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FIG. 10 in Fifty shades of white: morphological and molecular diversity of the Cadlina laevis species complex (Gastropoda: Nudibranchia) in the North-West Pacific
FIG. 10. Buccal armature of Cadlina umiushi from the Sea of Japan (SEM). A. MIMB47995, radula. B. MIMB47995, anterior radular portion, rachidian and inner lateral teeth. C. MIMB47995, outer lateral teeth. D. MIMB47995, radula on odontophore. E. MIMB47995, labial cuticle. F. MIMB47995, labial cuticle elements. G. MIMB47996, radula. H. MIMB47996, rachidian and innermost lateral teeth. I. MIMB47996, outer lateral teeth. Scale bars: A = 500 µm; B, C, I = 50 µm; D, E, G = 200 µm; F = 10 µm; H = 20 µm. РИС. 10. Буккальное вооруЖение Cadlina umiushi иЗ Японского морЯ (СЭМ). А. MIMB47995, радула. B. MIMB47995, переднЯЯ часть радулы, центральные и внутренние латеральные Зубы. С. MIMB47995, внешние латеральные Зубы. D. MIMB47995, радула на одонтофоре. Е. MIMB47995, лабиальнаЯ кутикула. F. MIMB47995, Элементы лабиальной кутикулы. G. MIMB47996, радула. H. MIMB47996, центральные и внутренние латеральные Зубы. I. MIMB47996, внешние латеральные Зубы. Масштабные линейки: A = 500 мкм; B, C, I = 50 мкм; D, E, G = 200 мкм; F = 10 мкм; Н = 20 мкм.
FIG. 9 in Fifty shades of white: morphological and molecular diversity of the Cadlina laevis species complex (Gastropoda: Nudibranchia) in the North-West Pacific
FIG. 9. Buccal armature of Cadlina sp. 6 (MIMB47980, Shikotan Is., Sea of Okhotsk) and Cadlina sp. 5 (MIMB47979, Iturup Is., Sea of Okhotsk) (SEM). A. Cadlina sp. 6, anterior radular portion. B. Cadlina sp. 6, rachidian and inner lateral teeth. C. Cadlina sp. 6, rachidian and innermost lateral teeth. D. Cadlina sp. 6, middle radular portion. E. Cadlina sp. 6, outer lateral teeth. F. Cadlina sp. 6, rachidian and innermost lateral teeth. G. Cadlina sp. 6, radula on odontophore. H. Cadlina sp. 6, labial cuticle. I. Cadlina sp. 6, labial cuticle elements. J. Cadlina sp. 5, radula. K. Cadlina sp. 5, rachidian and inner lateral teeth. L. Cadlina sp. 5, rachidian teeth. M. Cadlina sp. 5, outer lateral teeth. N. Cadlina sp. 5, radula on odontophore. O. Cadlina sp. 5, labial cuticle. P. Cadlina sp. 5, labial cuticle rodlets. Scale bars: A, N, O = 100 µm; B, E, M = 50 µm; C, F, I, L = 10 µm; D, G, H, J = 200 µm; K, P = 20 µm. РИС. 9. Буккальное вооруЖение Cadlina sp. 6 (MIMB47980, о. Шикотан, Охотское море) и Cadlina sp. 5 (MIMB47979, о. Итуруп, Охотское море) (СЭМ). A. Cadlina sp. 6, переднЯЯ часть радулы. B. Cadlina sp. 6, центральные и внутренние латеральные Зубы. C. Cadlina sp. 6, центральные и внутренние латеральные Зубы. D. Cadlina sp. 6, среднЯЯ часть радулы. E. Cadlina sp. 6, внешние латеральные Зубы. F. Cadlina sp. 6, центральные и внутренние латеральные Зубы. G. Cadlina sp. 6, радула на одонтофоре. H. Cadlina sp. 6, лабиальнаЯ кутикула. I. Cadlina sp. 6, Элементы лабиальной кутикулы. J. Cadlina sp. 5, радула. К. Cadlina sp. 5, центральные и внутренние латеральные Зубы. L. Cadlina sp. 5, центральные Зубы. М. Cadlina sp. 5, внешние латеральные Зубы. N. Cadlina sp. 5, радула на одонтофоре. О. Cadlina sp. 5, лабиальнаЯ кутикула. P. Cadlina sp. 5, Элементы лабиальной кутикулы. Масштабные линейки: A, N, O = 100 мкм; B, E, M = 50 мкм; C, F, I, L = 10 мкм; D, G, H, J = 200 мкм; К, Р = 20 мкм.
