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36 results for “sinistral”
Figure 2 in Testing palaeodrainage hypotheses in south-eastern Brazil: phylogeography of the sinistral livebearer fish of the genus Phalloceros (Cyprinodontiformes: Poeciliidae)
Figure 2. Genital morphology of sinistral Phalloceros (= Phalloceros leptokeras). Ventral view of female urogenital papilla (MNRJ 52301, 28.3 mm SL, Pocinhos drainage) and left lateroventral view of male gonopodium tip skeleton, skin removed (MNRJ 24398, Guandu drainage).
Figure 6. Phylogenetic relationships among the 14 in Testing palaeodrainage hypotheses in south-eastern Brazil: phylogeography of the sinistral livebearer fish of the genus Phalloceros (Cyprinodontiformes: Poeciliidae)
Figure 6. Phylogenetic relationships among the 14 sinistral Phalloceros (= Phalloceros leptokeras) with nucleotide substitutions mapped. Letter codes within circles indicate clade names as listed in the main text. Substitutions are identified according to the concatenated (CS) alignment of genes (COI: 1–656, Cytb: 657–1121, RAG1: 1122–2695), polarized based on Phalloceros sp. 'Macaé' as outgroup. The concatenated sequence alignment has 2695 sites, 29 of which are informative among sinistral Phalloceros. The underlined substitution of Genotype 5 from Japuíba represents a reversal to the ancestral character state of Clade A. This topological relationship was extracted from Figure 5. Palaeodrainage (P) numbers correspond to those proposed by Thomaz & Knowles (2018). According to those authors, the Paraíba do Sul River belonged to palaeodrainage 121 during the LGM, but currently its mouth is related to palaeodrainage 120.
Figure 5 in Testing palaeodrainage hypotheses in south-eastern Brazil: phylogeography of the sinistral livebearer fish of the genus Phalloceros (Cyprinodontiformes: Poeciliidae)
Figure 5. Phylogenetic relationships showing two main clades (A, B) within the sinistral Phalloceros group (= Phalloceros leptokeras) according to Bayesian inference (BI) based on concatenated sequences (CS) from the mitochondrial COI and Cytb regions and the nuclear RAG1 gene. Values at nodes represent posterior probabilities. Samples from Parati-Mirim, Paquequer and Macacu are topotypes of Phalloceros aspilos, P. leptokeras and P. tupinamba, respectively. Vertical black bars show the results of species delimitation analyses (see details in Supporting Information, Files S2–S6). Vertical red bar shows our taxonomic decision. Frequencies in the size of the lateral spot are indicated above the drawings and the number of individuals examined (N) are below (see details in Supporting Information, Table S3).
Figure 2 from: Sutcharit C, Naggs F, Ablett J, Sang PV, Hao L, Panha S (2019) Notes on the sinistral helicoid snail Bertia cambojiensis (Reeve, 1860) from Vietnam (Eupulmonata, Dyakiidae). ZooKeys 885: 1-14. https://doi.org/10.3897/zookeys.885.38980
Figure 2 Genitalia and radula of Bertia cambojiensis, NHMUK 20130833. A overview of genital system B–D internal wall sculpture of B penis C amatorial organ and D vagina E, F SEM image of radula E central and inner latero-marginal teeth and F outermost teeth. Numbers indicate tooth order from lateral to marginal end; central tooth indicated by 'C'.
Figure 5 from: Ding H-L, Wang P, Qian Z-X, Lin J-H, Zhou Z-C, Hwang C-C, Ai H-M (2016) Revision of sinistral land snails of the genus Camaena (Stylommatophora, Camaenidae) from China based on morphological and molecular data, with description of a new species from Guangxi, China. ZooKeys 584: 25-48. https://doi.org/10.3897/zookeys.584.7173
Figure 5 - Shell of Camaena poyuensis sp. n. A Holotype, FJIQBC 18484, Poyue, Bama, Guangxi, China B Paratype, FJIQBC18489, from type locality C Life photograph of paratype, FJIQBC 18485, from type locality. Scale: 10 mm.
