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131 results for “Senna”
Figs. 1A-P. A-E. Senna aculeata. A in Taxonomia e diversidade do gênero Senna Mill. (Leguminosae, Caesalpinioideae, Cassieae) no estado de Goiás, Brasil
Figs. 1A-P. A-E. Senna aculeata. A. Ramo florido; B. Pétala posterior; C. Pétalas postero-laterais; D. Pétalas antero-laterais; E. Androceu e gineceu. F-J. S. alata. F. Ramo florido; G. Pétala posterior; H. Pétalas postero-laterais; I. Pétalas antero-laterais; J. Androceu e gineceu. K-P. S. cana var. cana. K. Ramo florido; L. Estípula; M. Pétala posterior; N. Pétalas postero-laterais; O. Pétalas antero-laterais; P. Androceu e gineceu. (A-E: J. P. Santos & J. Neiva Neto 291 - UFG; F-J: J. P. Santos 17 - UFG; K-1P: H. S. Irwin et al. 14487 - MO).
Figure 3 in Metagenomic study of the communities of bacterial endophytes in the desert plant Senna Italica and their role in abiotic stress resistance in the plant
Figure 3. Alfa rarefaction curve observed based on observed species (OTUs) value. The curve has shown flatter to the right, which indicates the comparatively high species richness of the senna italica samples. Roots samples: Roots.1, Roots.2, and Roots.3. Leaves samples: Leaves.1, Leaves.2, and Leaves.3 are associated with Senna italica.
Figure 1 in Metagenomic study of the communities of bacterial endophytes in the desert plant Senna Italica and their role in abiotic stress resistance in the plant
Figure 1. (A) Results of clustering: Assembling a group of organisms (The organisms in the same group are similar). (B) The number of OTUs generated for each sample. The Root.1 sample had the most OTUs of 24, while the Leave.1 sample had the fewest of 13. Roots samples: Roots.1, Roots.2, and Roots.3. Leaves samples: Leaves.1, Leaves.2, and Leaves.3 are associated with Senna italica.
Figure 6. A in Metagenomic study of the communities of bacterial endophytes in the desert plant Senna Italica and their role in abiotic stress resistance in the plant
Figure 6. A. The phylum level in Bacteria (bar chart), the bacterial composition of the different samples was similar, while the distribution of each phylum varied in all samples. Based on the V3-V4 region of the 16S rRNA region. Bacterial communities at the phylum classification among the samples (pie chart), as a percentage of the total bacteria isolated from roots and leaves endophyte region. Based on the full-length 16S rRNA sequences. (B) The number of Actinobacteria among the samples. (C) The number of Proteobacteria among the samples. (D) The number of unclassified phyla among the samples. (E) The number of Firmicutes phyla among the samples. (F) The number of Cyanobacteria/Chloroplast among the samples. Roots samples: Roots.1, Roots.2, and Roots.3. Leaves samples: Leaves.1, Leaves.2, and Leaves.3 are associated with Senna italica.
Figure 5 in Metagenomic study of the communities of bacterial endophytes in the desert plant Senna Italica and their role in abiotic stress resistance in the plant
Figure 5. Phylogenetic tree based on 16S rRNA gene sequences representing the diversity of endophytic bacterial communities associated with the leaves and roots from the desert medicinal plant Senna italica "at the Phylum level". The tree was constructed using the "one-click" mode in Phylogeny.fr.(Dereeper et al., 2008).
Fig. 3 in Exploring whether and how ants (Hymenoptera: Formicidae) affect reproductive fitness in Senna mexicana var. chapmanii (Fabaceae)
Fig. 3. Correlation between the number of active inflorescences on Senna chapmanii plants at the time of observation and the number of pollinator visits. Circles represent the mean number of pollinator visits per observation on plants with different numbers of inflorescences. In the axis label, No' refers to number.
Fig. 5 in Exploring whether and how ants (Hymenoptera: Formicidae) affect reproductive fitness in Senna mexicana var. chapmanii (Fabaceae)
Fig. 5. Reproductive fitness of Senna chapmanii plants with (Control) and without (Tanglefoot™) ants. Bars represent the means of weekly measurements taken over the course of the 8 mo experiment. Error bars represent standard error. In the axis label, "no's." refers to numbers.
Fig. 1. A in Exploring whether and how ants (Hymenoptera: Formicidae) affect reproductive fitness in Senna mexicana var. chapmanii (Fabaceae)
Fig. 1. A. Mean rates of pre-dispersal seed predation on Senna chapmanii plants with (Control) and without (Tanglefoot™) ants. Seed predation was calculated for each plant as the number of herbivore damaged seeds divided by the total number of developing seeds (fertilized ovules minus aborted seeds); B. Mean pollinator efficiency on S. chapmanii plants with and without ants. Pollinator efficiency was measured as the proportion of ovules fertilized for each plant; C. Mean effective fecundity of S. chapmanii plants with and without ants. Effective fecundity was calculated for each plant as the number of non-predated mature seeds divided by the total number of ovules. In all 3 cases, comparisons were made between treatments using Mann–Whitney U tests, and results were deemed statistically significant if P values were ≤0.05. Error bars represent standard error in all cases. No significant differences were observed between treatments.
