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60 results for “Tetrix”
Figure 9 from: Long Y, Teng C, Huang C, Zhang R, Deng W, Lin L (2023) Twenty-three new synonyms of the Eastern common groundhopper, Tetrix japonica (Bolívar, 1887) (Orthoptera, Tetrigidae). ZooKeys 1187: 135-167. https://doi.org/10.3897/zookeys.1187.110067
Figure 9 Tetrix japonica (Bolívar, 1887). Holotype of Tetrix grossovalva Zheng, 1994, syn. nov. A lateral view B dorsal view C labels.
Figure 11 from: Long Y, Teng C, Huang C, Zhang R, Deng W, Lin L (2023) Twenty-three new synonyms of the Eastern common groundhopper, Tetrix japonica (Bolívar, 1887) (Orthoptera, Tetrigidae). ZooKeys 1187: 135-167. https://doi.org/10.3897/zookeys.1187.110067
Figure 11 Tetrix japonica (Bolívar, 1887) A–C holotype of Tetrix latipalpa Cao & Zheng, 2011, syn. nov. A dorsal view B lateral view C labels D–F holotype of Tetrix liuwanshanensis Deng, Zheng & Wei, 2007, syn. nov. D lateral view E dorsal view F labels.
Figure 7 from: Long Y, Teng C, Huang C, Zhang R, Deng W, Lin L (2023) Twenty-three new synonyms of the Eastern common groundhopper, Tetrix japonica (Bolívar, 1887) (Orthoptera, Tetrigidae). ZooKeys 1187: 135-167. https://doi.org/10.3897/zookeys.1187.110067
Figure 7 Tetrix japonica (Bolívar, 1887) A–C holotype of Tetrix albomarginis Zheng & Nie, 2005, syn. nov. A dorsal view B lateral view C labels D–F holotype of Tetrix cenwanglaoshana Zheng, Jiang & Liu, 2005, syn. nov. D lateral view E dorsal view F labels.
Figure 10 from: Long Y, Teng C, Huang C, Zhang R, Deng W, Lin L (2023) Twenty-three new synonyms of the Eastern common groundhopper, Tetrix japonica (Bolívar, 1887) (Orthoptera, Tetrigidae). ZooKeys 1187: 135-167. https://doi.org/10.3897/zookeys.1187.110067
Figure 10 Tetrix japonica (Bolívar, 1887). Tetrix jiuwanshanensis Zheng, 2005, syn. nov. A holotype, lateral view B holotype, dorsal view C, F labels D allotype, lateral view E allotype, dorsal view.
Figure 1 from: Long Y, Teng C, Huang C, Zhang R, Deng W, Lin L (2023) Twenty-three new synonyms of the Eastern common groundhopper, Tetrix japonica (Bolívar, 1887) (Orthoptera, Tetrigidae). ZooKeys 1187: 135-167. https://doi.org/10.3897/zookeys.1187.110067
Figure 1 Dimorphism of Tetrix japonica (Bolívar, 1887) A, B brachypronotal and brachypterous individuals C pauropronotal individual.
Figure 6 from: Long Y, Teng C, Huang C, Zhang R, Deng W, Lin L (2023) Twenty-three new synonyms of the Eastern common groundhopper, Tetrix japonica (Bolívar, 1887) (Orthoptera, Tetrigidae). ZooKeys 1187: 135-167. https://doi.org/10.3897/zookeys.1187.110067
Figure 6 Tetrix japonica (Bolívar, 1887) A–C holotype of Tetrix albistriatus Yao & Zheng, 2006, syn. nov. A lateral view B dorsal view C labels D–F holotype of Tetrix albomaculatus Zheng & Jiang, 2006, syn. nov. D lateral view E dorsal view F labels.
Figure 12 from: Long Y, Teng C, Huang C, Zhang R, Deng W, Lin L (2023) Twenty-three new synonyms of the Eastern common groundhopper, Tetrix japonica (Bolívar, 1887) (Orthoptera, Tetrigidae). ZooKeys 1187: 135-167. https://doi.org/10.3897/zookeys.1187.110067
Figure 12 Tetrix japonica (Bolívar, 1887) A–C holotype of Tetrix qinlingensis Zheng, Huo & Zhang, 2000, syn. nov. A lateral view B dorsal view C labels D–F holotype of Tetrix rectimargina Zheng & Jiang, 2004, syn. nov. D lateral view E dorsal view F labels.