FIG. 8 in Fifty shades of white: morphological and molecular diversity of the Cadlina laevis species complex (Gastropoda: Nudibranchia) in the North-West Pacific
FIG. 8. Buccal armature of Cadlina sp. 7 (MIMB47981, Sea of Japan) and Cadlina sp. 4 (MIMB47978, Sea of Japan) (SEM). А. Cadlina sp. 7, radula. B. Cadlina sp. 7, anterior radular portion, rachidian and inner lateral teeth. C. Cadlina sp. 7, outer lateral teeth. D. Cadlina sp. 7, rachidian and innermost lateral teeth. E. Cadlina sp. 4, radula. F. Cadlina sp. 4, anterior radular portion, rachidian and inner lateral teeth. G. Cadlina sp. 4, rachidian and innoermost lateral teeth. H. Cadlina sp. 4, outer lateral teeth. I. Cadlina sp. 4, labial cuticle rodlets. Scale bars: A = 300 µm; B, F = 100 µm; C = 30 µm; D = 10 µm; E = 400 µm; G, I = 20 µm; H = 50 µm. РИС. 8. Буккальное вооруЖение Cadlina sp. 7 (MIMB47981, Японское море) и Cadlina sp. 4 (MIMB47978, Японское море) (СЭМ). А. Cadlina sp. 7, радула. B. Cadlina sp. 7, переднЯЯ часть радулы, центральные и внутренние латеральные Зубы. C. Cadlina sp. 7, наруЖные латеральные Зубы. D. Cadlina sp. 7, центральные и внутренние латеральные Зубы. Е. Cadlina sp. 4, радула. F. Cadlina sp. 4, переднЯЯ часть радулы, центральные и внутренние латеральные Зубы. G. Cadlina sp. 4, переднЯЯ часть радулы, центральные и внутренние латеральные Зубы. H. Cadlina sp. 4, внешние латеральные Зубы. I. Cadlina sp. 4, Элементы лабиальной кутикулы. Масштабные линейки: A = 300 мкм; B, F = 100 мкм; С = 30 мкм; D = 10 мкм; Е = 400 мкм; G, I = 20 мкм; Н = 50 мкм.
FIG. 7 in Fifty shades of white: morphological and molecular diversity of the Cadlina laevis species complex (Gastropoda: Nudibranchia) in the North-West Pacific
FIG. 7. Buccal armature of Cadlina sp. 3 from the Sea of Japan (SEM). A. MIMB47975, radula. B. MIMB47975, anterior radular portion, rachidian and inner lateral teeth. C. MIMB47975, anterior radular portion, outer lateral teeth. D. MIMB47976, radula. E. MIMB47976, anterior radular portion, rachidian and inner lateral teeth. F. MIMB47976, anterior radular portion, outer lateral teeth. G. MIMB47976, odontophore with radula. H. MIMB47976, labial cuticle. I. MIMB47976, labial cuticle rodlets. J. MIMB47973, anterior radular portion, rachidian and inner lateral teeth. K. MIMB47973, anterior radular portion, outer lateral teeth. L. MIMB47973, labial cuticle rodlets. Scale bars: A, D, H = 500 µm; B, C, F, J = 50 µm; E = 100 µm; G = 200 µm; I, L = 10 µm; K = 20 µm. РИС. 7. Буккальное вооруЖение Cadlina sp. 3 иЗ Японского морЯ (SEM). А. MIMB47975, радула. B. MIMB47975, переднЯЯ часть радулы, центральные и внутренние латеральные Зубы. С. MIMB47975, переднЯЯ часть радулы, внешние латеральные Зубы. D. MIMB47976, радула. Е. MIMB47976, переднЯЯ часть радулы, центральные и внутренние латеральные Зубы. F. MIMB47976, переднЯЯ часть радулы, внешние латеральные Зубы. G. MIMB47976, одонтофор с радулой. Н. MIMB47976, лабиальнаЯ кутикула. I. MIMB47976, Элементы лабиальной кутикулы. J. MIMB47973, переднЯЯ часть радулы, центральные и внутренние латеральные Зубы. К. MIMB47973, переднЯЯ часть радулы, внешние латеральные Зубы. L. MIMB47973, Элементы лабиальной кутикулы. Масштабные линейки: A, D, H = 500 мкм; B, C, F, J = 50 мкм; Е = 100 мкм; G = 200 мкм; I, L = 10 мкм; К = 20 мкм.