Figure 4 from: Ding H-L, Wang P, Qian Z-X, Lin J-H, Zhou Z-C, Hwang C-C, Ai H-M (2016) Revision of sinistral land snails of the genus Camaena (Stylommatophora, Camaenidae) from China based on morphological and molecular data, with description of a new species from Guangxi, China. ZooKeys 584: 25-48. https://doi.org/10.3897/zookeys.584.7173
Figure 4 - Reproductive system of sinistral Chinese sinistral species of Camaena. A Camaena cicatricosa (FJIQBC 18483, Guiping, Guangxi, China) B Camaena obtecta (FJIQBC 18743, Longbang, Jinxi, Guangxi, China) C Camaena inflata (FJIQBC 18797, Qianlin park, Guiyang, Guizhou, China) D Camaena connectens (FJIQBC 18832, Tianbao, Malipo, Yunnan, China) E Camaena poyuensis sp. n. (FJIQBC 18484, Poyue, Bama, Guangxi, China). Abbreviations: V, verge; AG, albumen gland; BC, bursa copulatrix; E, epiphallus; F, flagellum; HD, hermaphroditic duct; P, penis; PR, penis retractor muscle; PBC, pedunculus of bursa copulatrix; VD, vas deferens.
Figure 3 from: Ding H-L, Wang P, Qian Z-X, Lin J-H, Zhou Z-C, Hwang C-C, Ai H-M (2016) Revision of sinistral land snails of the genus Camaena (Stylommatophora, Camaenidae) from China based on morphological and molecular data, with description of a new species from Guangxi, China. ZooKeys 584: 25-48. https://doi.org/10.3897/zookeys.584.7173
Figure 3 - Shells of sinistral Chinese species of Camaena. A Camaena cicatricosa (FJIQBC 18483, Guiping, Guangxi, China) B Camaena obtecta (FJIQBC 18743, Longbang, Jingxi, Guangxi, China) C Camaena inflata (FJIQBC 18782, Qianlin park, Guiyang, Guizhou, China) D Camaena connectens (FJIQBC 18826, Tianbao, Malipo, Yunnan, China) E Camaena seraphinica (syntype, IZCAS HMT-0001a; Dingan, Tianlin, Guangxi, China). Red circle indicates a hump beside the umbilicus. Scale = 10 mm.
Figure 2 from: Ding H-L, Wang P, Qian Z-X, Lin J-H, Zhou Z-C, Hwang C-C, Ai H-M (2016) Revision of sinistral land snails of the genus Camaena (Stylommatophora, Camaenidae) from China based on morphological and molecular data, with description of a new species from Guangxi, China. ZooKeys 584: 25-48. https://doi.org/10.3897/zookeys.584.7173
Figure 2 - Maximum Likelihood tree based on analysis of the concatenated dataset of COI, 16S and ITS2 sequences. Numbers beside nodes indicate bootstrapping support (%) for main clades. See Table 2 for sampling locations.
Figure 1 from: Ding H-L, Wang P, Qian Z-X, Lin J-H, Zhou Z-C, Hwang C-C, Ai H-M (2016) Revision of sinistral land snails of the genus Camaena (Stylommatophora, Camaenidae) from China based on morphological and molecular data, with description of a new species from Guangxi, China. ZooKeys 584: 25-48. https://doi.org/10.3897/zookeys.584.7173
Figure 1 - Map of locations of Camaena species. Camaena cicatricosa: A Nanning, Guangxi, China B Guiping, Guangxi, China C Yangchun, Guangdong, China D Gaoming, Canton, Guangdong, China E Yingde, Guangdong, China F Shantou, Guangdong, China. Camaena obtecta: G Buhaitun, Jinxi, Guangxi, China H Longbang, Jingxi, Guangxi, China I Cao Bang, Vietnam (type locality). Camaena inflata: J Qianlin park, Guiyang, Guizhou, China K Ziyun, Guiyang, Guizhou, China. Camaena connectens: L Tianbao, Malipo, Yunnan, China M Ha Giang, Vietnam (type locality). Camaena poyuensis sp. n.: N Poyue, Bama, Hechi, Guangxi, China (type locality). Camaena seraphinica: O Dingan, Tianlin, Guangxi, China (type locality).
