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112 results for “Uttarakhand”
FIGURE 1. Ceropegia kumaonensis Kamal Kishor, G.S. Rawat & S.S. Samant a–c in A New Species of Ceropegia L. (Apocynaceae) from Uttarakhand, Western Himalaya, India
FIGURE 1. Ceropegia kumaonensis Kamal Kishor, G.S. Rawat & S.S. Samant a–c. Habit; d&e. Inflorescence and flowers; f. Follicles and seeds; g&h. Corona.
FIGURE 1 in A new species of freshwater crab of the genus Himalayapotamon Pretzmann, 1966 (Decapoda, Brachyura: Potamidae: Potaminae) from Uttarakhand, northern India
FIGURE 1. Collection sites (red square mark) of Himalayapotamon garhwalense n. sp.
MAP 1 in Geranium janakianum (Geraniaceae), a new species from Uttarakhand, India
MAP 1. Distribution map of Gernaium janakianum in Uttarakhand, India.
FIGURE 3. A in A new variety of Geranium ocellatum (Geraniaceae) from Uttarakhand, India
FIGURE 3. A. Habit; B. Flower; C. Dissected flower of Geranium ocellatum var. albiflorum.
FIGURE 2 in A new variety of Geranium ocellatum (Geraniaceae) from Uttarakhand, India
FIGURE 2. Habit illustration of Geranium ocellatum var. albiflorum.
FIGURE 3 in Floristic diversity in Cold Desert regions of Uttarakhand Himalaya, India
FIGURE 3. Distibution of taxa among different habitats in the cold deserts of Uttarakhand.
FIGURE. Dominant families of cold desert of Uttarakhand. in Floristic diversity in Cold Desert regions of Uttarakhand Himalaya, India
FIGURE. Dominant families of cold desert of Uttarakhand.
FIGURE. Map of the study area (Source: http://srtm.csi.cgiar.org) in Floristic diversity in Cold Desert regions of Uttarakhand Himalaya, India
FIGURE. Map of the study area (Source: http://srtm.csi.cgiar.org)
Distribution. NW India (Himachal Pradesh and Uttarakhand) and W Nepal. in Cricetidae
Distribution. NW India (Himachal Pradesh and Uttarakhand) and W Nepal.
Presence locations (direct and indirect) of blue sheep and livestock in Johar Valley, Uttarakhand, India from years 2015-2017
<p><span>In-depth knowledge of distribution and their factors are important for species conservation and management. Many forms of such data have led to development of new analytical techniques for better interpretation. For mountainous terrains with certain limitations, species data is obtained in presence-only form. Point process model is one of the recent approaches for modelling such data, taking care of pseudo-absences and spatial independence. For conservation of regions with limited resources and species with similar ecological requirements, it is important to properly assess competition extent between wild and domestic species. We attempted to use point process framework to estimate resource selection function of blue sheep (<i>Pseudois nayaur</i>) in pastoralism influenced areas of a western Himalayan landscape. Our study is a first attempt to use this framework to estimate resource selection on a dataset not collected using radio-telemetry. Spatial locations of presence points of blue sheep and livestock and a background sample of random points along with six topographic covariates were used for modelling resource selection probability via intensity function. Blue sheep showed its predicted presence in areas with open vegetation coinciding with alpine meadows, influenced by southern aspect keeping a threshold distance of 600m-1000m from cliffs (escape terrain). Livestock, also showed presence probability in open vegetation but at lower altitudes mainly on valley floors. Our results suggest that though blue sheep continued to use the same habitat type after livestock arrival, they selected different resources based on topographic factors. Livestock were in areas convenient for pastoralists for establishing their campsites and feasibility of grazing along with presence of nutritious grasses. Thus, we assume that probable shift of habitat for blue sheep from optimal areas occurs due to livestock presence, which might disturb their nutritional balance. Our study provides helpful insights for management of rangelands, which when tied with dietary patterns will give wholesome idea for proper conservation measures in future.</span></p>
FIGURE 5 in Bromus husainii (Poaceae:Bromeae), a new species from Valley of Flowers National Park, Uttarakhand, India
FIGURE 5. Bromus husainii growing in its natural habitat.
FIGURE 4. Bromus husainii. A. Nodes. B. Collar. C in Bromus husainii (Poaceae:Bromeae), a new species from Valley of Flowers National Park, Uttarakhand, India
FIGURE 4. Bromus husainii. A. Nodes. B. Collar. C. Ligule.
