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19 results for “Viviparus”
Fig. 4 in On Sexual Dimorphism Of Karyotypes Of Viviparus Viviparus And V. Contectus (Gastropoda, Viviparidae)
Fig. 4. Idiogramm of the relative chromosome length (L, %) in males and females of V. contectus. X-axis — number of chromosome pair. Рис. 4. Идиограмма относительной длины хромосом (L, %) у самок и самцов V. contectus. По оси абсцисс — номер хромосомной пары.
Fig. 3 in On Sexual Dimorphism Of Karyotypes Of Viviparus Viviparus And V. Contectus (Gastropoda, Viviparidae)
Fig. 3. Idiogramm of the relative chromosome length (L, %) in males and females of V. viviparus. X-axis — number of chromosome pair. Рис. 3. Идиограмма относительной длины хромосом (L, %) у самок и самцов V. viviparus. По оси абсцисс — номер хромосомной пары.
Fig. 2 in On Sexual Dimorphism Of Karyotypes Of Viviparus Viviparus And V. Contectus (Gastropoda, Viviparidae)
Fig. 2. Mitotic methaphases (1) and caryotypes (2) of female (above) and mitotic methaphases (3) and caryotypes (4) of male (below) of V. contectus. Рис. 2. Митотическая метафаза (1) и кариотип (2) самки; митотическая метафаза (3) и кариотип (4) самца у V. contectus.
Fig. 1 in On Sexual Dimorphism Of Karyotypes Of Viviparus Viviparus And V. Contectus (Gastropoda, Viviparidae)
Fig. 1. Mitotic methaphases (1) and caryotypes (2) of female (above) and mitotic methaphases (3) and caryotypes (4) of male (below) of V. viviparus. Рис. 1. Митотическая метафаза (1) и кариотип (2) самки (вверху); митотическая метафаза (3) и кариотип (4) самца (внизу) у V. viviparus.
Associations between Dictyocaulus viviparus bulk tank milk seropositivity and meteorological variables
<p>This dataset belongs to the scientific article with the same title "Associations between <em>Dictyocaulus viviparus</em> bulk tank milk seropositivity and meteorological variables" to be published in International Journal for Parasitology.</p>
Fig. 1 in A record of Viviparus syriacus (Gastropoda: Viviparidae) in Turkey
Fig. 1. Shells of two specimens of Viviparus syriacus collected at the Asi Nehri river deposits, Turkey (coll. P. Glöer).
Fig. 3 a-h in Ecological characterization of habitats colonized by the freshwater gastropod Viviparus contectus (MILLET, 1813) (Gastropoda, Prosobranchia) - Theoretical and experimental data
Fig. 3 a-h: Logistic regression models of the single environmental variables for the presentation of eventual habitat preferences of V. contectus. For a validation of the models experimental data from diverse field studies were used (e.g., PATZNER & ISARCH 1999, STURM 2000a).
Fig. 1 in Ecological characterization of habitats colonized by the freshwater gastropod Viviparus contectus (MILLET, 1813) (Gastropoda, Prosobranchia) - Theoretical and experimental data
Fig. 1: Stereoscopic photographs showing the front and back of the shell of V. contectus with its typical shape and mouth geometry. The height of the shells measures about 4.5 cm.
Fig. 2 a-h in Ecological characterization of habitats colonized by the freshwater gastropod Viviparus contectus (MILLET, 1813) (Gastropoda, Prosobranchia) - Theoretical and experimental data
Fig. 2 a-h: Box-plots for the statistical evaluation of single environmental variables under incorporation of all malacological data available in the scientific literature and those data with occurrence of V. contectus, respectively. The black boxes range from the first to the third quartile, whereas the ends of the lines mark the minimum and the maximum of the data. The white line indicates the position of the median.
Fig. 2 in A record of Viviparus syriacus (Gastropoda: Viviparidae) in Turkey
Fig. 2. Collection locality of Viviparus syriacus in Turkey.
FIGURE 1 in Re-description of the type series of Nectophrynoides viviparus (Bufonidae), with a taxonomic reassessment
FIGURE 1. Map of the Southern Highlands, Tanzania. Black dots: type locality and further records of the species.
Figure 3. A in Hybridization of beaked redfish (Sebastes mentella) with small redfish (Sebastes viviparus) and diversification of redfish (Actinopterygii: Scorpaeniformes) in the Irminger Sea
Figure 3. A median joining network of Sebastes mitochondrial DNA haplotypes, calculated and drawn on the basis of nucleotide variations in the control region with lengths from 365 to 368 base pairs for different redfish species. V1–V3, haplotypes of Sebastes viviparus (black circles); F1, F2, haplotypes of Sebastes fasciatus (grey circles); MR1–MR6, haplotypes of Sebastes marinus (white circles). Haplotypes of Sebastes mentella are shown as hatched circles: haplotypes M-A1–M-A6, horizontally hatched circles; haplotypes M-B1–M-B4, vertically hatched circles; haplotype M-AB, cross-hatched circles. Abbreviations M-Hb1 and M-Hb2 denote haplotypes of fish heterozygous for MDH-2∗67/100. The area of circles is proportional to the number of carriers of relevant haplotypes. Length of connecting lines is proportional to the number of nucleotide polymorphisms (insertion-deletions and/or replacements) separating the haplotypes. Numbers next to the lines show nucleotide positions for the longest D-loop sequences of Sebastes (509-base-pair length; M-B haplotype group), which contain the relevant polymorphic sites that separate the haplotypes. Ovals denote groups of haplotypes belonging to fish of the same species. The position of M-Hb1 and M-Hb2 haplotypes in the group of haplotypes that belong to S. mentella suggests that it is the maternal species for hybrids.
Figure 2 in Hybridization of beaked redfish (Sebastes mentella) with small redfish (Sebastes viviparus) and diversification of redfish (Actinopterygii: Scorpaeniformes) in the Irminger Sea
Figure 2. Gel electropherogram of liver malate dehydrogenase. Mr, Sebastes marinus; Mn, Sebastes mentella; V, Sebastes viviparus; F, Sebastes fasciatus; H, hybrid.
FIGURE 2 in Re-description of the type series of Nectophrynoides viviparus (Bufonidae), with a taxonomic reassessment
FIGURE 2. Dorsal and ventral views of the Nectophrynoides viviparus lectotype (ZMB 21775).
FIGURE 3 in Re-description of the type series of Nectophrynoides viviparus (Bufonidae), with a taxonomic reassessment
FIGURE 3. Colour variation in Nectophrynoides viviparus from the Southern Highlands, Tanzania.
Figure 1 in Hybridization of beaked redfish (Sebastes mentella) with small redfish (Sebastes viviparus) and diversification of redfish (Actinopterygii: Scorpaeniformes) in the Irminger Sea
Figure 1. Sampling location.
The developmental transcriptome of Dictyocaulus viviparus
GEO Series GSE73863. Dictyocaulus viviparus. 22 samples. Type: Expression profiling by high throughput sequencing.
Zoarces viviparus evaluation data
GEO Series GSE14957. Zoarces viviparus. 1 samples. Type: Expression profiling by array.
The transcriptional profile of 'Candidatus Epulopiscium viviparus' within Naso tonganus guts at different time points throughout its diurnal cycle
GEO Series GSE225926. Candidatus Epulonipiscium viviparus. 7 samples. Type: Expression profiling by high throughput sequencing.
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