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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.
Balancing carnivore conservation and sustainable hunting of a key prey species: a case study on the Florida panther and white-tailed deer
<p>1. Large carnivore restoration programs are often promoted as capable of providing ecosystem services. However, these programs rarely measure effects of successful restoration on other economically and ecologically important species. In South Florida, while the endangered Florida panther (Puma concolor coryi) population has increased in recent years due to conservation efforts, the population of its main prey, the white-tailed deer (Odocoileus virginianus), has declined in some regions. The extent to which panther predation has affected deer populations has been difficult to assess because several other factors have changed during this period, including hydrology and hunting regulations.</p> <p>2. We collected known-fate survival data on 241 GPS-collared adult deer (156 females and 85 males) from 2015 to 2018 in the Florida Panther National Wildlife Refuge and the Big Cypress National Preserve in Florida, USA, to assess effects of panther predation on the deer population, while also evaluating the impacts of hunting and hydrology.</p> <p>3. Predation was the primary cause of death (110 of 134 mortalities), and 87% of predation events were attributed to panthers, a much greater rate than reported by studies conducted before the panther genetic restoration effort initiated in 1995. One deer was legally harvested, and two were likely killed by poachers. Increasing water depth decreased female survival but had little impact on male survival, and drowning was never a cause of mortality.</p> <p>4. Females had greater survival probability than males, except during fawning season. From 2015 to 2018, annual survival rates increased from 0.61 (0.52-0.70) to 0.86 (0.79-0.91) for females, and from 0.45 (95% CI: 0.33-0.58) to 0.79 (0.69-0.86) for males.</p> <p>5. Synthesis and applications – High predation rates, coupled with previous evidence of low recruitment of deer in South Florida, suggest that it will be challenging to meet society's competing demands for large predator restoration and sustainable deer harvest. Deer hunting in the area must remain tightly controlled, for now, if it is to be sustainable, and managers should seek to mitigate effects of high waters and improve deer habitat quality to increase deer population viability. Future work should closely monitor the deer population to assess if management actions can increase vital rates and abundance in the context of high predation rates.</p>
FIGURE 7 in A New Species of the New Zealand Endemic Genus Actenonyx White, 1846 (Coleoptera: Carabidae: Odacanthini) with Notes on Variation, Distribution, and Habitat
FIGURE 7. Photographs of habitat for Actenonyx aotearoa sp. nov. A. Glaciated valley at east end of Homer Tunnel, Fiordlands National Park, South Island, view looking north; B. Snowmelt streams at east end of Homer Tunnel, just south of tunnel entrance.
FIGURE 2 in A New Species of the New Zealand Endemic Genus Actenonyx White, 1846 (Coleoptera: Carabidae: Odacanthini) with Notes on Variation, Distribution, and Habitat
FIGURE 2. Male genitalia of Actenonyx species. A and B. A. bembidioides White (South Island, Southland, Te Anau Downs, Mistletoe Creek, 216 m); C and D. A. aotearoa sp. nov. (South Island, Fiordlands National Park, east end of Homer Tunnel, 915m). A and C. Dorsal aspect; B and D. Left lateral aspect. Scale line = 0.5 mm.
FIGURE 6 in A New Species of the New Zealand Endemic Genus Actenonyx White, 1846 (Coleoptera: Carabidae: Odacanthini) with Notes on Variation, Distribution, and Habitat
FIGURE 6. Photograph of habitat for Actenonyx bembidioides White. Arrow River at Arrowtown, Otago, South Island.
FIGURE 5 in A New Species of the New Zealand Endemic Genus Actenonyx White, 1846 (Coleoptera: Carabidae: Odacanthini) with Notes on Variation, Distribution, and Habitat
FIGURE 5. Map showing distribution records for specimens of Actenonyx aotearoa sp. nov. examined for this study (red circle = type locality; blue circles = localities where specimens have pronotal lateral setae; black circles = other localities). Scale line = 200 km.
FIGURE 1 in A New Species of the New Zealand Endemic Genus Actenonyx White, 1846 (Coleoptera: Carabidae: Odacanthini) with Notes on Variation, Distribution, and Habitat
FIGURE 1. Dorsal habitus of Actenonyx species. A. A. bembidioides White (South Island, Southland, Te Anau Downs, Mistletoe Creek, 216 m); B. A. aotearoa sp. nov. (South Island, Fiordlands National Park, east end of Homer Tunnel, 915m). Scale lines = 1.0 mm.
FIGURE 4 in A New Species of the New Zealand Endemic Genus Actenonyx White, 1846 (Coleoptera: Carabidae: Odacanthini) with Notes on Variation, Distribution, and Habitat
FIGURE 4. Map showing distribution records for specimens of Actenonyx bembidioides White examined for this study (red circle = type locality; black circles = other localities). Scale line = 200 km.
