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26 results for “Rhabdophis”

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zenodo32/100

FIGURE 2 in A new species of the genus Rhabdophis Fitzinger, 1843 (Squamata: Colubridae) from Guangdong Province, southern China

FIGURE 2. Dorsal (A) and ventral (B) view of the holotype SYS r000018 of Rhabdophis guangdongensis sp. nov. in preservative. Photo by Ying-Yong Wang.

opennotspecifiedDec 2014View details →
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FIGURE 1. A in A new species of the genus Rhabdophis Fitzinger, 1843 (Squamata: Colubridae) from Guangdong Province, southern China

FIGURE 1. A: Bayesian phylogenetic inference tree analysis based on the c-mos sequence data set. The values on the branches indicate posterior probability support. B: Bayesian inference tree derived from the combined gene fragment (c-mos + cyt b). Bayesian posterior probabilities (≥90% retained) and maximum parsimony (1000 replicates) (≥50 retained) are showed at the nodes, respectively. Numbers in brackets correspond with the ID in Table 1.

opennotspecifiedDec 2014View details →
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FIGURE 4 in A new species of the genus Rhabdophis Fitzinger, 1843 (Squamata: Colubridae) from Guangdong Province, southern China

FIGURE 4. Map showing the localities of Rhabdophis guangdongensis sp. nov. in Guangdong Province, southern China: (1) type locality, Aizhai Village, Renhua County, Shaoguan City. (2) Mount Diefushan, Shenzhen City. (3) Mount Wutong, Shenzhen City. (Map from http://ditu.google.cn/maps?hl=zh-CN&tab=wl, January 10, 2013)

opennotspecifiedDec 2014View details →
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FIGURE 5 in A new species of the genus Rhabdophis Fitzinger, 1843 (Squamata: Colubridae) from Guangdong Province, southern China

FIGURE 5. Habitat of Rhabdophis guangdongensis sp. nov. at the type locality, Aizhai Village, Renhua County, Shaoguan City, Guangdong Province. Photo by Ying-Yong Wang taken on May 26, 2008.

opennotspecifiedDec 2014View details →
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FIGURE 3. The holotype SYS r000018 in A new species of the genus Rhabdophis Fitzinger, 1843 (Squamata: Colubridae) from Guangdong Province, southern China

FIGURE 3. The holotype SYS r000018 of Rhabdophis guangdongensis sp. nov. A: Dorsal view of head and neck in life. B: Lateral view of head and neck in life (photo by Ying-Yong Wang); C: Dorsolateral view (Photo by Shi-Shi Lin, on Mount Diefushan, taken on August 15, 2011).

opennotspecifiedDec 2014View details →
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FIGURE 9 in Hidden in the plain sight: a new species of Rhabdophis (Serpentes: Natricinae) from the Rhabdophis himalayanus complex

FIGURE 9. Habitat at the type locality of Rhabdophis bindi sp. nov. A. dry stream bed during February-April 2010 and B. during May 2010.

opennotspecifiedAug 2021View details →
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FIGURE 4 in Hidden in the plain sight: a new species of Rhabdophis (Serpentes: Natricinae) from the Rhabdophis himalayanus complex

FIGURE 4. Rhabdophis bindi sp. nov. A. left maxilla (WII-AD48), B. hemipenis showing asulcal and C. sulcal region (WII- AD48). Scale bars 5mm.

opennotspecifiedAug 2021View details →
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FIGURE 7. A in Hidden in the plain sight: a new species of Rhabdophis (Serpentes: Natricinae) from the Rhabdophis himalayanus complex

FIGURE 7. A. Rhabdophis bindi sp. nov. male holotype in life (WII-AD632; 500 mm SVL). B. Rhabdophis chrysargos, female in life, from western Java (UTA R-62893; 596 mm SVL). Image not to scale.

opennotspecifiedAug 2021View details →
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FIGURE 6. A in Hidden in the plain sight: a new species of Rhabdophis (Serpentes: Natricinae) from the Rhabdophis himalayanus complex

FIGURE 6. A. Rhabdophis bindi sp. nov. (WII-AD47) from Lakhicherra, Cachar, Assam, B. Rhabdophis himalayanus (WII- AD396) from Sikkim. Inset image of the same specimens showing presence of nuchal gland (some are indicated with black arrowheads) in the latter species which is absent in the former. Images not to scale

opennotspecifiedAug 2021View details →
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FIGURE 5 in Hidden in the plain sight: a new species of Rhabdophis (Serpentes: Natricinae) from the Rhabdophis himalayanus complex

FIGURE 5. Rhabdophis bindi sp. nov. A. WII-AD632 (holotype), B. WII-AD48 (paratype), C. WII-AD47 (paratype), D. WII-AD6240 (Referred), E. WII-AD46 (paratype) F. WII-AD45 (paratype), G. HT R217 (referred specimen), H. ZSI 14574 (referred specimen) I. ZSI 14579(referred specimen). Scale bars 10mm, G–I images not to scale.

opennotspecifiedAug 2021View details →
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FIGURE 2 in Hidden in the plain sight: a new species of Rhabdophis (Serpentes: Natricinae) from the Rhabdophis himalayanus complex

FIGURE 2. Distribution of Rhabdophis bindi sp. nov. and R. himalayanus in India and Bangladesh. Localities are as follows: 1. Sikkim, 2. Rhi-Bhoi, 3. Maruacherra, 4. Lawacherra 5. Mamit, 6. Trishna and 7. Kaptai. Type localities are marked with an arrow.

