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108 results for “Saturniidae”
Effects of Eggs Refrigeration on the Hatchability, Development, Cocoon Shell Weight, and Fecundity of Samia cynthia ricini Boisduval (Lepidoptera: Saturniidae)
<p>We conducted a research to study effects of eggs refrigeration on the hatchability, development, cocoon shell weight, and fecundity of eri silkworm as a strategy to improve the mass rearing efficiency by storing them under cold condition in different period</p>
FIGURE 8 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 8. Phylogenetic analysis was performed using the MEGA (version 5.0) program based on the four different amino acid sequences from various insects. The phylogenetic tree was constructed using the neighbor-joining algorithm method and bootstrap values (1000 repetitions) of the branches are indicated. The HSP90s from other organisms are: Antheraea pernyi (APX61061.1), Helicoverpa armigera (ATB54999.1), Spodoptera litura (ADK55517.2), Mythimna separata (ATN45250.1), Danaus plexippus plexippus (OWR53421.1), Bombyx mori (NP_001036876.1), Apis mellifera (NP_001153536.1), Plutella xylostella (NP_001296043.1), Drosophila melanogaster (NP_523899.1), Nilaparvata lugens (XP_022202749.1), Bicyclus anynana (XP_023945769.1);The PGRPs from other organisms are: Antheraea pernyi (AME17978.1), Samia ricini (BAF03522.1), Trichoplusia ni (XP_026737257.1), Helicoverpa armigera (AHK59818.1), Antheraea mylitta (ABG72709.1), Manduca sexta (AAO21509.1), Spodoptera litura (XP_022825445.1), Bombyx mori (NP_001036836.1);The Ras homolog genes from other organisms are: Spodoptera litura (XP_022819713.1), Vanessa tameamea (XP_026494920.1), Zootermopsis nevadensis (XP_021927562.1), Drosophila miranda (XP_017145574.1), Drosophila persimilis (XP_002015385.2), Nasonia vitripennis (XP_008209835.1); The MyD88s from other organisms are: Diaphorina citri (NP_001316117.1),Tribolium castaneum (XP_008190563.1), Drosophila melanogaster (NP_610479.1), Nasonia vitripennis (XP_008206894.1), Ceratitis capitata (XP_020716287.1), Bactrocera dorsalis (XP_011205590.1), Bombus terrestris (XP_003394201.1), Bombyx mori (XP_004921572.1), Antheraea pernyi (AHH80650.1).
FIGURE 7 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 7. RT-qPCR analysis of 11 immune-related DEGs in ML vs. PBS group. The y-axis shows relative expression levels (Blue colour represents the PBS control group and yellow colour represents the M. luteus treatment group, * p <0.05, **p <0.01).
FIGURE 6 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 6. RT-qPCR analysis of 19 immune-related DEGs in Bb vs. PBS group. The y-axis shows relative expression levels (Blue colour represents the PBS control group and red colour represents the B. bassiana treatment group, * p <0.05, **p <0.01).
FIGURE 4 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 4. GO classification of annotated differentially expressed genes in Bb vs. PBS group. The DEGs were categorized into 41 functional groups and were summarized in three main categories: biological process, cellular component and molecular function. The X-axis represents the number of genes noted on the GO item, and the Y-axis represents the GO functional classification.
FIGURE 5 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 5. GO classification of annotated differentially expressed genes in ML vs. PBS group. The DEGs were categorized into 41 functional groups and were summarized in three main categories: biological process, cellular component and molecular function. The X-axis represents the number of genes noted on the GO item, and the Y-axis represents the GO functional classification.
FIGURE 3 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 3. KEGG classification map of differentially expressed genes in ML vs. PBS group. The X axis was the number of genes annotated into a certain KEGG Pathway category, and the Y axis was the KEGG Pathway category. Different colors present different metabolic functions.
