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205 results for “Kashmir”
FIGURE 5 in An annotated checklist of flora of Overa-Aru wildlife sanctuary, Kashmir Himalaya
FIGURE 5. Number of species and percentage contribution of different lifespan categories in the flora of Overa-Aru wildlife sanctuary.
FIGURE 3 in A new species of Geranium L. (Geraniaceae) from Kashmir Himalaya, India
FIGURE 3. Geranium dachigamensis: A. Habit; B. Flowering twig; C. Fruits; D. Bracteoles; E. Sepals; F. Petal; G. Mericarp Seed; H. Flower Nectaries; I. Stipules; J. Leaf; K. Flower ventral view; L. Staminal filament; M. Flower dorsal view; N. Seed.
FIGURE 2. A in A new species of Geranium L. (Geraniaceae) from Kashmir Himalaya, India
FIGURE 2. A. Staminal filaments; B. Stipule; C. Fruit; D, Petal; E, Sepal; F. Anthers and Pistil; G. Mericarp.; H. Bracteoles; I. Seed. Illustrations of Geranium dachigamensis (Drawn by Mairaj Ahmad).
FIGURE 4. A in A new species of Geranium L. (Geraniaceae) from Kashmir Himalaya, India
FIGURE 4. A. Seed surface; C. Staminal filament Scanning Electron Micrograph of Geranium pratense; B Seed surface D. Staminal filament Scanning Electron Micrograph of Geranium dachigamensis.
FIGURE 1 in Lepiota albofloccosa, a new species in sect. Lepiota (Agaricaceae, Agaricales) from Northwestern Himalayas of Jammu and Kashmir, India
FIGURE 1. Maximum Likelihood phylogenetic tree (-InL = 9897.282293) inferred from ITS-rDNA sequence data using GTR+I+G model of nucleotide evolution. Branches are labelled with ML bootstrap support values (≥50 %, left of '/') and BPP (≥0.50, right of '/'). Sequence derived from the holotype of Lepiota albofloccosa is shown in black bold.
FIGURE 4 in Lepiota albofloccosa, a new species in sect. Lepiota (Agaricaceae, Agaricales) from Northwestern Himalayas of Jammu and Kashmir, India
FIGURE 4. Lepiota albofloccosa (MAA-01) a. Basidia; b. Basidiospores; c. Pileipellis hyphae d. Cheilocystidia e. Stipitipellis hyphae showing clamp-connections. Scale bars: a–e = 10 μm. Drawings by Masood Ahamed.
FIGURE 3 in Lepiota albofloccosa, a new species in sect. Lepiota (Agaricaceae, Agaricales) from Northwestern Himalayas of Jammu and Kashmir, India
FIGURE 3. Lepiota albofloccosa (MAA-01) a–b. Basidiomata in the field; c. Basidiomata showing gill portion; d. Cheilocystidia; e–g. Basidia; h. Basidiospores; i & j. Pileipellis hyphae; k. Stipitipellis hyphae showing clamp-connections. Scale bars: a–b = 20 mm, d–h = 10 μm. i = 20 μm, k = 10 μm. Photos by Masood Ahamed.
FIGURE 2 in Lepiota albofloccosa, a new species in sect. Lepiota (Agaricaceae, Agaricales) from Northwestern Himalayas of Jammu and Kashmir, India
FIGURE 2. Maximum Likelihood phylogenetic tree (-InL = 2678.110245) inferred from LSU-rDNA sequence data using GTR+I+G model of nucleotide evolution. Branches are labelled with ML bootstrap support values (≥50 %, left of '/') and BPP (≥0.50, right of '/'). Sequence derived from the holotype of Lepiota albofloccosa is shown in black bold.
Effect of Vitamin D Supplementation on Allostatic Load and Chronic Stress Along Line of Control in Azad Jammu Kashmir
ClinicalTrials.gov study NCT06101589. IPD Sharing: NO. Countries: 1. Publications: 3.