Figure 16 from: Long Y, Teng C, Huang C, Zhang R, Deng W, Lin L (2023) Twenty-three new synonyms of the Eastern common groundhopper, Tetrix japonica (Bolívar, 1887) (Orthoptera, Tetrigidae). ZooKeys 1187: 135-167. https://doi.org/10.3897/zookeys.1187.110067
Figure 16 Distribution map of Tetrix japonica with all type localities of all the synonyms. 1 C. circinihumerus; 2 C. emeiensis; 3 E. rongshuiensis; 4 E. zayuensis; 5 M. nigritubercle; 6 M. yaoshanensis; 7 T. albistriatus; 8 T. albomaculatus; 9 T. albomarginis; 10 T. cenwanglaoshana; 11 T. cliva; 12 T. duolunensis; 13 T. grossovalva; 14 T. jiuwanshanensis; 15 T. latipalpa; 16 T. liuwanshanensis; 17 T. qinlingensis; 18 T. rectimargina; 19 T. ruyuanensis; 20 T. xianensis; 21 T. xinchengensis; 22 T. yunlongensis; 23 T. zhoushanensis.
Supplementary material 1 from: Zhao L, Lin L-L, Zheng Z-M (2016) DNA barcoding reveals polymorphism in the pygmy grasshopper Tetrix bolivari (Orthoptera, Tetrigidae). ZooKeys 582: 111-120. https://doi.org/10.3897/zookeys.582.6301
Pairwise genetic distance (K2P) based on COI sequence using MEGA 5 :
Figure 3 from: Zhao L, Lin L-L, Zheng Z-M (2016) DNA barcoding reveals polymorphism in the pygmy grasshopper Tetrix bolivari (Orthoptera, Tetrigidae). ZooKeys 582: 111-120. https://doi.org/10.3897/zookeys.582.6301
Figure 3 - Morphs of pygmy grasshoppers (Tetrix bolivari) classified by type of colour and markings on the pronotum. A1-7 belongs to type A; B1-4 belongs to type B.
Figure 2 from: Zhao L, Lin L-L, Zheng Z-M (2016) DNA barcoding reveals polymorphism in the pygmy grasshopper Tetrix bolivari (Orthoptera, Tetrigidae). ZooKeys 582: 111-120. https://doi.org/10.3897/zookeys.582.6301
Figure 2 - A Haplotype network from 63 sequences, including 57 Tetrix bolivari individuals, 4 Tetrix species, 1 Alulatettix yunnanensis and 1 outgroup (Teleogryllus emma) B Haplotype network of 57 Tetrix bolivari individuals combined with the morph types. Circle size is proportional to haplotype frequency. Lines drawn between haplotypes represent mutation events identified by the numbers corresponding to the positions at which the mutations were observed. Red points represent hypothetical haplotypes (median vector). Colours in B represent morph types. Yellow areas represent type A and black areas represent type B.
Figure 1 from: Zhao L, Lin L-L, Zheng Z-M (2016) DNA barcoding reveals polymorphism in the pygmy grasshopper Tetrix bolivari (Orthoptera, Tetrigidae). ZooKeys 582: 111-120. https://doi.org/10.3897/zookeys.582.6301
Figure 1 - NJ clustering analysis of 62 sequences of pygmy grasshoppers using MEGA5 and K2P model. Teleogryllus emma is used as an outgroup. The clade 1-57 represents samples from this study.
Data from: Simultaneous age-dependent and age-independent sexual selection in the lekking black grouse (Lyrurus tetrix)
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Data from: Age, condition and dominance-related sexual ornament size before and during the breeding season in the black grouse Lyrurus tetrix
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Data from: Characterization and analysis of a de novo transcriptome from the pygmy grasshopper Tetrix japonica
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Evaluation of Tetrix Cream in the Healing of Injured Skin in Subjects With Contact Dermatitis
ClinicalTrials.gov study NCT00643214. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Evaluation of Tetrix Cream as a Protective Barrier Against Injurious Materials
ClinicalTrials.gov study NCT00643630. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Effect of Tetrix on Alleviation of Burning,Itching Associated With Lesions of Contact Dermatitis
ClinicalTrials.gov study NCT00646867. IPD Sharing: Not stated. Countries: 1. Publications: 0.
FIGURE 4 in Taxonomical clarification of Tetrix gibberosa (Wang & Zheng), a high-backed pygmy grasshopper species from eastern PR China (Orthoptera: Tetrigidae)
FIGURE 4. Distribution of Tetrix gibberosa (Wang & Zheng). a) map of PR China on which the distribution (red) of the species is marked; b) known distribution records (red dots) of the species.
Study to Determine if Tetrix Cream is Removed From the Hands by Gentle Washing With Soap and Water
ClinicalTrials.gov study NCT00644436. IPD Sharing: Not stated. Countries: 1. Publications: 0.
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