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Supplementary material 4 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure S4

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Supplementary material 3 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure S3

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Supplementary material 2 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure S2

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Supplementary material 1 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure S1

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Figure 9 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure 9 Plot of the results of discriminant function analysis of shell length, width, and height for individuals of Nipponacmea species.

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Figure 5 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure 5 Pigmentation of side of foot AN. gloriosa, RM31861, Manazuru, Kanagawa (14) BN. fuscoviridis, RM31847, Tateyama, Chiba (13) CN. boninensis, RM31816, Chichijima Is., Ogasawara (43) DN. schrenckii, RM31908, Kazamaura, Aomori (6) EN. concinna, RM31830, Omura, Nagasaki (34) FN. radula, RM31900, Nagato, Yamaguchi (31) GN. nigrans, RM32361, Kushimoto, Wakayama (20) HN. habei, RM31870, Otaru, Hokkaido (2) IN. teramachii, RM31917, Tateyama, Chiba (13). Scale bars: 5 mm.

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Figure 1 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure 1 Collection localities of the specimens used in this study. The numbers are shown in Table 1.

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Figure 7 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure 7 Scanning micrographs of radular teeth of of NipponacmeaAN. gloriosa, RM32355, Ibusuki, Kagoshima (41) BN. gloriosa, RM31860, Tateyama, Chiba (13) CN. fuscoviridis, RM31858, Kimotsukicho, Kagoshima (42) DN. fuscoviridis, RM32354, Akune, Kagoshima (39) EN. fuscoviridis, RM31834, Rumoi, Hokkaido (1) FN. boninensis, RM31817, Chichijima Is., Ogasawara (43) GN. boninensis, RM31815, Chichijima Is., Ogasawara (43) HN. schrenckii, RM31915, Suo-Oshima, Yamaguchi (30) IN. schrenckii, RM31906, Kazamaura, Aomori (6) JN. schrenckii, RM31916, Nagatamachi, Nagasaki (35) KN. concinna, RM31831, Omura, Nagasaki (34) LN. concinna, RM32353, Nagatamachi, Nagasaki (35) MN. concinna, RM31823, Tahara, Aichi (19) NN. radula, RM31898, Hamamatsu, Shizuoka (18) ON. radula, RM31904, Omura, Nagasaki (34) PN. radula, RM32363, Akune, Kagoshima (37) QN. nigrans, RM32360, Kushimoto, Wakayama (20) RN. nigrans, RM32359, Kushimoto, Wakayama (20) SN. nigrans, RM32358, Kushimoto, Wakayama (20) TN. habei, RM32364, Tateyama, Chiba (13) UN. habei, RM31872, Suttu, Hokkaido (3) VN. habei, RM31873, Usujiri, Hokkaido (5) WN. habei, RM32357, Usujiri, Hokkaido (5) XN. habei, RM32356, Tateyama, Chiba (13) YN. teramachii, RM31926, Sanuki, Kagawa (28) ZN. teramachii, RM31924, Ohira, Oita (25). Scale bars: 50 μm.

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Figure 6 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure 6 Configuration of radula sac of nine species of NipponacmeaAN. gloriosa, RM32355, Ibusuki, Kagoshima (41) BN. fuscoviridis, RM32354, Akune, Kagoshima (39) CN. boninensis, RM31817, Chichijima Is., Ogasawara (43) DN. schrenckii, RM31906, Kazamaura, Aomori (6) EN. concinna, RM32353, Nagatamachi, Nagasaki (35) FN. radula, RM32363, Akune, Kagoshima (37) GN. nigrans, RM32362, Kushimoto, Wakayama (20) HN. habei, RM32356, Tateyama, Chiba (13) IN. teramachii, RM31928, Suo-Oshima, Yamaguchi (30). Scale bars: 5 mm.

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Figure 3 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure 3 Shell morphology and color pattern of Nipponacmea gloriosa and four species of Clade A A–CN. gloriosa, RM31869, Ibusuki, Kagoshima (41) DN. gloriosa, RM31860, Tateyama, Chiba (13) EN. gloriosa, RM31862, Manazuru, Kanagawa (14) F–HN. fuscoviridis, RM31858, Kimotsuki, Kagoshima (42) IN. fuscoviridis, RM31846, Nikaho, Akita (10) JN. fuscoviridis, RM31859, Kimotsuki, Kagoshima (42) K–MN. boninensis, RM31817, Chichijima Is., Ogasawara (43) NN. boninensis, RM31815, Chichijima Is., Ogasawara (43) ON. boninensis, RM31816, Chichijima Is., Ogasawara (43) P–RN. schrenckii, RM31906, Kazamaura, Aomori (6) SN. schrenckii, RM31908, Kazamaura, Aomori (6) TN. schrenckii, RM31916, Nagatamachi, Nagasaki (35) U–WN. concinna, RM31820, Ofunato, Iwate (11) XN. concinna, RM31824, Mihamacho, Wakayama (21) YN. concinna, RM31828, Suo-Oshima, Yamaguchi (30). Scale bars: 5 mm.

