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7 results for “Coryphella”
FIG. 4 in A new species of the genus Coryphella (Gastropoda: Nudibranchia) from the Kuril Islands
FIG. 4. The reproductive system of Coryphella alexanderi sp. nov. (paratype ZMMU WS14380). Scale bar: 1 mm. РИС. 4. ПоловаЯ система Coryphella alexanderi sp. nov. (паратип ZMMU WS14380). МасштабнаЯ линейка: 1 mm.
FIG. 2 in A new species of the genus Coryphella (Gastropoda: Nudibranchia) from the Kuril Islands
FIG. 2. Living specimens of Coryphella alexanderi sp. nov. A. Paratype ZMMU WS14380 in natural environment. B. Holotype MIMB42268, dorsal view, specimens was damaged during collection. C. Holotype MIMB42268, dorsolateral view. D. Paratypes MIMB42269, specimens were damaged during collection. Scale bar: 5 mm. Photo credits: A – Alexander Semenov. BD – Anastassya Maiorova. РИС. 2. ПриЖиЗненные фотографии Coryphella alexanderi sp. nov. A. Паратип ZMMU WS14380 в естественной среде. B. Голотип MIMB42268, вид с дорсальной стороны, особь была неЗначительно повреЖдена при сборе. C. Голотип MIMB42268, вид с дорсолатеральной стороны. D. Паратипы MIMB42269, особи были повреЖдены при сборе. МасштабнаЯ линейка: 5 мм. Авторство фотографий: A – Александр Семенов. B–D – АнастасиЯ Майорова.
FIG. 1 in A new species of the genus Coryphella (Gastropoda: Nudibranchia) from the Kuril Islands
FIG. 1. Maximum likelihood phylogenetic tree of the genus Coryphella based on the concatenated dataset COI+16S+H3+28S. Numbers above branches indicate the posterior probabilities from Bayesian Inference (for PP> 0.95), numbers below branches – bootstrap values from Maximum likelihood (for BS> 60%). Blocks on the right indicate ABGD species delimitation results based on COI dataset. For Coryphella sanamyanae the ABGD analysis was not conducted since this species lacks COI data. РИС. 1. МолекулЯрнофилогенетическое дерево длЯ рода Coryphella, построенное на основании комбинированного выравниваниЯ (COI+16S+H3+28S) методом максимального правдоподобиЯ. ЗначениЯ над ветвЯми обоЗначают апостериорные вероЯтности (> 0.95). ЗначениЯ под ветвЯми обоЗначают поддерЖки бутстрепа (> 60%). Голубые блоки справа обоЗначают реЗультат делимитационного ABGD теста. ДлЯ Coryphella sanamyanae реЗультаты ABGD теста отсутствуют, поскольку последовательности СОI Этого вида недоступны в открытых баЗах данных.
FIG. 3 in A new species of the genus Coryphella (Gastropoda: Nudibranchia) from the Kuril Islands
FIG. 3. Buccal armature in Coryphella alexanderi sp. nov. A. Holotype MIMB42268, right jaw plate. B. Holotype MIMB42268, masticatory border of jaw plate. C. Holotype MIMB42268, details of denticulation on masticatory border. D. Holotype MIMB42268, radula. E. Holotype MIMB42268, anterior radular potion. F. Holotype MIMB42268, middle radular potion. G. Holotype MIMB42268, posterior radular potion. H. Paratype ZMMU WS14380, radula. I. Paratype ZMMU WS14380, anterior radular portion. K. Paratype ZMMU WS14380, rachidian and lateral teeth. L. Paratype ZMMU WS14380, denticulation of rachidian teeth. Scale bars: A, B, H – 150 µm. B – 100 µm. C – 10 µm. E–G, I–K – 30 µm. FIG. 3. Глоточное вооруЖение Coryphella alexanderi sp. nov. A. Голотип MIMB42268, праваЯ челюстнаЯ пластинка. B. Голотип MIMB42268, ЖевательнаЯ поверхность челюсти. C. Голотип MIMB42268, детали Зубчиков Жевательной поверхности. D. Голотип MIMB42268, радула. E. Голотип MIMB42268, переднЯЯ часть радулы. F. Голотип MIMB42268, среднЯЯ часть радулы. G. Голотип MIMB42268, ЗаднЯЯ часть радулы. H. Паратип ZMMU WS14380, радула. I. Паратип ZMMU WS14380, переднЯЯ часть радулы. K. Паратип ZMMU WS14380, центральный и латеральные Зубы. L. Паратип ZMMU WS14380, особенности ЗаЗубренности центрального Зуба. Масштабные линейки: A, B, H – 150 µм. B – 100 µм. C – 10 µм. E–G, I–K – 30 µм.
Рис. 2. А – сбросный канал (6 июнЯ 2008 г.); В – Cuthonella soboli (особь с поврежденными папиллами и ее кладка); C, D – Coryphella athodona (D – кладки); E–G – Catriona columbiana (F – кладка, G – радула). МасШтаб: B–F – 5 мм, G – 20 мкм. in Opisthobranch mollusks (Gastropoda: Opisthobranchia) of cooling system of the Vladivostok Thermal Power Station 2
Рис. 2. А – сбросный канал (6 июнЯ 2008 г.); В – Cuthonella soboli (особь с поврежденными папиллами и ее кладка); C, D – Coryphella athodona (D – кладки); E–G – Catriona columbiana (F – кладка, G – радула). МасШтаб: B–F – 5 мм, G – 20 мкм.
