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105 results for “molecular sexing”
Fig. 2 in Identification of Sexually Dimorphic Genes in Pectoral Fin as Molecular Markers for Assessing the Sex of Japanese Silver Eels ().
Fig. 2. Comparisons of relative expression levels of six genes possibly higher expressed in the pectoral fins of female silver eels between the "S-Female" (n = 7, four repeats) and "S-Male" (n = 5, four repeats) groups. (A) LOC108249696, (B) LOC110515957, (C) egr3, (D) cipc, (E) LOC111853410, (F) cttn. The arp was a housekeeping gene, and two female samples (F1 and F2) were used as the internal control for calculating relative expression levels. The y-axis was in log2 scale. The "S-Female" meant the female silver eels, and the "S-Male" meant the male silver eels. The solid black line represented the median value, and the solid black circle represented the outliers. Asterisks indicated significant differences (**P <0.01, ***P <0.001) in relative expression levels between two groups.
Fig. 1 in Identification of Sexually Dimorphic Genes in Pectoral Fin as Molecular Markers for Assessing the Sex of Japanese Silver Eels ().
Fig. 1. Scheme of the MOLAS database for the Japanese eel. Annotated information of the assembled transcripts, including DNA sequence, amino acids sequence, open reading frames, signal peptides, transmembrane domains, gene ontology, hit KEGG pathway, and FPKM values, can be searched by the names of genes or the transcript ID in the Full-text search. A sequence of DNA can also be used to find the transcript with high similarity through the Sequence Search/BLAST. Moreover, the Pairwise Comparison can compare the differences in expression levels of the transcripts between two different libraries or two library groups, and then the differentially expressed genes can be summarized to a gene list. Furthermore, the Import Genelist can analyze the protein function, gene ontology enrichment, heatmap of expression, and hit terms on a KEGG pathway for a gene list. Additionally, the Clustering can be used to categorize the expressional patterns of transcripts between two different libraries or two library groups. Finally, the KEGG GlobalView and Gene List Analysis can see the hit terms of transcripts on the map of KEGG pathway and compare the different gene lists by Venn diagrams, respectively.
Figure 1. DNA extraction with two different protocols from different noninvasive samples. Lines 1, 3, 5 in Evaluation of methods for molecular sex-typing of three heron species from different DNA sources
Figure 1. DNA extraction with two different protocols from different noninvasive samples. Lines 1, 3, 5, and 7: DNA extraction with commercial kit; Lines 2, 4, 6, and 8: DNA extracted with modified standard protocol. Lines 1–2: eggshells (Grey Heron); lines 3–4: eggshell swabs (Grey Heron); lines 5–6: pin feathers (Purple Heron); lines 7–8: contour feathers (Great Egret); 9: negative control; M: molecular marker.
Figure 2. Heron sex-typing with 2550F in Evaluation of methods for molecular sex-typing of three heron species from different DNA sources
Figure 2. Heron sex-typing with 2550F/2718R primers. Lines 1–7: Purple Heron nestlings, males (600 bp for Z chromosome); 8–10: Great Egret nestlings, females (600 bp for Z chromosome and 450 bp for W chromosome); 11: negative control; M: molecular marker.
Data from: Elucidation of molecular mechanisms of sex-based arrhythmias
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Molecular evolution of the sex peptide network in Drosophila
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FIGURE 26. Miobantia nordestina n in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 26. Miobantia nordestina n. sp., male genitalia, right dorsal and ventral phallomeres from ventral perspective, and left dorsal phallomere from dorsal perspective. A, holotype; B, male from Pindobaçu. Images –.1, right dorsal phallomere;.2, ventral phallomere;.3, left dorsal phallomere.
FIGURE 25. Miobantia sulista n in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 25. Miobantia sulista n. sp., male genitalia, right dorsal and ventral phallomeres from ventral perspective, and left dorsal phallomere from dorsal perspective. A, male from Porto Alegre; B, holotype. Images –.1, ventral phallomere;.2, left dorsal phallomere.
FIGURE 24. Miobantia arctissima n in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 24. Miobantia arctissima n. sp., male genitalia, right dorsal and ventral phallomeres from ventral perspective, and left dorsal phallomere from dorsal perspective, holotype.
FIGURE 23. Miobantia immanis n in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 23. Miobantia immanis n. sp., male genitalia, right dorsal and ventral phallomeres from ventral perspective, and left dorsal phallomere from dorsal perspective. A, holotype; B, MT00090; C, male at MCTP. Images –.1, ventral phallomere;.2, left dorsal phallomere.