Figure 4 from: Pandey A, Rai KM, Malav PK, Rajkumar S (2021) Allium negianum (Amaryllidaceae): a new species under subg. Rhizirideum from Uttarakhand Himalaya, India. PhytoKeys 183: 77-93. https://doi.org/10.3897/phytokeys.183.65433
Figure 4 Maximum likelihood tree from nuclear ribosomal ITS sequence from Allium taxa showing distinctness of Allium negianum sp. nov.
Figure 1 from: Pandey A, Rai KM, Malav PK, Rajkumar S (2021) Allium negianum (Amaryllidaceae): a new species under subg. Rhizirideum from Uttarakhand Himalaya, India. PhytoKeys 183: 77-93. https://doi.org/10.3897/phytokeys.183.65433
Figure 1 Allium negianumA general habitat B bulb covered with reticulate fiber on bulbs of A. przewalskianum (orange-red) and A. negianum (red-brown) C inflorescence and spathe with a very long beak, persistent D inflorescence E capsule with mature seeds F line-illustrations of transverse section of leaf showing hollow channel G longitudinal section of flower with stamen with two sharp teeth H ovary I seed with prominent beak (C–I magnification × 30–40).
Figure 3 from: Pandey A, Rai KM, Malav PK, Rajkumar S (2021) Allium negianum (Amaryllidaceae): a new species under subg. Rhizirideum from Uttarakhand Himalaya, India. PhytoKeys 183: 77-93. https://doi.org/10.3897/phytokeys.183.65433
Figure 3 Distribution of taxa of Allium subg. Rhizirideum sect. Eduardia in India: Allium negianum and A. przewalskianum shown by the red triangle and black circled dots respectively; blue rectangle showed the occurrence of A. przewalskianum as per the data from GBIF (records of occurrence from Uttarakhand).
Fig. 15 in A critical revision of the Andrena Fabricius, 1775 of India, with the description of two new species (Hymenoptera: Andrenidae) from Uttarakhand
Fig. 15. Andrena (Pallandrena) morosa Cameron, 1897, syntype, ♀ (NHMUK). A. Label details. B. Habitus, lateral view. C. Face, frontal view. D. Terga and hind leg, dorso-lateral view.
Fig. 13 in A critical revision of the Andrena Fabricius, 1775 of India, with the description of two new species (Hymenoptera: Andrenidae) from Uttarakhand
Fig. 13. Andrena (Melandrena) brunneipennis Bingham, 1908, syntype, ♀ (ZMHB). A. Label information. B. Habitus, lateral view. C. Face, frontal view. D. Terga, dorsal view.
Fig. 12. Lamprocolletes peregrinus Smith, 1878 in A critical revision of the Andrena Fabricius, 1775 of India, with the description of two new species (Hymenoptera: Andrenidae) from Uttarakhand
Fig. 12. Lamprocolletes peregrinus Smith, 1878 (= Andrena peregrina (Smith, 1878)), syntype, ♀ (NHMUK). A. Label information. B. Body, dorsal view.
Fig. 8. A–C, E, G–H in A critical revision of the Andrena Fabricius, 1775 of India, with the description of two new species (Hymenoptera: Andrenidae) from Uttarakhand
Fig. 8. A–C, E, G–H. Andrena (Simandrena) tungnatha Wood & Gautam sp. nov., holotype, ♀ (WII). A. Habitus, lateral view. B. Face, frontal view. C. Scutum, dorsal view. E. Mesosoma, lateral view. G. Hind leg, lateral view. H. Terga, dorsal view. – D, F. Andrena (Simandrena) gorkhana Tadauchi & Matsumura, 2007, ♀ (WII). D. Scutum, dorsal view. F. Mesosoma, lateral view.
Fig. 7 in A critical revision of the Andrena Fabricius, 1775 of India, with the description of two new species (Hymenoptera: Andrenidae) from Uttarakhand
Fig. 7. Distribution map of northern Uttarakhand province in India showing the loci typici for Andrena (Melandrena) kedarnatha Wood & Gautam sp. nov. and Andrena (Simandrena) tungnatha Wood & Gautam sp. nov., as well as Kedarnath and Tungnath temples.
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OpenNeuro
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