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Figure 2 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure 2 Maximum likelihood phylogenetic tree generated from 1809 bp constructed from the concatenated COI, Cytb, 12S rRNA, and 16S rRNA gene sequences from Nipponacmea representatives. Numbers above or below the branches are ML bootstrap values and Bayesian posterior probabilities, respectively. See Table 2 for sample numbers.

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Figure 4 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193

Figure 4 Shell morphology and color pattern of N. radula and three species of clade B A–CN. radula, RM31904, Omura, Nagasaki (34) DN. radula, RM31902, Omura, Nagasaki (34) EN. radula, RM31899, Nagato, Yamaguchi (31) F–HN. nigrans, RM31892, Nishiku, Fukuoka (32) IN. nigrans, RM31888, Kada, Wakayama (22) JN. nigrans, RM31895, Higashisonogi, Nagasaki (33) K–MN. nigrans, RM31887, Minamiizu, Shizuoka (15) NN. nigrans, RM31886, Minamiizu, Shizuoka (15) ON. nigrans, RM31897, Higashisonogi, Nagasaki (33) P–RN. habei, RM31874, Ishinomaki, Miyagi (12) SN. habei, RM31875, Tateyama, Chiba (13) TN. habei, RM31873, Usujiri, Hokkaido (5) U–WN. teramachii, RM31930, Nishiku, Fukuoka (32) XN. teramachii, RM31925, Sanuki, Kagawa (28) YN. teramachii, RM31922, Ainancho, Ehime (24). Scale bars: 5 mm.

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FIGURE 10 in New genera and a new species in the "Cryptanthoid Complex" (Bromeliaceae: Bromelioideae) based on the morphology of recently discovered species, seed anatomy, and improvements in molecular phylogeny

FIGURE 10. Map with the geographical ranges of Cryptanthus, Orthophytum, and Siqueiranthus.

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Supplementary material 10 from: Wu Q, Xing BP, Lin M, Chen GC, Wang CG (2022) Molecular phylogeny suggests synonymy of Sandalia bridgesi Lorenz, 2009 with S. triticea (Lamarck, 1810) (Gastropoda, Ovulidae). ZooKeys 1096: 189-206. https://doi.org/10.3897/zookeys.1096.79402

Figure S4

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Supplementary material 9 from: Wu Q, Xing BP, Lin M, Chen GC, Wang CG (2022) Molecular phylogeny suggests synonymy of Sandalia bridgesi Lorenz, 2009 with S. triticea (Lamarck, 1810) (Gastropoda, Ovulidae). ZooKeys 1096: 189-206. https://doi.org/10.3897/zookeys.1096.79402

Figure S3

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Supplementary material 8 from: Wu Q, Xing BP, Lin M, Chen GC, Wang CG (2022) Molecular phylogeny suggests synonymy of Sandalia bridgesi Lorenz, 2009 with S. triticea (Lamarck, 1810) (Gastropoda, Ovulidae). ZooKeys 1096: 189-206. https://doi.org/10.3897/zookeys.1096.79402

Figure S2

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Supplementary material 6 from: Wu Q, Xing BP, Lin M, Chen GC, Wang CG (2022) Molecular phylogeny suggests synonymy of Sandalia bridgesi Lorenz, 2009 with S. triticea (Lamarck, 1810) (Gastropoda, Ovulidae). ZooKeys 1096: 189-206. https://doi.org/10.3897/zookeys.1096.79402

Table S6

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Supplementary material 7 from: Wu Q, Xing BP, Lin M, Chen GC, Wang CG (2022) Molecular phylogeny suggests synonymy of Sandalia bridgesi Lorenz, 2009 with S. triticea (Lamarck, 1810) (Gastropoda, Ovulidae). ZooKeys 1096: 189-206. https://doi.org/10.3897/zookeys.1096.79402

Figure S1

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Supplementary material 5 from: Wu Q, Xing BP, Lin M, Chen GC, Wang CG (2022) Molecular phylogeny suggests synonymy of Sandalia bridgesi Lorenz, 2009 with S. triticea (Lamarck, 1810) (Gastropoda, Ovulidae). ZooKeys 1096: 189-206. https://doi.org/10.3897/zookeys.1096.79402

Table S5

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Supplementary material 4 from: Wu Q, Xing BP, Lin M, Chen GC, Wang CG (2022) Molecular phylogeny suggests synonymy of Sandalia bridgesi Lorenz, 2009 with S. triticea (Lamarck, 1810) (Gastropoda, Ovulidae). ZooKeys 1096: 189-206. https://doi.org/10.3897/zookeys.1096.79402

Table S4

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