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67 results for “floristic data”
Redefining floristic zones in the Korean Peninsula using high-resolution georeferenced specimen data and self-organizing maps
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Data from: Filters of floristic exchange: how traits and climate shape the rainforest invasion of Sahul from Sunda
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Data from: Genomic data reveal ancient microendemism in forest scorpions across the California Floristic Province
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Data from: Topography as a driver of diversification in the Cape Floristic Region of South Africa
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Data from: Pleistocene range dynamics in the eastern Greater Cape Floristic Region: a case study of the Little Karoo endemic Berkheya cuneata (Asteraceae)
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Data from: Plant diversity and endemism in the California Floristic Province
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Data from: Are forest‐shrubland mosaics of the Cape Floristic Region an example of alternate stable states?
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Data from: Multilocus phylogeographic assessment of the California Mountain Kingsnake (Lampropeltis zonata) suggests alternative patterns of diversification for the California Floristic Province
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Data from: Dated plant phylogenies resolve Neogene climate and landscape evolution in the Cape Floristic Region
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Data from: Floristic variation within kerangas (heath) forest: re-evaluation of data from Sarawak and Brunei
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Data from: Discovering floristic and geoecological gradients across Amazonia
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Inselberg, taxa, environment data for Inselberg floristics exemplify coast to inland OCBIL transition in a global diversity hotspot
<p>We examined floristics of granitoid inselbergs in the hitherto poorly documented southeastern region of the Southwest Australian Floristic Region (SWAFR) and adjacent Great Western Woodlands, addressing several hypotheses of OCBIL theory. We found exceptional taxon richness (1,550 taxa on 89 inselbergs, with 58 well-sampled inselbergs and 1493 taxa chosen for detailed analyses). Granite inselberg endemism declines towards the arid inland, though taxon richness does not. OCBILs are likely found up to 500 km inland, not ca. 300 km as previously hypothesized. Hybrids are extremely rare on the 58 inselbergs analysed, whereas rare species, including singletons, are abundant. Conversely, exotic weeds are less common than in the whole SWAFR flora (8.2% vs 12.8%). Granite plant communities are distributed in parallel bands to the south coast, approximating the general transition from the Esperance and Boylya Floristic Districts across the SWAFR boundary north into the Arid Zone's Great Western Woodlands. Positive correlations exist between several plant life forms and inselberg area, save for geophytes. There is a decrease from the coast inland for most life forms, except for annual and graminoid herbs that increase in taxa inland. Thus, inselberg floristics exemplify the coast-to-inland OCBIL transition in this global biodiversity hotspot.</p>
Data from: The early history of Annonaceae (Magnoliales) in Southeast Asia suggests floristic exchange between India and Pan-Indochina by the late Oligocene
The collision between India and Eurasia in the mid‐Palaeogene facilitated terrestrial floristic exchange. However, due to the complexity of this geological event and scarcity of fossil record, the plant migration patterns between the two plates are still highly debated. In this study, we focus on the Oligocene floristic exchange between India and Pan‐Indochina mainly based on a carpological study of Annonaceae, an emblematic family unique in its pantropical distribution and frugivore‐based dispersal strategy. A new seed species, Anonaspermum orientalis sp. nov., is described from the upper Oligocene Yongning Formation of Guangxi, southern China. The species represents the earliest known occurrence of this family in Pan‐Indochina. The specimens are characterized by ovate–elliptic seed shape, thicker seed testa, two‐lobed organization, lamelliform rumination and an obvious cone‐like plug. The palaeobiogeographical reconstruction of Annonaceae indicates that the most parsimonious dispersal scenario for the annonaceous taxon from the late Oligocene of China is the Out‐of‐India route, in parallel with other plant genera inferred to have migrated between India and Pan‐Indochina during that period.
Figure 2 from: Roma-Marzio F, Peruzzi L, Bedini G (2017) Personal private herbaria: a valuable but neglected source of floristic data. The case of Italian collections today. Italian Botanist 3: 7-15. https://doi.org/10.3897/italianbotanist.3.12097
Figure 2 - Stacked bar chart showing the relationship between the degree of pest problem and the treatments to prevent it in the Italian private herbaria.
FIGURE 3 in A new species of Sinningia (Gesneriaceae) and additional floristic data from Serra dos Carajás, Pará, Brazil
FIGURE 3. Distribution map of Sinningia minima in the Serra dos Carajás.
Figure 3 from: Remsen D, Knapp S, Georgiev T, Stoev P, Penev L (2012) From text to structured data: Converting a word-processed floristic checklist into Darwin Core Archive format. PhytoKeys 9: 1-13. https://doi.org/10.3897/phytokeys.9.2770
Figure 3 - An updated database with final column titles and unique identifier added for each record.
Data from: The early history of Annonaceae (Magnoliales) in Southeast Asia suggests floristic exchange between India and Pan-Indochina by the late Oligocene
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Inselberg, taxa, environment data for Inselberg floristics exemplify coast to inland OCBIL transition in a global diversity hotspot
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Figure 1 from: Roma-Marzio F, Peruzzi L, Bedini G (2017) Personal private herbaria: a valuable but neglected source of floristic data. The case of Italian collections today. Italian Botanist 3: 7-15. https://doi.org/10.3897/italianbotanist.3.12097
Figure 1 - Distribution of the 34 surveyed Italian private herbaria.
Fig. 4 in New floristic data of vascular plants from central Italy
Fig. 4 - Erythronium dens-canis L. (Photo / Foto F. Falcinelli).
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Allen Brain Atlas
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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