opennotspecifiedAug 2021View details →
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FIGURE 3 in Hidden in the plain sight: a new species of Rhabdophis (Serpentes: Natricinae) from the Rhabdophis himalayanus complex

FIGURE 3. Rhabdophis bindi sp. nov. holotype (WII-AD632). A. full body dorsal, and B. ventral view, C. head dorsal, D. ventral, and E–F. lateral views of head. Scale bars 10mm.

opennotspecifiedAug 2021View details →
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FIGURE 8 in Hidden in the plain sight: a new species of Rhabdophis (Serpentes: Natricinae) from the Rhabdophis himalayanus complex

FIGURE 8. Rhabdophis himalayanus specimens at the Natural History Museum, London: A. BMNH 1925.9.17.5 (type of Natrix speciosus), B. BMNH 1946.1.13.15 (syntype), C. BMNH 1946.1.23.75 (syntype) and D. BMNH 1946.1.15.27 (syntype of Xenodon macrophthalmus). Scale bars 50mm.

opennotspecifiedAug 2021View details →
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FIGURE 1 in Hidden in the plain sight: a new species of Rhabdophis (Serpentes: Natricinae) from the Rhabdophis himalayanus complex

FIGURE 1. ML phylogeny showing relationships of the newly sampled Rhabdophis (in blue) with sequences of other available congeners. Nuchal gland trait mapped to the tips. ML bootstrap support and BI posterior probability support =/>75 or 0.75 is shown at each internal branch.

opennotspecifiedAug 2021View details →
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FIG. 4 in Effects of Body Size and Condition on Antipredator Behavior Related to Nuchal Glands in Rhabdophis subminiatus

FIG. 4. Relationships of snout–vent length (SVL) and body condition index (BCI) category with the neck butt (NB) frequency of Rhabdophis subminiatus. Each point represents individual data of snakes in poor condition (triangle, BCI <-0.145), average condition (circle, -0.145 <BCI <0.145, and good condition (cross, BCI Ž 0.145). Solid, short-dashed, and long-dashed lines represent regression lines for poor-condition, averagecondition, and good-condition snakes, respectively. Shaded areas represent 95% confidence intervals of the regression coefficients and darker shading shows areas of overlap between the BCI categories. There was a significant correlation of SVL (P <0.001) and BCI category (P <0.01) with NB frequency.

opennotspecifiedNov 2022View details →
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FIG. 1 in Effects of Body Size and Condition on Antipredator Behavior Related to Nuchal Glands in Rhabdophis subminiatus

FIG. 1. Box plots of the frequency of antipredator behaviors exhibited by Rhabdophis subminiatus in response to 20 predatory stimuli. Medians are shown by horizontal lines. Top and bottom of boxes are the 75th and 25th quartiles, respectively. Ends of vertical line are the farthest points not exceeding 1.5 times the distance between the quartiles, and dots are more extreme values. BF: body flatten; NF: neck flatten; JK: jerk; NB: neck butt; FL: flee; IM: immobile; ST: strike; NA: neck arch.

opennotspecifiedNov 2022View details →
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FIG. 2 in Effects of Body Size and Condition on Antipredator Behavior Related to Nuchal Glands in Rhabdophis subminiatus

FIG. 2. Relationships between snout–vent length (SVL), sex, and frequency of neck butt (NB), neck flatten (NF), neck arch (NA), body flatten (BF), jerk (JK), and flee (FL) of Rhabdophis subminiatus. Solid and dashed lines represent regression lines for males and females, respectively. Each point shows individual data for males (circles) and females (crosses). Significant correlations (P <0.05) with SVL were observed in NB, NF, NA, and JK, which have shaded areas representing 95% confidence intervals of regression coefficients. Darker shading shows areas of overlap between the sexes. Only FL showed a significant effect of sex, and regression lines are shown only for significant correlations.

opennotspecifiedNov 2022View details →
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FIG. 3 in Effects of Body Size and Condition on Antipredator Behavior Related to Nuchal Glands in Rhabdophis subminiatus

FIG. 3. Relationship between body condition index (BCI) and the frequency of neck butt (NB), neck flatten (NF), neck arch (NA), body flatten (BF), jerk (JK), and flee (FL) of Rhabdophis subminiatus. A significant correlation (P <0.05) was observed only for the relationship between BCI and NB frequency, for which regression lines are shown. Shaded areas represent 95% confidence intervals of the regression coefficients.

opennotspecifiedNov 2022View details →
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FIGURE 3 in A new species of the genus Rhabdophis Fitzinger, 1843 (Squamata: Colubridae) from the Hoang Lien range, northwest Vietnam

FIGURE 3. Right maxilla bone showing dentition of the holotype (ITBCZ 3616) of Rhabdophis hmongorum sp. nov. The lateral view (A) obscures the 1st tooth, which is hidden from view behind the 2nd tooth, and the 8th tooth, not visible in the photograph, is missing. The ventrolateral view presented shows the 1st tooth (B). Images to scale, with 2 mm scale bar.

opennotspecifiedSep 2023View details →
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FIGURE 1 in A new species of the genus Rhabdophis Fitzinger, 1843 (Squamata: Colubridae) from the Hoang Lien range, northwest Vietnam

FIGURE 1. Maximum likelihood phylogram illustrating the relationships of Rhabdophis and outgroup. Number at nodes indicate the UFB and BPP values support, respectively. Vouchers for sequenced sample are provided in Table 2.

opennotspecifiedSep 2023View details →

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