FIGURE 2 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 2. KEGG classification map of differentially expressed genes in Bb vs. PBS group. The X axis was the number of genes annotated into a certain KEGG Pathway category, and the Y axis was the KEGG Pathway category. Different colors present different metabolic functions.
FIGURES 3–6 in Descriptions of two new species of Hemileucinae (Lepidoptera: Saturniidae) from the region of Muzo in Colombia-evidence from morphology and DNA barcodes
FIGURES 3–6. Wing patterns of Leucanella bonillensis n. sp. and closely related species. 3. Male Holotype, dorsal view; 4. Idem, ventral view; 5. Male of Leucanella acutissima, dorsal (left) and ventral (right) views; 6. Male of Leucanella newmani dorsal (left) and ventral (right) views.
FIGURES 7–15 in Descriptions of two new species of Hemileucinae (Lepidoptera: Saturniidae) from the region of Muzo in Colombia-evidence from morphology and DNA barcodes
FIGURES 7–15. Genitalia patterns of Leucanella bonillensis n. sp. and closely related species. 7. Holotype genitalia, dorsal view (genitalia prep. TD#171; 8. Idem, ventral view; 9. Idem, edeagus; 10. Genitalia of Leucanella acutissima, dorsal view (genitalia prep. TD#176); 11. Idem, ventral view; 12. Idem, edeagus; 13. Genitalia of Leucanella newmani, dorsal view (genitalia prep. TD#169); 14. Idem, ventral view; 15. Idem, edeagus.
FIGURE 1 in Descriptions of two new species of Hemileucinae (Lepidoptera: Saturniidae) from the region of Muzo in Colombia-evidence from morphology and DNA barcodes
FIGURE 1. Single most parsimonious tree (L=98, CI=0.84, RI=0.96) obtained from the phylogenetic analysis of the DNA barcode sequences for the specimens of the genus Leucanella. Each specimen is identified by its ProcessID code (see Table 1). Branch length is proportional to the number of substitutions, and values above branches are the number of inferred changes (FAST optimization) and bootstrap supports, respectively.
FIGURES 24–31 in Descriptions of two new species of Hemileucinae (Lepidoptera: Saturniidae) from the region of Muzo in Colombia-evidence from morphology and DNA barcodes
FIGURES 24–31. Genitalia patterns of Cerodirphia zulemae n. sp. and closely related species. 24. 7th tergite of the Holotype of C. zulemae, dorsal view (genitalia prep. TD#141); 25. Same structure, Cerodirphia apunctata (genitalia prep. S–RR#57); 26. Same structure, Cerodirphia brunnea (genitalia prep. TD#174); 27. Same structure, Cerodirphia speciosa (genitalia prep. RR#295); 28. 7th sternite of the Holotype of C. zulemae, ventral view; 29. Same structure, C. apunctata; 30. Same structure, C. brunnea; 31. Same structure, C. speciosa.
FIGURES 16–23 in Descriptions of two new species of Hemileucinae (Lepidoptera: Saturniidae) from the region of Muzo in Colombia-evidence from morphology and DNA barcodes
FIGURES 16–23. Wing patterns of Cerodirphia zulemae n. sp. and closely related species. 16. Male Holotype, dorsal vew; 17. Female Allotype, dorsal view; 18. Male paratype, dorsal view; 19. Idem, ventral view; 20. Male of Cerodirphia apunctata, dorsal view (French Guyana, crossroad RN2-Cacao, 25 i 1999, leg. R. Rougerie, ex larva–emerged 30 vii 1999, genitalia prep. S–RR#57); 21. Male of C. apunctata, dorsal view (Venezuela, Bolivar, road El Dorado – Sta Elena, km18, la Escalera, 1400m asl, 7–20 xi 1990, leg. P. Bleuzen, genitalia prep. C. Lemaire # 5718). 22. Male of Cerodirphia speciosa, dorsal view (French Guyana, Cayenne, i 1972, leg. J.J. de Granville, genitalia prep RR#295); 23. Male of Cerodirphia brunnea, dorsal view (Bolivia, La Paz, Nor Yungas, Carrasco, 1450m asl, xi 1990, leg. T. Decaëns & G. Lecourt).