Traditional use of medicinal plants among the indigenous communities in district Baramulla, Jammu and Kashmir, India
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Data from: A new species of genus Russula subsect. Ilicinae (Russulaceae) from Kashmir Himalaya based on morphology and molecular phylogeny
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Data from: Morphological and molecular characterization of variation in common bean (Phaseolus vulgaris L.) germplasm from Azad Jammu and Kashmir, Pakistan
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Data from: Quantification and characterization of vegetation and functional trait diversity of riparian zones of the protected forest of Kashmir Himalaya, India
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Mid to late-Holocene palynomorph, charcoal and sediment data from three middle and high-altitude sediment cores from the Kashmir Valley
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FIGURE 11 in New species of Pseudothysanoes Blackman, and Sphaerotrypes Blandford (Coleoptera: Curculionidae: Scolytinae) from Jammu and Kashmir, with biological observations, and a key to South Asian species of Sphaerotrypes
FIGURE 11. Seasonal distribution of Pseudothysanoes kashmirica sp. nov. in Kashmir.
Species abundance along the railway of Kashmir Himalaya
<p>1. The significant portion of global terrestrial biodiversity harbored in mountains is under increasing threat from a variety of anthropogenic impacts. Protecting fragile mountain ecosystems requires understanding how these human disturbances affect biodiversity. As roads and railways are extended further into mountain ecosystems, understanding the long-term impacts of this infrastructure on community composition and diversity gains urgency.</p> <p>2. We used railway corridors constructed across the mountainous landscapes of the Kashmir Himalaya from 1994-2013 to study the effects of anthropogenic disturbance on species' distributions and community dynamics. In 2014 and 2017, we collected vegetation data along 31 T-shaped transects laid perpendicular to the railway line, adopting the MIREN (Mountain Invasion Research Network) road survey methodology. </p> <p>3. Plant communities shifted significantly from 2014 to 2017, potentially as a result of ongoing species' redistribution after railway construction, mostly driven by declines in both native and non-native species richness, and increasing abundance of a few non-native species, especially in areas away from the railway track. </p> <p>4. These patterns indicate an advancing succession, where initial – rare – pioneering species are replaced by increasingly dominant and often non-native competitors, and potentially suggest a trend towards delayed local extinctions after the disturbance event. Native and non-native species richness were negatively correlated with elevation, but that relationship diminished over time, with the abundance of non-natives significantly increasing at high elevations. </p> <p>5. Synthesis and applications: Transport corridors seem to facilitate the spread of non-native species to higher elevations, which has serious implications in light of the warming mountain tops. Our results indicate that plant communities next to railways do not reach equilibrium quickly after disturbance. More than 10 years after railway establishment succession continued, and signs pointed in the direction of a landscape increasingly dominated by non-native species. Our study indicates that the single disturbance event associated with construction of a railway in the Himalayas had large and long-lasting effects on plant communities at and around this transport corridor, and suggests the need for a long-term region-wide coordinated monitoring and management program. </p>
Figure 1 in Phenology and impact of abiotic factors with a temporal lag on the abundance of common crab spider, Xysticus cristatus (Clerck, 1757) (Araneae: Thomisidae) in the agroecosystems of Kashmir
Figure 1. Survey areas of Xysticus cristatus in Kashmir valley (ArcGIS package-version 10.2.2).
Distribution. Afghanistan (Nuristan Province) and Kashmir (NE Pakistan and NW India). in Moschidae
Distribution. Afghanistan (Nuristan Province) and Kashmir (NE Pakistan and NW India).
FIG A–B in A new species, Yalvaciana unal sp. nov. of the genus Yalvaciana Ciplak et al. 2002 (Orthoptera: Tettigoniidae: Tettigoniinae) from Kashmir, Jammu and Kashmir India
FIG A–B. Yalvaciana unal sp. nov A) Female, B) Male
Distribution. Only definitely from NE Afghanistan, N Pakistan, and NW India (Jammu and Kashmir). in Vespertilionidae
Distribution. Only definitely from NE Afghanistan, N Pakistan, and NW India (Jammu and Kashmir).
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