FIG. 6 in Fifty shades of white: morphological and molecular diversity of the Cadlina laevis species complex (Gastropoda: Nudibranchia) in the North-West Pacific
FIG. 6. Buccal armature of Cadlina sp. 1 (MIMB47971, Urup Is., Sea of Okhotsk) and Cadlina sp. 2 (MIMB42230, Iturup Is., Sea of Okhotsk) (SEM). A. Cadlina sp. 1, radula. B. Cadlina sp. 1, anterior radular portion, rachidian and lateral teeth. C. Cadlina sp. 1, rachidian and innermost lateral teeth. D. Cadlina sp. 1, outer lateral teeth. E. Cadlina sp. 1, outer lateral teeth. F. Cadlina sp. 1, labial cuticle rodlets. G. Cadlina sp. 2, anterior radular portion, rachidian and inner lateral teeth. H. Cadlina sp. 2, outer lateral teeth. I. Cadlina sp. 2, labial cuticle rodlets. Scale bars: A = 500 µm; B = 300 µm; C = 50 µm; D, E = 100 µm; F = 20 µm; G, H = 30 µm; I = 10 µm. РИС. 6. Буккальное вооруЖение Cadlina sp. 1 (MIMB47971, о. Уруп, Охотское море) и Cadlina sp. 2 (MIMB42230, о. Итуруп, Охотское море) (СЭМ). А. Cadlina sp. 1, радула. B. Cadlina sp. 1, переднЯЯ часть радулы, центральные и внутренние латеральные Зубы. C. Cadlina sp. 1, центральные и внутренние латеральные Зубы. D. Cadlina sp. 1, внешние латеральные Зубы. Е. Cadlina sp. 1, внешние латеральные Зубы. F. Cadlina sp. 1, Элементы лабиальной кутикулы. G. Cadlina sp. 2, переднЯЯ часть радулы, центральные и внутренние латеральные Зубы. H. Cadlina sp. 2, внешние латеральные Зубы. I. Cadlina sp. 2, Элементы лабиальной кутикулы. Масштабные линейки: A = 500 мкм; B = 300 мкм; С = 50 мкм; D, Е = 100 мкм; F = 20 мкм; G, Н = 30 мкм; I = 10 мкм.
FIG. 5 in Fifty shades of white: morphological and molecular diversity of the Cadlina laevis species complex (Gastropoda: Nudibranchia) in the North-West Pacific
FIG. 5. Buccal armature of Cadlina laevis s.str., specimens from the White Sea (SEM). A. MIMB47939, radula. B. MIMB47939, anterior radular portion, rachidian and inner lateral teeth. C. MIMB47939, same as B, enlarged. D. MIMB47939, anterior radular portion, outer lateral teeth. E. MIMB47939, odontophore with radula. F. MIMB47939, labial cuticle. G. MIMB47939, labial cuticle rodlets. H. MIMB47963, radula. I. MIMB47963, middle radular portion, rachidian and inner lateral teeth. K. MIMB47963, middle radular portion, rachidian and innermost laterals. L. MIMB47963, outer lateral teeth. M. MIMB47963, odontophore with radula. N. MIMB47963, labial cuticle. O. MIMB47963, labial cuticle rodlets. Scale bars: A, E, H = 200 µm; B, D, I = 50 µm; C, K, L, N = 20 µm; F, M = 100 µm; G = 10 µm; O = 5 µm. РИС. 5. Буккальное вооруЖение Cadlina laevis s.str., особи иЗ Белого морЯ (СЭМ). A. MIMB47939, радула. B. MIMB47939, переднЯЯ часть радулы, центральные и внутренние латеральные Зубы. C. MIMB47939, то Же, что B, увеличенное. D. MIMB47939, переднЯЯ часть радулы, внешние латеральные Зубы. E. MIMB47939, одонтофор с радулой. F. MIMB47939, лабиальнаЯ кутикула. G. MIMB47939, родлеты лабиальной кутикулы. H. MIMB47963, радула. I. MIMB47963, среднЯЯ часть радулы, центральные и внутренние латеральные Зубы. K. MIMB47963, среднЯЯ часть радулы, центральные и внутренние латеральные Зубы. L. MIMB47963, наруЖные латеральные Зубы. М. MIMB47963, одонтофор с радулой. N. MIMB47963, лабиальнаЯ кутикула. O. MIMB47963, родлеты лабиальной кутикулы. Масштабные линейки: A, E, H = 200 мкм; B, D, I = 50 мкм; С, К, L, N = 20 мкм; F, М = 100 мкм; G = 10 мкм; О = 5 мкм.
