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FIGURE 4 in Spotted beauty-Gedanochila museisucini gen. et sp. nov.-a new Achilidae from Eocene Baltic amber (Hemiptera: Fulgoromorpha) and its relation to Achilini
FIGURE 4. Gedanochila museisucini gen. et sp. nov. Holotype. A, Face; B, Apex of right metatibia and metatarasus; C, Right metatarsus; D, Left metatarsus; E-H, Anaglyph images of the specimen in dorsal view. Scale bars: 0.5 mm for A-D; 2 mm for E-H.
FIGURE 1 in Spotted beauty-Gedanochila museisucini gen. et sp. nov.-a new Achilidae from Eocene Baltic amber (Hemiptera: Fulgoromorpha) and its relation to Achilini
FIGURE 1. Gedanochila museisucini gen. et sp. nov. Holotype. A, Anterior portion of body in dorsal view; B, Head capsule in frontal view; C, Head capsule in frontolateral view; D, Tip of metatibia and metatarsus. Scale bar 1 mm.
On following pages: 17. Philippine Large-headed Fruit Bat (Dyacopterus rickarti); 18. Blanford's Fruit Bat (Sphaerias blanfordi); 19. Bornean Spotted-winged Fruit Bat (Balionycteris maculata); 20. Malayan Spotted-winged Fruit Bat (Balionycteris seimundi); 21. Bornean Pygmy Fruit Bat (Aethalops aequalis); 22. Common Pygmy Fruit Bat (Aethalops alecto); 23. Common Swift Fruit Bat (Thoopterus nigrescens); 24. Suhaniah's Swift Fruit Bat (Thoopterus suhaniahae); 25. Mindanao Pygmy Fruit Bat (Alionycteris paucidentata); 26. Fischer's Pygmy Fruit Bat (Haplonycteris fischeri); 27. Luzon Pygmy Fruit Bat (Otopteropus cartilagonodus); 28. Salim Ali's Fruit Bat (Latidens salimalii): 29. Sundaic Black-capped Fruit Bat (Chironax melanocephalus); 30. Sulawesi Black-capped Fruit Bat (Chironax tumulus); 31. Lucas's Short-nosed Fruit Bat (Penthetor lucasii). in Pteropodidae
On following pages: 17. Philippine Large-headed Fruit Bat (Dyacopterus rickarti); 18. Blanford's Fruit Bat (Sphaerias blanfordi); 19. Bornean Spotted-winged Fruit Bat (Balionycteris maculata); 20. Malayan Spotted-winged Fruit Bat (Balionycteris seimundi); 21. Bornean Pygmy Fruit Bat (Aethalops aequalis); 22. Common Pygmy Fruit Bat (Aethalops alecto); 23. Common Swift Fruit Bat (Thoopterus nigrescens); 24. Suhaniah's Swift Fruit Bat (Thoopterus suhaniahae); 25. Mindanao Pygmy Fruit Bat (Alionycteris paucidentata); 26. Fischer's Pygmy Fruit Bat (Haplonycteris fischeri); 27. Luzon Pygmy Fruit Bat (Otopteropus cartilagonodus); 28. Salim Ali's Fruit Bat (Latidens salimalii): 29. Sundaic Black-capped Fruit Bat (Chironax melanocephalus); 30. Sulawesi Black-capped Fruit Bat (Chironax tumulus); 31. Lucas's Short-nosed Fruit Bat (Penthetor lucasii).
Processed data for "SpotClean adjusts for spot swapping in spatial transcriptomics data"
<p>This repo contains processed data to reproduce results in the paper "SpotClean adjusts for spot swapping in spatial transcriptomics data".</p>
FIGURE 3 in Hyporheic zone, a blind spot: Discovery of the larva of Kisaura (Trichoptera: Philopotamidae) from Japan
FIGURE 3. Maximum Likelihood tree of Japanese Philopotamidae based on mtDNA barcode region COI. Scale bar indicates the genetic distance of 0.05. Numbers on the internodes represent the bootstrap values. Sequences for Kisaura minakawai Arefina 2005 and for larvae of K. minakawai are identified with an orange line and an orange box, respectively.
