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7 results for “Indotyphlops”
Figure 2 in Indotyphlops braminus (Daudin, 1803): distribution and oldest record of collection dates in Oceania, with report of a newly established population in French Polynesia (Tahiti Island, Society Archipelago)
Figure 2. Anterior ventral area of Indotyphlops braminus MNHN-RA 2015.0057 showing the whitish gular coloration. Picture: I. Ineich.
Figure 1 in Indotyphlops braminus (Daudin, 1803): distribution and oldest record of collection dates in Oceania, with report of a newly established population in French Polynesia (Tahiti Island, Society Archipelago)
Figure 1. Two introduced specimens of Indotyphlops braminus from Tahiti Island in French Polynesia. MNHN-RA 2015.0058 above and MNHN-RA 2015.0057 below. Scale bar: 1cm. Picture: I. Ineich.
Table 1 in Indotyphlops braminus (Daudin, 1803): distribution and oldest record of collection dates in Oceania, with report of a newly established population in French Polynesia (Tahiti Island, Society Archipelago)
<p><b>Table 1</b>. Earliest known arrival dates of the snake <i>Indotyphlops braminus</i> on the Oceanian islands and archipelagos according to publications or collection vouchers.</p><table><thead><tr><th><b>Country</b></th><th><b>Earliest date</b></th><th><b>Reference</b></th></tr></thead><tbody><tr><th>Mariana Islands</th><td>1819</td><td>A.M.C. Duméril & Bibron 1844</td></tr><tr><th>Mariana Islands, Guam</th><td>1819</td><td>A.M.C. Duméril & Bibron 1844</td></tr><tr><th>New Guinea</th><td>1912</td><td>Barbour 1912</td></tr><tr><th>Hawai'i</th><td>1930</td><td>Slevin 1930</td></tr><tr><th>Carolines (Pohnpei)</th><td>1936</td><td>Buden 2000</td></tr><tr><th>Mariana Islands, Tinian</th><td>1945</td><td>Cagle 1946</td></tr><tr><th>Mariana Islands, Saipan</th><td>1945</td><td>Cagle 1946</td></tr><tr><th>Marshall Islands</th><td>1954</td><td>Knight 1984</td></tr><tr><th>Palau (Belau)</th><td>1955</td><td>Crombie & Pregill 1999</td></tr><tr><th>Solomon Isl.</th><td>1961</td><td>McDowell 1974</td></tr><tr><th>Vanuatu</th><td>1971</td><td>Medway & Marshall 1975</td></tr><tr><th>Bonin Island</th><td>1971</td><td>Shigei 1971</td></tr><tr><th>New Caledonia</th><td>1974</td><td>Ineich & Bauer 1992</td></tr><tr><th>Fiji</th><td>1983</td><td>Clunie 1983</td></tr><tr><th>Mariana Islands, Rota</th><td>1987</td><td>Wiles et al. 1990</td></tr><tr><th>Loyalty Islands</th><td>1991</td><td>Shea & Wallach 2000</td></tr><tr><th>American Samoa</th><td>1992</td><td>CAS 195919</td></tr><tr><th>Midway Atoll</th><td>1998</td><td>Wallach 2008</td></tr><tr><th>Nauru</th><td>2007</td><td>Buden 2008</td></tr><tr><th>Kiribati (Gilbert Isl.)</th><td>2007</td><td>Craven & Shea 2010</td></tr><tr><th>Western Samoa</th><td>2009</td><td>Bonin & Shea 2009</td></tr><tr><th>Tahiti Island, French Polynesia</th><td>2014</td><td>This paper</td></tr></tbody></table>
Fig. 4 in A widespread commensal loses its identity: suggested taxonomic revision for Indotyphlops braminus (Scolecophidia: Typhlopidae) based on molecular data
Fig. 4 The distributions of the three putative species, plotted on an annual precipitation layer (BIOCLIM 12) to indicate the wet zone
Fig. 3 in A widespread commensal loses its identity: suggested taxonomic revision for Indotyphlops braminus (Scolecophidia: Typhlopidae) based on molecular data
Fig. 3 Lateral view of the head of specimens. a CES17213 (wet zone I. braminus), b CES151013 (dry zone I. braminus), c CES16711 (I. pammeces). R= rostral, PN = pre-nasal, NA = nasal, PO = pre-ocular, SL 1–4 = Supralabial scales 1–4
Fig. 9 in A widespread commensal loses its identity: suggested taxonomic revision for Indotyphlops braminus (Scolecophidia: Typhlopidae) based on molecular data
Fig. 9 Coalescent species tree built using seven nuclear markers (AMEL, BDNF, CMOS, CAND1, NT3, RAG1, and ZEB2) in *BEAST. The nodes with posterior probability≥ 0.8 are indicated with a solid black circle
Fig. 6 in A widespread commensal loses its identity: suggested taxonomic revision for Indotyphlops braminus (Scolecophidia: Typhlopidae) based on molecular data
Fig. 6 Bayesian assignment of the 25 individuals to three populations based on the, using STRUCTURE. The individual ids are indicated below each bar, and the y-axis is the posterior probability. The three putative species are indicated below the individual ids
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