FIGURE 21 in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 21. Miobantia fuscata (Giglio-Tos, 1915), male genitalia, right dorsal and ventral phallomeres from ventral perspective, and left dorsal phallomere from dorsal perspective. A, male from Rserva Biológica de Duas Bocas, Sede, point 4; B, male from Reserva Natural Vale, Estrada Experimental 1, Farinha Seca; C, MT00030; D, MT00061; E, male from Parque Estadual de Itaúnas, point 7; F, male from Reserva Biológica de Duas Bocas, Pau Amarelo, point 18; G, MT00069; H, male from Fazenda Usina Paineiras, Bosque 13. Images –.1, right dorsal phallomere;.2, ventral phallomere;.3, left dorsal phallomere;.4, anterior process.
FIGURE 20 in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 20. Miobantia ciliata (Stål, 1860), male genitalia, right dorsal and ventral phallomeres from ventral perspective, and left dorsal phallomere from dorsal perspective. A, MT00033; B, MT00047; C, MT00043. Images –.1, ventral phallomere;.2, left dorsal phallomere.
FIGURE 18 in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 18. Miobantia fuscata (Giglio-Tos, 1915), ootheca laid by female collected at Reserva Biológica Córrego do Veado, Pinheiros. A, lateral view; B, dorsal view.
FIGURE 15 in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 15. Miobantia, dorsal perspective of the pronotum. M. immanis n. sp.: A, female allotype; B, male holotype; M. sulista n. sp.: C, male holotype; D, female allotype; M. nordestina n. sp.: E, male holotype; F, female allotype.
FIGURE 19 in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 19. Miobantia aptera Giglio-Tos, 1917, male genitalia, right dorsal and ventral phallomeres from ventral perspective, and left dorsal phallomere from dorsal perspective. A, MT00051; B, male from Pancas; C, male from Reserva Biológica de Duas Bocas, Pau Amarelo, point 21; D, MT00195; E, male at MN. Images –.1, right dorsal phallomere;.2, ventral phallomere;.3, left dorsal phallomere;.4, phalloid apophysis.
FIGURE 22 in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 22. Miobantia rustica (Fabricius, 1781), male genitalia, right dorsal and ventral phallomeres from ventral perspective, and left dorsal phallomere from dorsal perspective. A, holotype of M. nebulosa; B, male at QBUM; C, holotype (reduced scale). Images –.1, right dorsal phallomere;.2, ventral phallomere;.3, left dorsal phallomere.
FIGURE 16 in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 16. Miobantia, structures of the foreleg. A–G, forefemur from medial-posterior perspective: A, M. aptera Giglio- Tos, 1917, male MT00051; B, M. ciliata (Stål, 1860), male MT00047; C, M. fuscata (Giglio-Tos, 1915), male MT00030; D, M. immanis n. sp., male holotype; E, M. arctissima n. sp., male holotype; F, M. sulista n. sp., paratype from Porto Alegre; G, M. nordestina n. sp., male holotype. H, forefemur from medial perspective, M. rustica (Fabricius, 1781), male holotype of junior synonym M. nebulosa of Giglio-Tos; I–J, foretibia from lateral perspective: I, M. immanis n. sp., male holotype; J, M. nordestina n. sp., male holotype.
FIGURE 14 in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 14. Miobantia, dorsal perspective of the pronotum. M. aptera Giglio-Tos, 1917: A, male from Mata Pico do Eldorado, T3; B, female holotype. M. ciliata (Stål, 1860): C, male MT00043; D, female collected in 26.XI-02.XII.2006. M. fuscata (Giglio-Tos, 1915): E, male MT00030; F, female from Reserva Natural Vale, collected in 13.I.2011. M. rustica (Fabricius, 1781): G, M. rustica, male holotype of junior synonym M. nebulosa of Giglio-Tos. M. arctissima n. sp.: H, male holotype.
FIGURE 13 in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 13. Miobantia, head from the frontal perspective of the ocelli. M. immanis n. sp.: A, male holotype; B, female allotype; M. sulista n. sp.: C, male holotype; D, female allotype; M. nordestina n. sp.: E, male holotype; F, female allotype.
FIGURE 17. Miobantia, supranal plate from the dorsal perspective. A, M in A revision of Miobantia Giglio-Tos, 1917 (Mantodea: Thespidae, Miobantiinae), with molecular association of dimorphic sexes and immature stages
FIGURE 17. Miobantia, supranal plate from the dorsal perspective. A, M. ciliata (Stål, 1860), male MT00043; B, M. nordestina n. sp., male holotype; C, M. aptera Giglio-Tos, 1917, female from Bicuíba, Reserva Natural Vale; D, M. aptera, female holotype; E, M. fuscata (Giglio-Tos, 1915), female from Reserva Natural Vale, Trilha atrás do viveiro de mudas, point 1; F, M. sulista n. sp., female allotype; G, M. nordestina n. sp., female allotype; H, M. ciliata (Stål, 1860), female from Alfredo Chaves; I, M. immanis n. sp., female allotype.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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