FIG. 3 in Fifty shades of white: morphological and molecular diversity of the Cadlina laevis species complex (Gastropoda: Nudibranchia) in the North-West Pacific
FIG. 3. COI haplotype network of Cadlina laevis species complex produced with TCS method in PopART. Colours of circles refer to the geographic origin of each haplotype. The relative size of circles is proportional to the number of sequences of that same haplotype. РИС. 3. Сеть гаплотипов COI комплекса видов Cadlina laevis, полученнаЯ методом TCS в PopART. Цвета круЖков обоЗначают географическое происхоЖдение каЖдого гаплотипа. Относительный раЗмер круЖков пропорционален количеству последовательностей одного и того Же гаплотипа.
FIG. 4 in Fifty shades of white: morphological and molecular diversity of the Cadlina laevis species complex (Gastropoda: Nudibranchia) in the North-West Pacific
FIG. 4. Photos of studied specimens from different localities, all measurements are indicated in preserved state. A. Cadlina laevis, MIMB47953, White Sea, 16 mm in length. B. Cadlina laevis, MIMB47970, Barents Sea, 13 mm in length. C. Cadlina laevis, MIMB47948, White Sea, 10 mm in length. D. Cadlina laevis, MIMB47965, White Sea, 9 mm in length. E. Cadlina laevis, MIMB47958, White Sea, 10 mm in length. F. Cadlina sp. 1, MIMB47971, Urup Is., Sea of Okhotsk, 22 mm in length. G. Cadlina sp. 2, MIMB42230, Iturup Is., Sea of Okhotsk, 18 mm in length. H. Cadlina sp. 3, MIMB47974, Sea of Japan, 10 mm in length. I. Cadlina sp. 3, MIMB47972, Sea of Japan, 15 mm in length. K. Cadlina sp. 5, MIMB47979, Iturup Is., Sea of Okhotsk, 11 mm in length. L. Cadlina sp. 7, MIMB47981, Sea of Japan, 25 mm in length. M. Cadlina sp. 6, MIMB47980, Shikotan Is., Sea of Okhotsk, 29 mm in length. N. Cadlina umiushi, MIMB48000, Sea of Japan, 17 mm in length. РИС. 4. Фотографии иЗученных ЭкЗемплЯров иЗ раЗных регионов, раЗмер тела укаЗан длЯ фиксированного состоЯниЯ. А. Cadlina laevis, MIMB47953, Белое море, длина 16 мм. B. Cadlina laevis, MIMB47970, Баренцево море, длина 13 мм. C. Cadlina laevis, MIMB47948, Белое море, длина 10 мм. D. Cadlina laevis, MIMB47965, Белое море, длина 9 мм. E. Cadlina laevis, MIMB47958, Белое море, длина 10 мм. F. Cadlina sp. 1, MIMB47971, о. Уруп, Охотское море, длина 22 мм. G. Cadlina sp. 2, MIMB42230, о. Итуруп, Охотское море, длина 18 мм. H. Cadlina sp. 3, MIMB47974, Японское море, длина 10 мм. I. Cadlina sp. 3, MIMB47972, Японское море, длина 15 мм. К. Cadlina sp. 5, MIMB47979, о. Итуруп, Охотское море, длина 11 мм. L. Cadlina sp. 7, MIMB47981, Японское море, длина 25 мм. М. Cadlina sp. 6, MIMB47980, о. Шикотан, Охотское море, длина 29 мм. N. Cadlina umiushi, MIMB48000, Японское море, длина 17 мм.