Fig. 2 in Exploring whether and how ants (Hymenoptera: Formicidae) affect reproductive fitness in Senna mexicana var. chapmanii (Fabaceae)
Fig. 2. Mean number (A) and duration (B) of pollinator visits on Senna chapmanii plants with and without ants. In both cases, comparisons were made between treatments using Mann–Whitney U tests, and results were deemed statistically significant if P values were ≤0.05. Error bars represent standard error. Asterisks indicate significant differences. In the axis label, no' refers to number.
Fig. 4 in Exploring whether and how ants (Hymenoptera: Formicidae) affect reproductive fitness in Senna mexicana var. chapmanii (Fabaceae)
Fig. 4. Mean size of Senna chapmanii plants in the presence and absence of ants over the course of the 8 mo experiment. Plant size was estimated as the number of growing stems with 10 or more leaves.
Linked collectors and determiners for: Bruchines (Coleoptera: Chrysomelidae) associated with Senna neglecta (Vogel) H. S. Irwin and Barneby (Fabaceae: Caesalpinioideae): a new host plant for the subfamily.
Natural history specimen data linked to collectors and determiners held within, "Bruchines (Coleoptera: Chrysomelidae) associated with Senna neglecta (Vogel) H. S. Irwin and Barneby (Fabaceae: Caesalpinioideae): a new host plant for the subfamily". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/ce43ff05-bbcd-4d0a-af20-313db664517e">https://bionomia.net/dataset/ce43ff05-bbcd-4d0a-af20-313db664517e</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/ce43ff05-bbcd-4d0a-af20-313db664517e">https://gbif.org/dataset/ce43ff05-bbcd-4d0a-af20-313db664517e</a>. Formatted as a Frictionless Data package.
Figs. 1–7 in On the myrmecophilous genus Systellus Kleine (Coleoptera: Brentidae), with systematic and biological notes on S. mentaweicus (Senna)
Figs. 1–7. Systellus mentaweicus, male (from Ulu Gombak, Selangor, Peninsular Malaysia): 1, Habitus, dorsal view; 2, ditto, ventral view; 3, head, dorsal view; 4, ditto, ventral view; 5, left antenna; 6, umbilicate pores on right elytra; 7, right fore leg. Scale bars = 1.0 mm.
Figs. 11–14 in On the myrmecophilous genus Systellus Kleine (Coleoptera: Brentidae), with systematic and biological notes on S. mentaweicus (Senna)
Figs. 11–14. Systellus mentaweicus, male (from Ulu Gombak, Selangor, Peninsular Malaysia): 11–13, Left to right: Tegmen and parameres, dorsal and lateral, aedeagus, dorsal; 14, caudal segments of abdomen, internal view, showing short spiculum relictus and straight spiculum gastrale. Scale bars = 0.5 mm
Figs. 8–10 in On the myrmecophilous genus Systellus Kleine (Coleoptera: Brentidae), with systematic and biological notes on S. mentaweicus (Senna)
Figs. 8–10. Systellus mentaweicus, female (from Ulu Gombak, Selangor, Peninsular Malaysia): 8, Habitus, dorsal view; 9, ditto, ventral view; 10, head, ventral view. Scale bars = 1.0 mm.
Figs. 15–17 in On the myrmecophilous genus Systellus Kleine (Coleoptera: Brentidae), with systematic and biological notes on S. mentaweicus (Senna)
Figs. 15–17. Habitat of Systellus mentaweicus at Field Studies Centre, Ulu Gombak, Selagor, Peninsular Malaysia: 15, Female dropping its head from the host ant nest entrance; 16, fallen branch on which the host ant nest was found; 17, interior of the host ant nest.
Senna occidentalis (L.) Link (BR0000012293735)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Senna obtusifolia (L.) H.S.Irwin & Barneby (BR0000011567448)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
FIGURE 26 in Four new species of Pseudharpinia Schellenberg, 1931 (Crustacea: Amphipoda Phoxocephalidae) from southwestern Atlantic and new records of P. tupinamba Senna & Souza-Filho, 2011
FIGURE 26. Distribution of P. tupinamba. Circle: previous record of the species; Star: new records of the species.
FIGURE 25 in Four new species of Pseudharpinia Schellenberg, 1931 (Crustacea: Amphipoda Phoxocephalidae) from southwestern Atlantic and new records of P. tupinamba Senna & Souza-Filho, 2011
FIGURE 25. Pseudharpinia tupinamba Senna & Souza-Filho, 2011, female, UERJ 458, São Paulo state coast (24°58'S, 45°26'W), Brazil. Scale bars: 0.2 mm for A1–2; 0.5 mm for the remainings.
FIGURE 21 in Four new species of Pseudharpinia Schellenberg, 1931 (Crustacea: Amphipoda Phoxocephalidae) from southwestern Atlantic and new records of P. tupinamba Senna & Souza-Filho, 2011
FIGURE 21. Pseudharpinia planti sp. nov. Holotype, female, UERJ 455, Rio de Janeiro state coast (23°03'S, 42°19'W), Brazil; paratype, male, UERJ 456, same data as for the holotype. Scale bars: 0.5 mm for mG1–2; 0.3 mm for the remainings.
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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)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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