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49 results for “Boiga”
FIGURE 3 in A taxonomic revision of Boiga multomaculata (Boie, 1827) and B. ochracea (Theobald, 1868), with the description of a new subspecies (Squamata, Serpentes, Colubridae)
FIGURE 3. Phylogenetic tree of Boiga species from a maximum-likelihood analysis of three mitochondrial genes (16S, ND4, and CYTB). A scale bar is indicated. The numbers at nodes are bootstrap values (left) and Bayesian posterior probabilities (right), but only bootstrap values higher than 70 are noted. The tree is rooted with the species Telescopus tripolitanus.
FIGURE 6 in A taxonomic revision of Boiga multomaculata (Boie, 1827) and B. ochracea (Theobald, 1868), with the description of a new subspecies (Squamata, Serpentes, Colubridae)
FIGURE 6. Map showing distributional records of Boiga specimens of the three clades recovered in our phylogenetic analyses. Circles = Clade 1 specimens; squares = Clade 2 specimens; triangles = Clade 3 specimens; stars = B. stoliczkae; white symbols = records, not genetically confirmed, obtained from GBIF and literature; black symbols = specimens examined for external morphology, not genetically confirmed; red circles = genetically confirmed records of our Clade 1 specimens; green squares = genetically confirmed records of our Clade 2 specimens; blue triangles = genetically confirmed records of our Clade 3 specimens; red stars = B. stoliczkae, specimens examined for external morphology, not genetically confirmed; blue stars = B. stoliczkae, records, not genetically confirmed, not examined, obtained from GBIF and literature; green star = genetically confirmed record of B. stoliczkae; diamonds = specimens of B. multomaculata that are not assigned to subspecies because no genetic samples had been analyzed. Each symbol can represent one or more adjacent localities.
FIGURE 1 in A taxonomic revision of Boiga multomaculata (Boie, 1827) and B. ochracea (Theobald, 1868), with the description of a new subspecies (Squamata, Serpentes, Colubridae)
FIGURE 1. Map showing collecting localities of Boiga specimens identified as B. multomaculata (brown circles with central black dot) and B. ochracea (orange circles). Each symbol can represent one or more adjacent localities. Source: Specimens examined by authors and data downloaded from GBIF as well as literature records. Insert: Boiga specimens in life. A. Boiga multomaculata phenotype (SMF 104138); B. B. ochracea phenotype (SMF 103827). Photographs by G.K.
Data from: Testing for multiple invasion routes and source populations for the invasive brown treesnake (Boiga irregularis) on Guam: implications for pest management
The brown treesnake (Boiga irregularis) population on the Pacific island of Guam has reached iconic status as one of the most destructive invasive species of modern times, yet no published works have used genetic data to identify a source population. We used DNA sequence data from multiple genetic markers and coalescent-based phylogenetic methods to place the Guam population within the broader phylogeographic context of B. irregularis across its native range and tested whether patterns of genetic variation on the island are consistent with one or multiple introductions from different source populations. We also modeled a series of demographic scenarios that differed in the effective size and duration of a population bottleneck immediately following the invasion on Guam, and measured the fit of these simulations to the observed data using approximate Bayesian computation. Our results exclude the possibility of serial introductions from different source populations, and instead verify a single origin from the Admiralty Archipelago off the north coast of Papua New Guinea. This finding is consistent with the hypothesis that B. irregularis was accidentally transported to Guam during military relocation efforts at the end of World War II. Demographic model comparisons suggest that multiple snakes were transported to Guam from the source locality, but that fewer than 10 individuals could be responsible for establishing the population. Our results also provide evidence that low genetic diversity stemming from the founder event has not been a hindrance to the ecological success of B. irregularis on Guam, and at the same time offers a unique 'genetic opening' to manage snake density using classical biological approaches.
FIGURE 3 in A new species of cat snake (Reptilia: Serpentes: Colubridae: Boiga) from dry forests of eastern Peninsular India
FIGURE 3. Map showing the distribution localities of Boiga flaviviridis sp. nov.
Supplementary material 1 from: Shan S, Wang Y (2022) Complete mitochondrial genomes of Boiga kraepelini and Hebius craspedogaster (Reptilia, Squamata, Colubridae) and their phylogenetic implications. ZooKeys 1124: 191-206. https://doi.org/10.3897/zookeys.1124.87861
Table S1, S2
FIGURE 16. Boiga m in A taxonomic revision of Boiga multomaculata (Boie, 1827) and B. ochracea (Theobald, 1868), with the description of a new subspecies (Squamata, Serpentes, Colubridae)
FIGURE 16. Boiga m. septentrionalis from Nagaland, India, in life (WIIADR 856). Photo by AD.
FIGURE 10. Boiga m in A taxonomic revision of Boiga multomaculata (Boie, 1827) and B. ochracea (Theobald, 1868), with the description of a new subspecies (Squamata, Serpentes, Colubridae)
FIGURE 10. Boiga m. multomaculata from Java in life (NK 2078). Photo by Luhur Septiadi.
Data from: Testing for multiple invasion routes and source populations for the invasive brown treesnake (Boiga irregularis) on Guam: implications for pest management
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