FIG. 2 in Fifty shades of white: morphological and molecular diversity of the Cadlina laevis species complex (Gastropoda: Nudibranchia) in the North-West Pacific
FIG. 2. Maximum Likelihood phylogenetic tree based on the COI-based dataset, species-level clades and outgroups are collapsed to a single branch, except representatives of the Cadlina laevis species complex. Specimens studied in this work are highlighted in bold. Numbers above branches indicate posterior probabilities from Bayesian inference, numbers bellow branches show bootstrap supports from Maximum likelihood analysis. Blocks on the right indicate species delimitation results, number refers to respective operational taxonomical unit. Respective photographs of studied specimens are given on the right. РИС. 2. Филогенетическое дерево, построенное методом максимального правдоподобиЯ, основанное на выравнивании по гену COI, клады и внешние группы на уровне вида сколлапсированы в одну ветвь, За исключением представителей видового комплекса Cadlina laevis. ОбраЗцы, иЗученные в данной работе, выделены Жирным шрифтом. Числа над ветвЯми обоЗначают апостериорные вероЯтности байесовского аналиЗа, числа под ветвЯми покаЗывают бутстрепподдерЖку аналиЗа максимального правдоподобиЯ. Блоки справа обоЗначают реЗультаты тестов на определение видовых границ, номер относитсЯ к соответствуюЩей оперативной таксономической единице. Справа приведены фотографии иЗученных ЭкЗемплЯров.
FIG. 1 in Fifty shades of white: morphological and molecular diversity of the Cadlina laevis species complex (Gastropoda: Nudibranchia) in the North-West Pacific
FIG. 1. Map of the North-West Pacific and Russian Arctic representing collection sites and type localities of described species of the Cadlina laevis species complex. РИС. 1. Карта Северо-Западной части Тихого океана и Российской Арктики, с укаЗанием точек сбора и типовых местонахоЖдений описанных видов иЗ комплекса Cadlina laevis.
FIG. 11 in Regeneration in the dorids exemplified by Onchidoris muricata (Gastropoda, Nudibranchia)
FIG. 11. Rhinophore recovery after removal of the clavus with lamellae (light microscopy). A. Appearance of the regenerate on the 2nd day post amputation, front view. B, C. Regeneration bud on the surface of the regenerate and intact rhinophore, dorsal view. D–F. The appearance of the rhinophore on the 7th day after injury from the dorsal side (D, E) and from the front (F). G–H. Appearance of the regenerate with the first lamellae, isolated apex and spicules inside. I. Spicule of the regenerate on the 10th day post amputation. Abbreviation: arrh – apex of regenerating rhinophore; irh – intact rhinophore; rrh – regenerating rhinophore; sp – spicule; spb – spicule of body; t – tubercle.
FIG. 10 in Regeneration in the dorids exemplified by Onchidoris muricata (Gastropoda, Nudibranchia)
FIG. 10. Regenerating rhinophore external morphology (SEM). A–B. 22 days post amputation. C. 25 days post amputation. A. Dorsal view of the anterior part of the notum with rhinophores. B. Side view of a regenerating rhinophore. C. Rear view. Abbreviation: irh – intact rhinophore; rl – rhinophore lamellae; rrh – regenerating rhinophore; rp – rhinophore pocket; rt – rhinotubercle; t – tubercle. Scalebar: A – 400µm.
FIG. 9 in Regeneration in the dorids exemplified by Onchidoris muricata (Gastropoda, Nudibranchia)
FIG. 9. Regenerating rhinophore morphology (SEM). A–B. 15 days after amputation. C–E. 17 days after amputation. A. External view of a rhinophore with three lamellae. B. Scrapped rhinophore with spicules. C. External view of the rhinophore with 5 symmetrical lamellae along the anterior side. The ciliary cover is uniform over the entire surface of the rhinophore. D. Breakage of the basal part of the regenerating rhinophore with retractor muscles and spicules. E. Spicules with monolithic and inhomogeneous internal structure. Abbreviation: ct – cilia tuft; rl – rhinophore lamellae; rm – retractor muscles; rt – rhinotubercle; sp – spicule; spb – spicule of body.
FIG. 8 in Regeneration in the dorids exemplified by Onchidoris muricata (Gastropoda, Nudibranchia)
FIG. 8. Regenerating rhinophore morphology (SEM). A–B. 10 days after amputation. C–D. 12 days after amputation. The apical part of the regenerating rhinophore with lamellae is abundantly covered with cilia. Abbreviation: ct – cilia tuft; rl – rhinophore lamellae; rp – rhinophore pocket; rt – rhinotubercle.