FIGURE 3. Female genitalia and reproductive tract. A and C. A in A New Species of the New Zealand Endemic Genus Actenonyx White, 1846 (Coleoptera: Carabidae: Odacanthini) with Notes on Variation, Distribution, and Habitat
FIGURE 3. Female genitalia and reproductive tract. A and C. A. bembidioides White (South Island, Southland, Te Anau Downs, Mistletoe Creek, 216 m); B and D. A. aotearoa sp. nov. (South Island, Fiordlands National Park, east end of Homer Tunnel, 915m); A and B. Tergite IX, dorsal aspect; C and D. Genital capsule and reproductive tract; bc = bursa copulatrix; co = common oviduct; gc1 = gonocoxite 1; gc2 = gonocoxite 2; sbb = spermathecal basal bulb; sg = spermathecal gland; sgd =spermathecal gland duct. Scale lines = 0.5 mm.
Рис. 1. Раковины Mya truncata (А–Г) (Белое море) и Laternula elliptica (А'–Г') (Зал. Прюдс): А, А' – обЩий вид; Б, Г' – внутреннЯЯ поверхность левых створок; В, В' – вид хондрофора со стороны дорсального краЯ; Г, Б' – внутреннЯЯ поверхность правых створок. ОбоЗначениЯ: пК – передний край раковины; ЗК – Задний край; дК – дорсальный край; м – макушка; мщ – макушечнаЯ (умбональнаЯ) Щель; Кс – концентрическаЯ скульптура; сКп – складки периостракума; хр – хондрофор; ппЛ – поддерживаюЩаЯ пластинка; син – синус; ОмЗ – отпечаток мускула-ЗамыкателЯ. Fig. 1. Shells of Mya truncata (А–Г) (White Sea) and Laternula elliptica (А'–Г') (Prydz Bay): A, A' – general view; Б, Г' – internal view of left valves; В, В' – dorsal view on chondrophores; Г, Б' – internal view of right valves. Notes: пК – anterior margin; ЗК – posterior margin; дК – dorsal margin; м – umbo; мщ – umbonal crack; Кс – concentric sculpture; сКп – periostracal wrinkles; хр – chondrophore; ппЛ – buttress; син – sinus; ОмЗ – trace of retractor muscle. in Species of warm-water origin Laternula elliptica (King, 1832) (Mollusca: Bivalvia: Laternulidae), a widespread mollusk in recent Antarctica
Рис. 1. Раковины Mya truncata (А–Г) (Белое море) и Laternula elliptica (А'–Г') (Зал. Прюдс): А, А' – обЩий вид; Б, Г' – внутреннЯЯ поверхность левых створок; В, В' – вид хондрофора со стороны дорсального краЯ; Г, Б' – внутреннЯЯ поверхность правых створок. ОбоЗначениЯ: пК – передний край раковины; ЗК – Задний край; дК – дорсальный край; м – макушка; мщ – макушечнаЯ (умбональнаЯ) Щель; Кс – концентрическаЯ скульптура; сКп – складки периостракума; хр – хондрофор; ппЛ – поддерживаюЩаЯ пластинка; син – синус; ОмЗ – отпечаток мускула-ЗамыкателЯ. Fig. 1. Shells of Mya truncata (А–Г) (White Sea) and Laternula elliptica (А'–Г') (Prydz Bay): A, A' – general view; Б, Г' – internal view of left valves; В, В' – dorsal view on chondrophores; Г, Б' – internal view of right valves. Notes: пК – anterior margin; ЗК – posterior margin; дК – dorsal margin; м – umbo; мщ – umbonal crack; Кс – concentric sculpture; сКп – periostracal wrinkles; хр – chondrophore; ппЛ – buttress; син – sinus; ОмЗ – trace of retractor muscle.
Plate XXV, Fig. M.1 – River Cold Sense, near Zollhaus (FR), Switzerland, late March. Rare example of type A and type B in near syntopy. Black arrow: nymphal biotope of type A; white arrow: of type B. in Steps towards a revision of the Perla bipunctata Pictet, 1833 species complex (Plecoptera: Perlidae)
Plate XXV, Fig. M.1 – River Cold Sense, near Zollhaus (FR), Switzerland, late March. Rare example of type A and type B in near syntopy. Black arrow: nymphal biotope of type A; white arrow: of type B.
Fig. 1 in A White Stork (Ciconia ciconia (Linnaeus, 1758)) nest - an unique case of multiple nesting commensalism of five species from Dragoman (W Bulgaria)
Fig. 1. Eurasian Tree Sparrows nesting in a nest of White Stork, Dragoman, 19.05.2019. Photo: Z. Boev.
Fig. 4 in A White Stork (Ciconia ciconia (Linnaeus, 1758)) nest - an unique case of multiple nesting commensalism of five species from Dragoman (W Bulgaria)
Fig. 4. Eurasian Collared Dove nesting in a nest of White Stork, Dragoman, 19.05.2019. Photo: Z. Boev.
Fig. 4. Populus primaveralepensis A in Populus primaveralepensis sp. nov. (Salicaceae, Malpighiales), a new species of white poplar from the Bosque La Primavera Biosphere Reserve in western Mexico
Fig. 4. Populus primaveralepensis A.Vázquez, Muñiz-Castro & Zuno sp. nov., female individual, Vázquez-García et al. 10106c leg., IBUG. A. Inflorescence at anthesis. B. Inflorescence past anthesis. C. Developing infrutescence. D. Trunk. E. Branch with leaves and dehiscing capsules, showing the whitish pappus of seeds. Photographs: A. Vázquez.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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OpenNeuro
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