FIGURES 5A–5I in Hyporheic zone, a blind spot: Discovery of the larva of Kisaura (Trichoptera: Philopotamidae) from Japan
FIGURES 5A–5I. Heads of Dolophilodes spp. and Kisaura minakawai larvae, right lateral. 5A, D. auriculata Martynov 1933 (from Ashibetsu-shi, Hokkaidô, Japan); 5B, D. nomugiensis (Kobayashi 1980) (from Mukawa-chô, Hokkaidô, Japan); 5C, D. commata (Kobayashi 1980)(from Tsushima, Japan); 5D, D. shinboensis (Kobayashi 1980) (from Chitose-shi, Hokkaidô, Japan); 5E, D. japonica (Banks 1906) (from Maniwa-shi, Okayama, Japan); 5F, D. dilatata Kuhara 2005 (from Daisen-shi, Akita, Japan); 5G, D. iroensis (Kobayashi 1980)(from Takinoue-chô, Hokkaidô, Japan); 5H, D. angustata Kuhara 2005 (from Nichinan-chô, Tottori, Japan); 5I, K. minakawai Arefina 2005 (in Arefina & Armitage 2005) (from Nachikatsuura-chô, Wakayama, Japan). Scale bar = 1 mm.
FIGURES 4A–4G. Kisaura minakawai Arefina 2005 in Hyporheic zone, a blind spot: Discovery of the larva of Kisaura (Trichoptera: Philopotamidae) from Japan
FIGURES 4A–4G. Kisaura minakawai Arefina 2005, final instar larva (from Wakayama). 4A, habitus, left lateral; 4B, head and prothorax, right lateral; 4C, head and prothorax, dorsal; 4D, head, ventral; 4E, mandibles, dorsal, left (4Ea) and right (4Eb); 4F, right and left mandibles, respectively, outer right lateral (4Fa) and outer left lateral (4Fb); 4G, left legs, in posterolateral view, fore- (4Ga), mid- (4Gb), and hind legs (4Gc). Scale bar = 1 mm.
FIGURES 1A–1C. 1A in Hyporheic zone, a blind spot: Discovery of the larva of Kisaura (Trichoptera: Philopotamidae) from Japan
FIGURES 1A–1C. 1A, parts of the "T-shaped device" for collecting hyporheic invertebrate fauna, without the pump; 1B, an image of the "T-shaped device" in use; 1C, pictoral instructions for use of the "T-shaped device."
On followıng pages 16 Calamıan Deer (Axıs calamıanensıs) 17 Common Fallow Deer (Dama dama) 18 Persnun Fallow Deer (Dama mesopotamıca) 19 Sambar (Rusa unıoolon 20 Javan Deer (Rusa tlmoœnsls). 21 Phılıppıne Spotted Deer (Rusa alfredh 22 Phılıppıne Brown Deer (Husa manannal in Cervidae
On followıng pages 16 Calamıan Deer (Axıs calamıanensıs) 17 Common Fallow Deer (Dama dama) 18 Persnun Fallow Deer (Dama mesopotamıca) 19 Sambar (Rusa unıoolon 20 Javan Deer (Rusa tlmoœnsls). 21 Phılıppıne Spotted Deer (Rusa alfredh 22 Phılıppıne Brown Deer (Husa manannal
On following pages: 21. Northern Quoll (Dasyurus hallucatus); 22. Spotted-tailed Quoll (Dasyurus maculatus); 23. Bronze Quoll (Dasyurus spartacus); 24. Eastern Quoll (Dasyurus viverrinus); 25. Tasmanian Devil (Sarcophilus harrisii). in Dasyuridae
On following pages: 21. Northern Quoll (Dasyurus hallucatus); 22. Spotted-tailed Quoll (Dasyurus maculatus); 23. Bronze Quoll (Dasyurus spartacus); 24. Eastern Quoll (Dasyurus viverrinus); 25. Tasmanian Devil (Sarcophilus harrisii).
On following pages: 13. Harp Seal (Pagophilus groenlandicus); 14. Harbor Seal (Phoca vitulina); 15. Spotted Seal (Phoca largha); 16. Caspian Seal (Pusa caspica); 17. Baikal Seal (Pusa sibirica); 18. Ringed Seal (Pusa hispida). in Phocidae
On following pages: 13. Harp Seal (Pagophilus groenlandicus); 14. Harbor Seal (Phoca vitulina); 15. Spotted Seal (Phoca largha); 16. Caspian Seal (Pusa caspica); 17. Baikal Seal (Pusa sibirica); 18. Ringed Seal (Pusa hispida).
On following pages: 19. Striped Dolphin (Stenella coeruleoalba); 20. Atlantic Spotted Dolphin (Stenella frontalis); 21. Spinner Dolphin (Stenella longirostris); 22. Rough-toothed Dolphin (Steno bredanensis). in Delphinidae
On following pages: 19. Striped Dolphin (Stenella coeruleoalba); 20. Atlantic Spotted Dolphin (Stenella frontalis); 21. Spinner Dolphin (Stenella longirostris); 22. Rough-toothed Dolphin (Steno bredanensis).