FIGURES 32–51 in Descriptions of two new species of Hemileucinae (Lepidoptera: Saturniidae) from the region of Muzo in Colombia-evidence from morphology and DNA barcodes
FIGURES 32–51. Male genitalia patterns of Cerodirphia zulemae n. sp. and closely related species. 32. Genitalia of the Holotype of C. zulemae, dorsal view (genitalia prep. TD#141); 33. Idem, ventral view; 34. Idem, lateral view; 35. Idem, lateral view of the edeagus; 36. idem, dorsal view of the edeagus; 37. Genitalia of Cerodirphia apunctata, dorsal view (genitalia prep. S–RR#57); 38. Idem, ventral view; 39. Idem, lateral view; 40. Idem, lateral view of the edeagus; 41. idem, dorsal view of the edeagus; 42. Genitalia of Cerodirphia brunnea, dorsal view (genitalia prep. TD#174); 43. Idem, ventral view; 44. Idem, lateral view; 45. Idem, lateral view of the edeagus; 46. idem, dorsal view of the edeagus; 47. Genitalia of Cerodirphia speciosa, dorsal view (genitalia prep. RR#295); 48. Idem, ventral view; 49. Idem, lateral view; 50. Idem, lateral view of the edeagus; 51. idem, dorsal view of the edeagus.
FIGURES 52–54 in Descriptions of two new species of Hemileucinae (Lepidoptera: Saturniidae) from the region of Muzo in Colombia-evidence from morphology and DNA barcodes
FIGURES 52–54. Female genitalia patterns of Cerodirphia zulemae n. sp. 52. Genitalia of the Allotype, dorsal view (genitalia prep. TD#184); 53. Idem, ventral view; 54. Idem, lateral view.
FIGURE 2 in Descriptions of two new species of Hemileucinae (Lepidoptera: Saturniidae) from the region of Muzo in Colombia-evidence from morphology and DNA barcodes
FIGURE 2. Strict consensus of the 9 most parsimonious trees (L=244, CI=75, RI=89) obtained from the phylogenetic analysis of the DNA barcode sequences for the specimens of the genus Cerodirphia. Each specimen is identified by its ProcessID code (see Table 1). Branch length is proportional to the number of substitutions, and values above branches are the number of inferred changes (FAST optimization) and bootstrap supports, respectively.
FIGURE 1 in Phylogenetic analysis of Arsenura Duncan (Lepidoptera, Saturniidae, Arsenurinae) based on adult morphology
FIGURE 1. Cladogram showing proposed relationship between species of Arsenura and Acctran optimization (L=65; Ci=93; Ri=94). Filled circles are synapomorphies, open circles homoplasies. Numbers above the branches indicate the character, numbers below are the states for each.
FIGURE 2 in Phylogenetic analysis of Arsenura Duncan (Lepidoptera, Saturniidae, Arsenurinae) based on adult morphology
FIGURE 2. Strict consensus cladogram of the four most parsimonious trees (L=67; Ci=91; Ri=92). Filled circles are synapomorphies, open circles homoplasies. Numbers above the branches indicate the character; numbers below are the states for each.
FIGURE 3 in Phylogenetic analysis of Arsenura Duncan (Lepidoptera, Saturniidae, Arsenurinae) based on adult morphology
FIGURE 3. Strict consensus tree of 100 Bootstrap replications based on 33 adult morphological characters. Values represent the frequency (%) that a clade was found in the replications.
FIGURE 7 in Review of the genus Lemaireia Nässig & Holloway, 1988 from China, with description of a new species (Lepidoptera: Saturniidae)
FIGURE 7. Distribution map of Lemaireia species in China. Circle, L. daparo sp. n.; triangle, L. luteopeplus aureopeplus; star, L. hainana.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.