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3,966 results for “Veronica”
Veronica persica (Scrophulariaceae) - stem - showing leaf bases
Image of Veronica persica (Scrophulariaceae) - stem - showing leaf bases
Veronica persica (Scrophulariaceae) - leaf - on upper stem
Image of Veronica persica (Scrophulariaceae) - leaf - on upper stem
Veronica persica (Scrophulariaceae) - inflorescence - frontal view of flower
Image of Veronica persica (Scrophulariaceae) - inflorescence - frontal view of flower
Veronica persica (Scrophulariaceae) - whole plant - in flower - general view
Image of Veronica persica (Scrophulariaceae) - whole plant - in flower - general view
Veronica persica (Scrophulariaceae) - whole plant - in flower - general view
Image of Veronica persica (Scrophulariaceae) - whole plant - in flower - general view
Veronica hederifolia (Scrophulariaceae) - leaf - on upper stem
Image of Veronica hederifolia (Scrophulariaceae) - leaf - on upper stem
Veronica hederifolia (Scrophulariaceae) - stem - showing leaf bases
Image of Veronica hederifolia (Scrophulariaceae) - stem - showing leaf bases
Veronica hederifolia (Scrophulariaceae) - inflorescence - lateral view of flower
Image of Veronica hederifolia (Scrophulariaceae) - inflorescence - lateral view of flower
Veronica hederifolia (Scrophulariaceae) - whole plant - in flower - general view
Image of Veronica hederifolia (Scrophulariaceae) - whole plant - in flower - general view
Veronica hederifolia (Scrophulariaceae) - whole plant - in flower - general view
Image of Veronica hederifolia (Scrophulariaceae) - whole plant - in flower - general view
Fig. 4 in Altai Mountains - cradle of hybrids and introgressants: A case study in Veronica subg. Pseudolysimachium (Plantaginaceae)
Fig. 4. STRUCTURE results showing the probability of ancestry of each individual (horizontal axis) to each of K = 2 populations (vertical axis) in all the five scenarios. A, Veronica spicata × V. pinnata; B, V. incana and V. longifolia; C, V. longifolia and V. porphyriana; D & E, V. pinnata and V. porphyriana involving putative hybrids of V. ×schmakovii and V. ×sessiliflora. Details of the exact posterior probabilities of each putative hybrid individual and their corresponding parents are given in suppl. Table S3.
Veronica serpyllifolia (Scrophulariaceae) - leaf - on upper stem
Image of Veronica serpyllifolia (Scrophulariaceae) - leaf - on upper stem
Veronica serpyllifolia (Scrophulariaceae) - stem - showing leaf bases
Image of Veronica serpyllifolia (Scrophulariaceae) - stem - showing leaf bases
Veronica serpyllifolia (Scrophulariaceae) - inflorescence - frontal view of flower
Image of Veronica serpyllifolia (Scrophulariaceae) - inflorescence - frontal view of flower
Veronica serpyllifolia (Scrophulariaceae) - whole plant - in flower - general view
Image of Veronica serpyllifolia (Scrophulariaceae) - whole plant - in flower - general view
Herbarium specimen image of Veronica longifolia L., part of the collection of Naturalis Biodiversity Center
Part of a training dataset of scanned herbarium specimens. The data paper and a summary landing page will be published on Zenodo as it gets published.<br><br>Content of this deposition:<br><br>- A JSON-LD datafile listing the label data associated with this herbarium specimen. The Darwin and Dublin Core data standards are used for most values.<br>- A JPEG image file of the scanned herbarium sheet.
Herbarium specimen image of Veronica hederifolia subsp. hederifolia, part of the collection of Naturalis Biodiversity Center
Part of a training dataset of scanned herbarium specimens. The data paper and a summary landing page will be published on Zenodo as it gets published.<br><br>Content of this deposition:<br><br>- A JSON-LD datafile listing the label data associated with this herbarium specimen. The Darwin and Dublin Core data standards are used for most values.<br>- A JPEG image file of the scanned herbarium sheet.
Fig. 1. A in Altai Mountains - cradle of hybrids and introgressants: A case study in Veronica subg. Pseudolysimachium (Plantaginaceae)
Fig. 1. A, Genetic composition based on K = 5 of first-level STRUCTURE results and number of individuals included from that particular locality. Genetic composition of the localities with more than one individual has been averaged. Key to the colors is given in a separate inset. B–D, Probability of ancestry of each individual (horizontal axis; total 233 individuals) to each of K = 4, 5, 6 populations (vertical axis). The five populations correspond mostly to the morphotypes hypothesized for species and putative hybrids. V. ×alt, V. ×altaica; V. ×gri, V. ×grisea; V. ×kol, V. ×kolyvanensis; V. ×sap, V. ×sapozhnikovii; V. ×sch, V. ×schmakovii; V. ×ses, V. ×sessiliflora; V. ×smi, V. ×smirnovii; V. are, V. arenosa; V. inca, V. incana; V. lon, V. longifolia; V. pinn, V. pinnata; V. porp, V. porphyriana; V. reve, V. reverdattoi; V. saj, V. sajanensis; V. spic, V. spicata; V. spur, V. spuria; V. ×taig, V. ×taigischensis; uniden, unidentified.
Fig. 5 in Altai Mountains - cradle of hybrids and introgressants: A case study in Veronica subg. Pseudolysimachium (Plantaginaceae)
Fig. 5. Results of the G-PhoCS analysis for effective population sizes, and gene flow using only pure individuals (no admixture). The inferred current effective population size (Ne) of each species are given for all the five species. The direction of the arrows represents the probability of migration among the species both in forward and reverse directions. The width of the bars represents the effective population size of each species. For population size estimation, we used the equations Ne (effective population size) = θ / 4μg; and T (divergence time) = τ · g / μ; where substitution rate/site/year (μ) = 2.44E-9, generation time for population (g) = 10 years. Migration rates are based on per generation parameter (Msx = msx · θx / 4), which is the proportion of individuals in population x arrived by migration from another population per generation. Gene flow has been calculated using the total migration rate, cases where the total rate is low, it approximates the probability of gene flow between the two species. However, for higher rates, we adjusted probabilities into rates with the equation P = 1 − e−m (where P = the probability of gene flow, e = exponent, and m = total migration rate; following vonHoldt & al., 2016). The phylogenetic tree on which the G-PhoCS analysis has been based is given in suppl. Fig. S2. For complete details, see in Materials and Methods as well as suppl. Tables S4 and S5 for migration rates (msx), τ and θ values, and divergence times.
Fig. 3 in Altai Mountains - cradle of hybrids and introgressants: A case study in Veronica subg. Pseudolysimachium (Plantaginaceae)
Fig. 3. Chromosome localization of rDNA and genomic in situ hybridization (GISH) in Veronica. Mitotic chromosome complements of: A, V. porphyriana; B, V. ×schmakovii; C, V. spicata; D, V. pinnata; E, V. longifolia; and F, V. incana hybridized with 35S (red fluorescence) and 5S (purple) rDNA probes. G, Mitotic chromosomes of V. ×schmakovii hybridized with gDNA of V. longifolia (red) and V. porphyriana (green). — Chromosomes were counterstained with DAPI. Scale bars, 10 μm.
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