Fig. 3 in The Australian Sinistral Flounder Arnoglossus aspilos praeteritus (Actinopterygii: Pleuronectiformes: Bothidae) Reassigned as a Valid Species of Engyprosopon
Fig. 3. Fresh image of Engyprosopon praeteritus. WAM P. 32685-001, 64.7 mm SL.
Figure 3 from: Sutcharit C, Naggs F, Ablett J, Sang PV, Hao L, Panha S (2019) Notes on the sinistral helicoid snail Bertia cambojiensis (Reeve, 1860) from Vietnam (Eupulmonata, Dyakiidae). ZooKeys 885: 1-14. https://doi.org/10.3897/zookeys.885.38980
Figure 3 ABertia pergrandis, syntype NHMUK 1893.2.26.1 BBertia setzeri, holotype ANSP 466244.
Figure 1 from: Sutcharit C, Naggs F, Ablett J, Sang PV, Hao L, Panha S (2019) Notes on the sinistral helicoid snail Bertia cambojiensis (Reeve, 1860) from Vietnam (Eupulmonata, Dyakiidae). ZooKeys 885: 1-14. https://doi.org/10.3897/zookeys.885.38980
Figure 1 Shells of Bertia cambojiensisA lectotype NHMUK 20130220 and B specimen NHMUK 20130833.
A Study to Evaluate Splenectomy on Debridement for Acute Necrotizing Pancreatitis With Pancreatic Sinistral Portal Hypertension
ClinicalTrials.gov study NCT07080697. IPD Sharing: NO. Countries: 1. Publications: 0.
Figure 7 in Testing palaeodrainage hypotheses in south-eastern Brazil: phylogeography of the sinistral livebearer fish of the genus Phalloceros (Cyprinodontiformes: Poeciliidae)
Figure 7. Haplotype (Hp) network of sinistral Phalloceros group (= Phalloceros leptokeras). Mutations are identified according to the concatenated alignment of genes (COI: 1–656, Cytb: 657–1121, RAG1: 1122–2695), non-exclusive nucleotide substitutions are underlined. Samples from Parati-Mirim, Paquequer and Macacu are topotypes of Phalloceros aspilos, P. leptokeras and P. tupinamba, respectively.
Figure 1 in Testing palaeodrainage hypotheses in south-eastern Brazil: phylogeography of the sinistral livebearer fish of the genus Phalloceros (Cyprinodontiformes: Poeciliidae)
Figure 1. Morphological variation within females and males of the sinistral Phalloceros group (= Phalloceros leptokeras). A, Paquequer drainage (MNRJ 43596, ♀ 30.4 mm SL, ♂ 22.5 mm SL). B, Macacu drainage (MNRJ 43600, ♀ 28.1 mm SL, ♂ 17.4 mm SL). C, Saco drainage (MNRJ 51337, ♀ 27.8 mm SL, ♂ 18.1 mm SL). D, Japuíba drainage (MNRJ 4226, ♀ 32.0 mm SL, ♂ 21.2 mm SL). E, Parati-Mirim drainage (MNRJ 43505, ♀ 31.3 mm SL, ♂ 20.9 mm SL).
Figure 4 in Testing palaeodrainage hypotheses in south-eastern Brazil: phylogeography of the sinistral livebearer fish of the genus Phalloceros (Cyprinodontiformes: Poeciliidae)
Figure 4. Morphological (Lucinda, 2008) and molecular (Thomaz et al., 2019) phylogenetic hypotheses proposed for Phalloceros. Shaded rectangles indicate the lineage of the sinistral Phalloceros (= Phalloceros leptokeras).
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