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10 results for “Cataracta”
Non-genetically-based intraspecific differentiation for heavy metal tolerance in the copper moss Scopelophila cataractae
<p>We used next-generation sequencing to study DNA methylation and gene expression changes in plants from four clonal populations of the metallophyte moss <em>Scopelophila cataractae</em> experimentally exposed to either Cd or Cu. For this we performed reduced representation bisulfite DNA sequencing and RNA sequencing. </p>
Linked collectors and determiners for: Cataracta, a new monotypic genus segregated from Physalis (Solanaceae).
Natural history specimen data linked to collectors and determiners held within, "Cataracta, a new monotypic genus segregated from Physalis (Solanaceae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/7fe85f07-ed19-4854-8e24-e5a8e6bfb789">https://bionomia.net/dataset/7fe85f07-ed19-4854-8e24-e5a8e6bfb789</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/7fe85f07-ed19-4854-8e24-e5a8e6bfb789">https://gbif.org/dataset/7fe85f07-ed19-4854-8e24-e5a8e6bfb789</a>. Formatted as a Frictionless Data package.
FIGURE 1 in Cataracta, a new monotypic genus segregated from Physalis (Solanaceae)
FIGURE 1. Fruit anatomical comparison of Physalis angulata and Cataracta microphysa. Cross sections of A. Entire fruit of Physalis angulata in early development stage and B. Physalis angulata in mature stage. Cross sections of fruit in mature stage C. Entire fruit of Cataracta microphysa of early development stage and D. Cataracta microphysa in mature stage (Photos of Mahinda Martínez and Alan Herrera).
FIGURE 2 in Cataracta, a new monotypic genus segregated from Physalis (Solanaceae)
FIGURE 2. Phylogenetic relationships of Physalidinae based on Bayesian 50% majority consensus tree and Maximum likelihood with three nDNA and six cpDNA regions. The colored boxes indicate the subgeneric classification of Physalis proposed by Martinez (1998) and the phylogenetic position of Cataracta gen. nov. Dashed lines show the branches with posterior probabilities and bootstrap support less than 0.95 and 70, respectively. Numbers at the left of the nodes are posterior probabilities, and numbers to the right are bootstrap support values.
FIGURE 3. Cataracta microphysa comb. nov. A. Perennial herb with a in Cataracta, a new monotypic genus segregated from Physalis (Solanaceae)
FIGURE 3. Cataracta microphysa comb. nov. A. Perennial herb with a rhizome of 30–40 cm long. B. One flower per axil, corolla plane rotated with a slight yellowish or greenish tinge. C. The fruiting calyx is teretish, ovate-oblong to campanulate, and open-flaring apically. D. Fruit with a thin, dry pericarp, with dark brown seeds and faveolated-rugous testa. E. The dry fruits dehiscing along irregular lines (Photos of Pilar Zamora-Tavares and Mahinda Martínez).
Data from: Spatial genetic variation and habitat association of Rhinichthys cataractae, the longnose dace, in the Driftless Area of the upper Mississippi River basin
Open the record for dataset details and reuse information.
Data from: Morphological and genetic analysis of sympatric dace within the Rhinichthys cataractae species complex: a case of isolation lost
Open the record for dataset details and reuse information.
FIGURE 5 in Cataracta, a new monotypic genus segregated from Physalis (Solanaceae)
FIGURE 5. Geographic distribution of Cataracta gen. nov.
FIGURE 4 in Cataracta, a new monotypic genus segregated from Physalis (Solanaceae)
FIGURE 4. Comparisons of habit, flower and fruit traits among Cataracta gen. nov. (A1–A3), Chamesaracha (B1–B3), Oryctes (C1–C3), Physalis (D1–D3), and Quincula (E1–E3) (Photos of Pilar Zamora-Tavares, Mahinda Martínez and Ofelia Vargas-Ponce, B3 provided by Juan Carlos Delgado, C1–C3 by Sophie Winitsky, and E3 by Rocio Deanna).
Development of molecular indicators for adverse health responses of effluent exposure in caged longnose dace (Rhinichthys cataractae) in ACWA raceways
GEO Series GSE186337. Rhinichthys cataractae. 82 samples. Type: Expression profiling by high throughput sequencing.
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