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134 results for “Qinling Mountains”
Figure 2 in Phylogeography of Gyrodactylus konovalovi (Monogenoidea: Gyrodactylidae) in the Qinling Mountains in Central China
Figure 2. Bayesian inference tree of haplotypes based on cox1 sequences of G. konovalovi. The numbers above nodes are Bayesian posterior probabilities, maximum likelihood (ML) and maximum parsimony (MP) bootstrap values, respectively (those above 50% are shown). The three lineages are differentiated by different colors (red, Lineage A; blue, Lineage B; green, Lineage C). Estimated divergent dates in Mya are given in numbers down nodes with underline.
Fig. 2 in A geometric morphometric study of the wing shapes of Pieris rapae (Lepidoptera: Pieridae) from the Qinling Mountains and adjacent regions: An environmental and distance-based consideration
Fig. 2. Distribution of landmarks on P. rapae forewing and hind wing.
FIGURES 63–67 in Nine new species of genus Homoneura from Qinling mountains in China (Diptera: Lauxaniidae)
FIGURES 63–67. Homoneura (Homoneura) miaoae sp. nov. Paratype male genitalia. 63. syntergosternite and epandrial complex, lateral view; 64. epandrial complex, posterior view; 65. syntergosternite, anterior view; 66. phallus complex, ventral view; 67. phallus complex, lateral view. Scale bar=0.1 mm.
FIGURES 79–86 in Nine new species of genus Homoneura from Qinling mountains in China (Diptera: Lauxaniidae)
FIGURES 79–86. Homoneura (Homoneura) similicurvata sp. nov. Paratype male. 79. habitus, lateral view; 80–81. head, anterior and lateral view; 82. thorax, dorsal view; 83–84. abdomen, dorsal and lateral view; 85 abdominal terigtes 6–9, lateral view; 86. wing.
FIGURES 74–78 in Nine new species of genus Homoneura from Qinling mountains in China (Diptera: Lauxaniidae)
FIGURES 74–78. Homoneura (Homoneura) platimarginata sp. nov. Holotype male genitalia. 74. syntergosternite and epandrial complex, lateral view; 75. epandrial complex, posterior view; 76. syntergosternite, anterior view; 77. phallus complex, ventral view; 78. phallus complex, lateral view. Scale bar=0.1 mm.
FIGURES 24–29 in Nine new species of genus Homoneura from Qinling mountains in China (Diptera: Lauxaniidae)
FIGURES 24–29. Homoneura (Homoneura) dagupingensis sp. nov. Paratype male. 24. habitus, lateral view; 25–26. head, anterior and lateral view; 27. thorax, dorsal view; 28. abdomen, lateral view; 29. wing.
FIGURES 35–40 in Nine new species of genus Homoneura from Qinling mountains in China (Diptera: Lauxaniidae)
FIGURES 35–40. Homoneura (Homoneura) longiacutata sp. nov. Paratype male. 35. habitus, lateral view; 36–37. head, anterior and lateral view; 38. thorax, dorsal view; 39. abdomen, lateral view; 40. wing.
FIGURES 68–73 in Nine new species of genus Homoneura from Qinling mountains in China (Diptera: Lauxaniidae)
FIGURES 68–73. Homoneura (Homoneura) platimarginata sp. nov. Holotype male. 68. habitus, lateral view; 69–70. head, anterior and lateral view; 71. thorax, dorsal view; 72. abdominal tergites 6–9, lateral view; 73. wing.
Data from: Walking in a heterogeneous landscape: dispersal, gene-flow and conservation implications for the giant panda in the Qinling Mountains
Understanding the interaction between life history, demography and population genetics in threatened species is critical for the conservations of viable populations. In the context of habitat loss and fragmentation, identifying the factors that underpin the structuring of genetic variation within populations can allow conservationists to evaluate habitat quality and connectivity and help to design dispersal corridors effectively. In this study, we carried out a detailed, fine-scale landscape genetic investigation of a giant panda population for the first time, using a large microsatellite data set and examined the role of isolation-by-barriers (IBB), isolation-by-distance (IBD) and isolation-by-resistance (IBR) in shaping the genetic variation pattern of giant pandas in the Qinling Mountains. We found that the Qinling population comprises one continuous genetic cluster, and among the landscape hypotheses tested, gene flow was found to be correlated with resistance gradients for two topographic factors, rather than geographical distance or barriers. Gene-flow was inferred to be facilitated by easterly slope aspect and to be constrained by land surface with high topographic complexity. These factors are related to benign micro-climatic conditions for both the pandas and the food resources they rely on and more accessible topographic conditions for movement, respectively. We identified optimal corridors based on these results, aiming to promote gene flow between human-induced habitat fragments. These findings provide insight into the permeability and affinities of the giant panda habitat and offer important reference for the conservation of the giant panda and its habitat.