On following pages: 27. Blue-eyed Spotted Cuscus (Spilocuscus wilsoni); 28. Common Spotted Cuscus (Spilocuscus maculatus); 29. Australian Spotted Cuscus (Spilocuscus nudicaudatus). in Phalangeridae
On following pages: 27. Blue-eyed Spotted Cuscus (Spilocuscus wilsoni); 28. Common Spotted Cuscus (Spilocuscus maculatus); 29. Australian Spotted Cuscus (Spilocuscus nudicaudatus).
Direct Processing and Storage of Cell-free Plasma using Dried Plasma Spot Cards
<p>This is the data set from all figures and tables from the manuscript "Direct Processing and Storage of Cell-free Plasma using Dried Plasma Spot Cards", which is posted to the ChemRxiv preprint server (<a href="https://doi.org/10.26434/chemrxiv-2022-h8rp8">10.26434/chemrxiv-2022-h8rp8</a>) and currently in consideration for peer-reviewed publication elsewhere. </p>
On following pages: 27. Ethiopian Brush-furred Rat (Lophuromys brunneus); 28. Mount Chercher Brush-furred Rat (Lophuromys chercherensis); 29. Ethiopian Forest Brush-furred Rat (Lophuromys chrysopus); 30. Gray Brush-furred Rat (Lophuromyscinereus); 31. Mount Oku Brush-furred Rat (Lophuromys dieterleni); 32. Dudu's Brush-furred Rat (Lophuromys dudui); 33. Mount Lefo Brush-furred Rat (Lophuromys eisentraut)); 34. Buff-spotted Brush-furred Rat (Lophuromys flavopunctatus); 35. Hutterer's Brush-furred Rat (Lophuromys huttereri); 36. Kilonzo's Brush-furred Rat (Lophuromys kilonzol); 37. Albertine Rift Brush-furred Rat (Lophuromys laticeps); 38. Buff-bellied Brush-furred Rat (Lophuromys luteogasten; 39. Machangu's Brush-furred Rat (Lophuromys machangui); 40. Makundi's Brush-furred Rat (Lophuromys makundii); 41. Margaret's Brush-furred Rat (Lophuromys margarettae); 42. Western Rift Brush-furred Rat (Lophuromys medicaudatus); 43. Black-clawed Brush-furred Rat (Lophuromys melanonyx); 44. North Western Rift Brush-furred Rat (Lophuromys menageshae); 45. Naked-tailed Brush-furredRat (Lophuromys nudicaudus); 46. Sheko Forest Brush-furred Rat (Lophuromys pseudosikapusi); 47. Rahm's Brush-furred Rat (Lophuromys rahmi); 48. Congolese Brush-furred Rat (Lophuromysrita); 49. Mount Cameroon Brush-furred Rat (Lophuromys rosevear); 50. Sabuni's Brush-furred Rat (Lophuromys sabunii); 51. Western Brush-furred Rat (Lophuromys sikapusi); 52. Simien Brush-furred Rat (Lophuromys simensis); 53. Rwenzori Brush-furred Rat (Lophuromys stanley); 54. Verhagen's Brush-furred Rat (Lophuromys verhageni); 55. Woosnam's Brush-furred Rat (Lophuromys woosnami); 56. Zena Brush-furred Rat (Lophuromys zena); 57. Rudd's Bristle-furred Rat (Uranomys rudd). in Muridae
On following pages: 27. Ethiopian Brush-furred Rat (Lophuromys brunneus); 28. Mount Chercher Brush-furred Rat (Lophuromys chercherensis); 29. Ethiopian Forest Brush-furred Rat (Lophuromys chrysopus); 30. Gray Brush-furred Rat (Lophuromyscinereus); 31. Mount Oku Brush-furred Rat (Lophuromys dieterleni); 32. Dudu's Brush-furred Rat (Lophuromys dudui); 33. Mount Lefo Brush-furred Rat (Lophuromys eisentraut)); 34. Buff-spotted Brush-furred Rat (Lophuromys flavopunctatus); 35. Hutterer's Brush-furred Rat (Lophuromys huttereri); 36. Kilonzo's Brush-furred Rat (Lophuromys kilonzol); 37. Albertine Rift Brush-furred Rat (Lophuromys laticeps); 38. Buff-bellied Brush-furred Rat (Lophuromys luteogasten; 39. Machangu's Brush-furred Rat (Lophuromys machangui); 40. Makundi's Brush-furred Rat (Lophuromys makundii); 41. Margaret's Brush-furred Rat (Lophuromys margarettae); 42. Western Rift Brush-furred Rat (Lophuromys medicaudatus); 43. Black-clawed Brush-furred Rat (Lophuromys melanonyx); 44. North Western Rift Brush-furred Rat (Lophuromys menageshae); 45. Naked-tailed Brush-furredRat (Lophuromys nudicaudus); 46. Sheko Forest Brush-furred Rat (Lophuromys pseudosikapusi); 47. Rahm's Brush-furred Rat (Lophuromys rahmi); 48. Congolese Brush-furred Rat (Lophuromysrita); 49. Mount Cameroon Brush-furred Rat (Lophuromys rosevear); 50. Sabuni's Brush-furred Rat (Lophuromys sabunii); 51. Western Brush-furred Rat (Lophuromys sikapusi); 52. Simien Brush-furred Rat (Lophuromys simensis); 53. Rwenzori Brush-furred Rat (Lophuromys stanley); 54. Verhagen's Brush-furred Rat (Lophuromys verhageni); 55. Woosnam's Brush-furred Rat (Lophuromys woosnami); 56. Zena Brush-furred Rat (Lophuromys zena); 57. Rudd's Bristle-furred Rat (Uranomys rudd).