FIG. 7 in Regeneration in the dorids exemplified by Onchidoris muricata (Gastropoda, Nudibranchia)
FIG. 7. Regenerating rhinophore morphology (SEM). A–E. 7 days after amputation (dpa). F–H. 10 days after amputation. A. Longitudinal section through the regeneration and intact rhinophores. B–E. Longitudinal section through the regenerating rhinophore with a dense muscular layer and spicules in the apical part. F. External morphology through the regenerating rhinophore with first lamellae and a well–shaped apex. G. Longitudinal section through the regenerating rhinophore with a lymphatic cavity at its base. H. Longitudinal section through the apical part of the rhinophore with spicules. Abbreviation: arrh – apex of regenerating rhinophore; bc – buccal complex; i – infusoria; irh – intact rhinophore; lc – lymphatic cavity; rl – rhinophore lamellae; rm – retractor muscles; rp – rhinophore pocket; rrh – regenerating rhinophore; rt – rhinotubercle; sp – spicule; spb – spicule of body.
FIG. 12 in Regeneration in the dorids exemplified by Onchidoris muricata (Gastropoda, Nudibranchia)
FIG. 12. Regenerating rhinophore external morphology after removal of the clavus with lamellae (Light microscopy).An increase in the number of rhinophore lamellae and spicules inside it. A, B, C, E, G. Dorsal view. D, F, H. Front view. Abbreviation: arrh – apex of regenerating rhinophore; rl – rhinophore lamellae; rrh – regenerating rhinophore; rt – rhinotubercle; sp – spicule; spb – spicule of body.
FIG. 6 in Regeneration in the dorids exemplified by Onchidoris muricata (Gastropoda, Nudibranchia)
FIG. 6. Regenerating rhinophore morphology (SEM, light microscopy). A–B. Longitudinal section trough the regenerating rhinophore, one day post amputation (dpa). C. External morphology of the regenerating rhinophore with cilia tufts (4 dpa). D. Spicule are into the regeneration rhinphore (5 dpa). E. Scrapped of the apical part of regenerating rhinophore (5 dpa). F. The spicule in the apical parts of the regenerating rhinophore (5 dpa). Abbreviation: ct – cilia tuft; lc – lymphatic cavity; rhb – rhinophore regenerating bud; rt – rhinotubercle; sp – spicule; spb – spicule of body.
FIG. 5 in Regeneration in the dorids exemplified by Onchidoris muricata (Gastropoda, Nudibranchia)
FIG. 5. Rhinophore regeneration after removal of the apex and three rhinophore lamellae (light microscopy). A. Frontal section through the front of the body. Left – intact rhinophore, right – rhinophore 1 day after amputation of the apex and two rhinophore lamellae (1dpa). B. Regenerating rhinophore (1 dpa). The apical lamellae are everted. C. Top view of the rhinophores at 3 dpa. On the left – regenerating rhinophore, on the right – intact rhinophore. D. External morphology of the regenerating rhinophore at 3 dpa. E. Frontal section through the front of the body. Left – intact rhinophore, right – rhinophore 1 day after amputation of the apex and two rhinophore lamellae (5 dpa). F. Regenerating rhinophore (5 dpa). Apical lamellae return to normal position. G. Top view of the rhinophores 21 days after amputation. On the left – regenerating rhinophore, on the right – intact rhinophore. The formed tip of the rhinophore is visible. H. Regenerating rhinophore with internal spicules (21 dpa). Abbreviation: arl – apical rhinophore lamellae; arrh – apex of regenerating rhinophore; bc – buccal complex; irh – intact rhinophore; rl – rhinophore lamellae; rrh – regenerating rhinophore; rt – rhinotubercles; sp – spicule; spb – spicule of body; t – tubercle.
FIG. 4 in Regeneration in the dorids exemplified by Onchidoris muricata (Gastropoda, Nudibranchia)
FIG. 4. Scheme of the regeneration of Onchidoris muricata rhinophore after cutting off the entire rhinophore. Abbreviations: f – furrow; rarh – regenerating rhinophore apex; rb – regeneration bulb; rh – rhinophore stalk; rl – rhinophore lamellae; rp – rhinophore pocket; rrl – regenerating rhinophore lamellae; rt – rhinotubercle.
FIG. 3 in Regeneration in the dorids exemplified by Onchidoris muricata (Gastropoda, Nudibranchia)
FIG. 3. Scheme of the regeneration of Onchidoris muricata rhinophore after cutting off the apex and three lamellae. Abbreviations: dpa – day post amputation; rarh – regenerating rhinophore apex; rb – regenerating bulb; rh – rhinophore stalk; rl – rhinophore lamellae; rp – rhinophore pocket; rrl – regenerating rhinophore lamellae; rt – rhinotubercle.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.