (Mollusca: Semisulcospiridae)

FIGURE 3 Results of principal components analysis based on 738 SNP s conducted for five Semisulcospira species. A, Principal component (PC) 1 vs PC 2. B, PC2 vs PC3. C, PC 3 vs PC4. D, PC4 vs PC5

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FIGURE 2 in Diversification in ancient Lake Biwa: integrative taxonomy reveals overlooked species diversity of the Japanese freshwater snail genus Semisulcospira (Mollusca: Semisulcospiridae)

FIGURE 2 Schematic drawings representing shell measurements of Semisulcospira species in this study. A, Spire angle (SA) and aperture swell length (ASL) of adult shell. B–D, Criteria for types of sculptures

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FIGURE 1 in Diversification in ancient Lake Biwa: integrative taxonomy reveals overlooked species diversity of the Japanese freshwater snail genus Semisulcospira (Mollusca: Semisulcospiridae)

FIGURE 1 Map of Lake Biwa (A) and Oura Bay (B) showing 15 sampling localities: blue, Semisulcospira niponica; green, S. fuscata; purple, S. watanabei sp. nov.; red, S. nakanoi sp. nov.; orange, S. salebrosa sp. nov; black, putative hybrid between S. fuscata and S. watanabei sp. nov.

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FIGURE 10 in Diversification in ancient Lake Biwa: integrative taxonomy reveals overlooked species diversity of the Japanese freshwater snail genus Semisulcospira (Mollusca: Semisulcospiridae)

FIGURE 10 Shells of Semisulcospira nakanoi sp. nov. A–G, Holotype, KUZ Z4122. H–J, Paratype, KUZ Z4125. K–L, Paratype, KUZ Z4126. M–Q, Specimens from Onoe Port, KUZ Z4129, Z4130. A–C, H, K, M, P, Adult shell. A–C, H, M, Female. K, P, Male. D, I, L, N, Q, Operculum. E–G, J, O, Embryonic shell. Scale bars: 10 mm (A–D, H–I, K–L, M–N, P–Q), 1 mm (E–G, J, O). All specimens were treated with 3% sodium hypochlorite

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FIGURE 12 in Diversification in ancient Lake Biwa: integrative taxonomy reveals overlooked species diversity of the Japanese freshwater snail genus Semisulcospira (Mollusca: Semisulcospiridae)

FIGURE 12 Radulae of Semisulcospira species. A–G, Semisulcospira niponica: A, Oura Port, KUZ Z4091; B, Nagahama Port, KUZ Z4093; C, Iso, KUZ Z4095; D, Kitakomatsu Port, KUZ Z4097; E, Katata Port, KUZ Z4099; F, Otsu Port, KUZ Z4101; G, Nango, KUZ Z4103. H–J, Semisulcospira fuscata: H, Lake Yogo, KUZ Z4103; I, Oura, KUZ Z4105; J, Nihonmatsu, KUZ Z4107. K–L, Semisulcospira watanabei sp. nov.: K, Kitakomatsu Port, KUZ Z4115; L, Horikiri Port, KUZ Z4120. M–N, Semisulcospira nakanoi sp. nov.: M, Onoe Port, KUZ Z4129; N, Chikubu-shima Island, KUZ Z4127. O–P, Semisulcospira salebrosa sp. nov.: O, Take-shima Island, KUZ Z4138; P, Shiraishi-jima Island, KUZ Z4136. Scale bars: 100 Μm

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Figure 2 from: Xu Y, Zeng S, Meng Y, Yang D, Yang S (2024) The mitochondrial genome of Hua aristarchorum (Heude, 1889) (Gastropoda, Cerithioidea, Semisulcospiridae) and its phylogenetic implications. ZooKeys 1192: 237-255. https://doi.org/10.3897/zookeys.1192.116269

Figure 2 Amino acid composition (a) and relative synonymous codon usage (b) of the H. aristarchorum mitogenome. The codon families are provided under the x-axis.

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Figure 3 from: Xu Y, Zeng S, Meng Y, Yang D, Yang S (2024) The mitochondrial genome of Hua aristarchorum (Heude, 1889) (Gastropoda, Cerithioidea, Semisulcospiridae) and its phylogenetic implications. ZooKeys 1192: 237-255. https://doi.org/10.3897/zookeys.1192.116269

Figure 3 Nucleotide diversity analysis (a) and Ka/Ks rates (b) of 13 PCGs based on nine Semisulcospiridae species. The Pi values for the 13 PCGs is shown in the graph, with the PCGs in gray, rRNAs in orange, and tRNAs in blue. The black line represents the value of nucleotide diversity (Pi) (window size = 100 bp, step size = 20 bp). The blue, orange and gray columns represent the Ks, Ka and Ka/Ks values, respectively.

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Figure 5 from: Xu Y, Zeng S, Meng Y, Yang D, Yang S (2024) The mitochondrial genome of Hua aristarchorum (Heude, 1889) (Gastropoda, Cerithioidea, Semisulcospiridae) and its phylogenetic implications. ZooKeys 1192: 237-255. https://doi.org/10.3897/zookeys.1192.116269

Figure 5 Phylogenetic tree (BI) of Cerithioidea species inferred from dataset I AA (a), II PCG123 (b) and III PCG12 (c). The numbers at the internodes represent maximum likelihood (ML) bootstrap (BS) and Bayesian inference (BI) posterior probabilities (PP). The GenBank accession numbers used are listed after the species names. The scale bar indicates the number of substitutions per site. Note: H. aristarchorum is highlighted in red.

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Figure 1 from: Xu Y, Zeng S, Meng Y, Yang D, Yang S (2024) The mitochondrial genome of Hua aristarchorum (Heude, 1889) (Gastropoda, Cerithioidea, Semisulcospiridae) and its phylogenetic implications. ZooKeys 1192: 237-255. https://doi.org/10.3897/zookeys.1192.116269

Figure 1 Gene map of the H. aristarchorum mitogenome. The photo in the middle is the studied specimen of H. aristarchorum (photograph by Yuanzheng Meng). The innermost and middle circles depict the GC content and distribution of the sequencing depth, respectively. The outermost circle represents the arrangement of genes: inner genes from the forward strand, and outer genes from the reverse strand, with the protein-coding genes (PCGs) in green, ribosomal RNAs (rRNAs) in orange, and transfer RNA genes (tRNAs) in red.

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Supplementary material 1 from: Xu Y, Zeng S, Meng Y, Yang D, Yang S (2024) The mitochondrial genome of Hua aristarchorum (Heude, 1889) (Gastropoda, Cerithioidea, Semisulcospiridae) and its phylogenetic implications. ZooKeys 1192: 237-255. https://doi.org/10.3897/zookeys.1192.116269

Supplementary information

opencc-zeroFeb 2024View details →

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