FIGURE 3 in Colletotrichum juglandis sp. nov. (Ascomycota: Glomerellaceae) associated with walnut leaf spot in China
FIGURE 3. Morphology of Colletotrichum juglandis sp. nov. and its pathogenicity test on walnut leaf (Juglans regia). A. Diseased samples from field; B. Pathogenicity tests on living leaf; C. Colony on PDA; D. Conidioma; E. Conidiophores; F. Chlamydospores; G–I. Appressoria; J. Conidia. D. Scale bars = 100 μm; E–J = 10 μm.
FIGURE 1 in Colletotrichum juglandis sp. nov. (Ascomycota: Glomerellaceae) associated with walnut leaf spot in China
FIGURE 1. Phylogenetic tree of Colletotrichum spp. associated with walnut leaf spot based on the combined gene sequences of ITS, GAPDH, CHS-1, and ACT. The Bayesian posterior probabilities ≥0.6 (PP), maximum likelihood bootstrap support values ≥60% (BS) are given at the nodes (PP/BS). Examined isolates are in bold. Isolates marked with "*" are ex-type or ex-epitype and "(*)" are ex-type or authentic culture.
FIGURE 2 in Colletotrichum juglandis sp. nov. (Ascomycota: Glomerellaceae) associated with walnut leaf spot in China
FIGURE 2. Morphological characteristics of Colletotrichum kahawae, C. gloeosporioides, C. fiorinia, C. nymphaeae and C. godetiae associated with walnut leaf spot. A–E. Colonies on PDA for 7 d; F–V. Appressoria; H–W. Conidiophores; I–X. Conidia. Scale bars:10 μm.
Diurnal pastoralism does not reduce juvenile recruitment nor elevate allostatic load in spotted hyenas
<p>1. Anthropogenic activity can have substantial effects on wildlife. These effects may vary according to the characteristics of the activity and the species involved. While effects on behavior are well-studied, studies of effects on fitness and physiology are scarce, particularly for group-living species.</p> <p>2. We exploited a natural experimental setup to investigate the effect of diurnal pastoralism on juvenile recruitment and allostatic load in a population of free-ranging spotted hyenas in the Ngorongoro Crater, Tanzania, over a 24-year period.</p> <p>3. Pastoralism was restricted to the territories of two of the eight study clans, allowing us to compare juvenile recruitment in exposed and unexposed clans. We also compared fecal glucocorticoid metabolite concentrations (fGMC) – a biomarker of an organism's allostatic load – between exposed and unexposed clans using 975 fecal samples from 475 hyenas.</p> <p>4. We found no detectable difference in juvenile recruitment nor fGMC between the exposed and unexposed clans, indicating that the pastoralism had no substantial deleterious effect on the spotted hyenas. The lack of a deleterious effect likely stems from the combined effect of the predictable and undisruptive nature of the pastoralism, the socio-ecology of spotted hyenas, and the Ngorongoro Crater's consistently abundant prey.</p> <p>5. Our findings demonstrate that exposure to anthropogenic activity may be compatible with the persistence of certain group-living species, especially if the overlap between the species' critical behaviors and the activity is limited. Our study thereby provides new perspectives for ecologists, conservation biologists, and stakeholders who seek to assess human-wildlife conflicts and balance the needs of local human communities and wildlife.</p>
Non-detected changes of dark spots on Mercury in 30 Earth months
<p>Central coordinates for each of the cataloged dark spots on Mercury.</p>
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