Scaling the high latitudes: evolution, diversification, and dispersal of Coryphella nudibranchs across the Northern Hemisphere
<p>Supplementary material for the paper </p> <p>Irina A. Ekimova, Dimitry M. Schepetov, Brenna Green, Maria V. Stanovova, Tatiana I. Antokhina, Terrence Gosliner, Manuel Antonio E. Malaquias, Ángel Valdés,<br>Scaling the high latitudes: evolution, diversification, and dispersal of Coryphella nudibranchs across the Northern Hemisphere,<br>Molecular Phylogenetics and Evolution, 2024, 108214,https://doi.org/10.1016/j.ympev.2024.108214</p> <p>Table S1. Specimens used in the present study with information on vouchers and GB accession numbers.</p> <p>Table S2. Best-fit models for each gene dataset and fragment length (bp)</p> <p>Table S3. Results of model test in ancestral area reconstruction analysis implemented in RASP</p> <p>Table S4. Distribution and ecological traits of <em>Coryphella</em> species.</p> <p>Table S5. Results of population analyses: pairwise Gst, Dst and Fst for <em>Coryphella verrucosa</em> populations.</p> <p>Table S6. Morphological traits of all currently accepted <em>Coryphella</em> species</p> <p>Data S1. Protocols for DNA extraction, amplification, sequencing</p> <p>Data S2. Unedited ML and BI concatenated trees, alignment without <em>Coryphella verta</em></p> <p>Data S3. Unedited ML and BI concatenated trees, alignment with <em>Coryphella verta</em></p> <p>Figure S1. Molecular phylogenetic hypothesis based on the Maximum Likelihood analysis, concatenated dataset of five markers (COI + 16S + H3 + 28S + 18S), the dataset includes tropical Atlantic <em>Coryphella verta</em>. Species-level clades and outgroups are collapsed to a single branch. Numbers above branches indicate posterior probabilities from Bayesian Inference, numbers below branches – bootstrap support from Maximum Likelihood.</p> <p>Figure S2. Molecular phylogenetic hypothesis based on the Maximum Likelihood analysis, concatenated dataset of four markers (COI + 16S + H3 + 28S). Numbers above branches bootstrap support from Maximum Likelihood.</p> <p>Figure S3. Molecular phylogenetic hypothesis based on the Bayesian Inference, concatenated dataset of four markers (COI + 16S + H3 + 28S). Numbers above branches indicate posterior probabilities from Bayesian Inference.</p> <p>Figure S4. Results of phylogeographic analysis of trans-Arctic <em>C. verrucosa</em> <em>(a)</em>, <em>C. nobilis</em> <em>(b)</em>, <em>C. amabilis / C. gracilis</em> <em>(c)</em>, based on the Coalescent approach from BEAST for the COI dataset using the tentative group-specific divergence rates of 6.1% My−1 for gastropods. Coding of each collection locality is given on the upper left, same localities were tested in the Ancestral area reconstruction analysis (AAR). For respective deep nodes the results of AAR are given, and divergent time estimates are displayed on respective nodes with error bars for node ages of 95% highest posterior density intervals. Colored dots in respective terminals indicate the collection locality for each specimen. Grey-shaded blocks indicate interglacial periods HOL (Holocene, Marine Isotope Stage 1 (M1)): 0-10 Kya, LIG (Last Intergracial, M5): 115-130 Kya, LBI (La Bouchet Interglacial (M7): 190-205 and 230-242 Kya, PI (Purfleet Interglacial, M9): 300-337 Kya, HI (Hoxonian Interglacial, M11): 374-424 Kya, M13 (Marine Isotope stage 13): 474-524 Kya. X-axis shows dating in Kya on A, B and in Mya on C.</p>
FIGURE 6. A, Aphelodoris antillensis. B, Platydoris angustipes. C, Sclerodoris prea. D, Felimare acriba. E-F, Felimare fregona. G, Felimare kempfi. H, Coryphella dushia. I, Flabellina engeli. J, Flabellina verta. K, Austraeolis catina. L Nanuca sebastiani. M, Berghia creutzbergi. N in The opisthobranch gastropods (Mollusca: Heterobranchia) from Venezuela: an annotated and illustrated inventory of species
FIGURE 6. A, Aphelodoris antillensis. B, Platydoris angustipes. C, Sclerodoris prea. D, Felimare acriba. E-F, Felimare fregona. G, Felimare kempfi. H, Coryphella dushia. I, Flabellina engeli. J, Flabellina verta. K, Austraeolis catina. L Nanuca sebastiani. M, Berghia creutzbergi. N, Cuthona iris. Ο, Tritoniopsis frydis. Sea s1ugs in their natura1 envirοnment (Gaby Carias).
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