FIGURE 1 in A new genus and three new species of Phyllocoptini (Acari: Eriophyidae: Phyllocoptinae) from the Qinling Mountains, Shaanxi Province, northwestern China
FIGURE 1. Calvittacus regiae sp. nov. A, dorsal view of female; B, female coxae and genitalia; C, legs and; D, lateral microtubercles; E, empodium; F, male genitalia.
FIGURE 3 in A new genus and three new species of Phyllocoptini (Acari: Eriophyidae: Phyllocoptinae) from the Qinling Mountains, Shaanxi Province, northwestern China
FIGURE 3. Calepitrimerus fopingi sp. nov. A, dorsal view of female; B, female coxae and genitalia; C, legs and; D, lateral microtubercles; E, empodium.
FIGURE 2 in A new genus and three new species of Phyllocoptini (Acari: Eriophyidae: Phyllocoptinae) from the Qinling Mountains, Shaanxi Province, northwestern China
FIGURE 2. Calepitrimerus dendrobenthamiae sp. nov. A, dorsal view of female; B, female coxae and genitalia; C, legs and; D, lateral microtubercles; E, empodium; F, male genitalia.
FIGURES 9–10 in Haploperla choui sp. n. (Plecoptera: Chloroperlidae), a remarkable new stonefly from Qinling Mountains of China
FIGURES 9–10. Haploperla choui sp. nov. (male) 9. Aedeagus, ventral view. 10. Aedeagal stylus, ventral view.
FIGURES 1–6 in Haploperla choui sp. n. (Plecoptera: Chloroperlidae), a remarkable new stonefly from Qinling Mountains of China
FIGURES 1–6. Haploperla choui sp. nov. 1. Adult male habitus, dorsal view. 2. Adult female habitus, dorsal view. 3. Head and pronotum of male, dorsal view. 4. Head and pronotum of female, dorsal view. 5. Male terminalia, dorsal view. 6. Male terminalia, lateral view.
FIGURES 1–6 in A new species of the genus Sovia (Lepidoptera: Hesperiidae) from Qinling-Daba Mountains of China
FIGURES 1–6. Adults of Sovia lii. a. dorsal view; b. ventral view. 1. holotype, 2–6. paratypes. Scale bar = 1 cm.
FIGURES 17–22 in A new species of the genus Sovia (Lepidoptera: Hesperiidae) from Qinling-Daba Mountains of China
FIGURES 17–22. Adults of Sovia lucasii. a. dorsal view; b. ventral view. 17–21. from W. Sichuan, 22. from S. Shaanxi. Scale bar = 1 cm.
FIGURE 16 in A new species of the genus Sovia (Lepidoptera: Hesperiidae) from Qinling-Daba Mountains of China
FIGURE 16. Wen-Hao Nan (left) and Xing-Long Jia (right) collecting Sovia lii at the type locality, showing the habitat of the new species. Photo by Guo-Xi Xue.
FIGURES 7–15 in A new species of the genus Sovia (Lepidoptera: Hesperiidae) from Qinling-Daba Mountains of China
FIGURES 7–15. Male genitalia of Sovia lii. 7. ring in lateral view; 8. ring in oblique view; 9. uncus in dorsal view; 10. uncus in ventral view; 11. inner side of valva; 12. outer side of valva; 13. aedeagus in lateral view; 14. aedeagus in dorsal view; 15. juxta.
FIGURES 23–26 in A new species of the genus Sovia (Lepidoptera: Hesperiidae) from Qinling-Daba Mountains of China
FIGURES 23–26. Male genitalia of Sovia lucasii. 23. genital capsule in lateral view, with left valva removed; 24. uncus in dorsal view; 25. outer side of valva; 26. inner side of valva.
FIGURES 84–90 in On some Linyphiidae of China, mainly from Taibai Shan, Qinling Mountains, Shaanxi Province (Arachnida: Araneae)
FIGURES 84–90. Tibioploides stigmosus (Xia, Zhang, Gao, Fei, Rui & Kim 2001) comb. n. 84 right palp (retrolateral view), 85 palpal tibia (dorsal view), 86 tip of median membrane and embolus (lateral view), 87 median membrane and embolic division (ventral view), 88–90 epigyne (88, 89 ventral view, 90 dorsal view). Abbreviations: E embolus, MM median membrane.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.