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47 results for “Cryptocephalus”
Figure 1 from: Brunetti M, Magoga G, Iannella M, Biondi M, Montagna M (2019) Phylogeography and species distribution modelling of Cryptocephalus barii (Coleoptera: Chrysomelidae): is this alpine endemic species close to extinction? In: Schmitt M, Chaboo CS, Biondi M (Eds) Research on Chrysomelidae 8. ZooKeys 856: 3-25. https://doi.org/10.3897/zookeys.856.32462
Figure 1 Cryptocephalusbarii Burlini, 1948 distribution. A) Geographic location of the Orobie Alps and Cryptocephalusbarii distribution. Yellow dots indicate localities where the species was observed, red dots indicate localities investigated with extensive sampling campaigns in which the species was absent (the source map was downloaded from http://www.geoportale.regione.lombardia.it/ and elaborated with QGIS 3.4.1). B) Cryptocephalusbarii picture acquired using a Canon 450D camera; the multilayered micrographs were processed with Zerene Stacker (Richland, WA, USA).
Figure 5 from: Brunetti M, Magoga G, Iannella M, Biondi M, Montagna M (2019) Phylogeography and species distribution modelling of Cryptocephalus barii (Coleoptera: Chrysomelidae): is this alpine endemic species close to extinction? In: Schmitt M, Chaboo CS, Biondi M (Eds) Research on Chrysomelidae 8. ZooKeys 856: 3-25. https://doi.org/10.3897/zookeys.856.32462
Figure 5 Changes in habitat suitability for Cryptocephalusbarii. Histogram reporting classes of habitat suitability calculated within the Minimum Convex Polygon built on Cryptocephalusbarii presence sites through Ensemble Modelling process. Areas calculated for current and future climatic conditions (2070, 4.5 and 8.5 scenarios) are reported, respectively, in green, orange and red.
Figure 4 from: Brunetti M, Magoga G, Iannella M, Biondi M, Montagna M (2019) Phylogeography and species distribution modelling of Cryptocephalus barii (Coleoptera: Chrysomelidae): is this alpine endemic species close to extinction? In: Schmitt M, Chaboo CS, Biondi M (Eds) Research on Chrysomelidae 8. ZooKeys 856: 3-25. https://doi.org/10.3897/zookeys.856.32462
Figure 4 Predicted suitability for Cryptocephalusbarii for current and future climatic conditions. Predicted suitability resulting from the Ensemble Modelling process performed over bioclimatic variables for Cryptocephalusbarii, with the Minimum Convex Polygon built on the species' presence sites for A current B 2070 – 4.5 scenario of radiative forcing, and C 2070 – 8.5 scenario of radiative forcing.
Supplementary material 1 from: Brunetti M, Magoga G, Iannella M, Biondi M, Montagna M (2019) Phylogeography and species distribution modelling of Cryptocephalus barii (Coleoptera: Chrysomelidae): is this alpine endemic species close to extinction? In: Schmitt M, Chaboo CS, Biondi M (Eds) Research on Chrysomelidae 8. ZooKeys 856: 3-25. https://doi.org/10.3897/zookeys.856.32462
: Data type: statistical model
Figure 2 in Redescription of a little-known species, Cryptocephalus surdus Rapilly, 1980 (Coleoptera: Chrysomelidae: Cryptocephalinae), with notes on new distribution localities and habitat preference in Türkiye
Figure 2. Map showing the previous and new distribution localities of Cryptocephalus surdus.
Figure 3 in Exploring species-level taxonomy in the Cryptocephalus flavipes species complex (Coleoptera: Chrysomelidae)
Figure 3. Results of the species delimitation analyses: general mixed Yule coalescent (GMYC), Bayesian GMYC (bGMYC) and Poisson tree process (bPTP). A, Bayesian ultrametric BEAST tree based on COI sequences with singlethreshold GMYC model and bGMYC pairwise matrix of conspecificity probabilities applied. Values of Bayesian posterior probabilities supporting the partition obtained by bPTP are reported above the branches. The vertical line identifies the between–within species GMYC threshold. Uppercase letters reported on the tree and on the matrix refer to the entities identified by bGMYC, whereas the matrix corresponds to the pairwise matrix of conspecificity probabilities returned by this method. The colour scale is presented on the right.
Figure 2. A in Exploring species-level taxonomy in the Cryptocephalus flavipes species complex (Coleoptera: Chrysomelidae)
Figure 2. A, Bayesian phylogram of the Cryptocephalus flavipes species complex obtained combining COI, EF-12, and 18S rRNA gene sequences for representative specimens. Bayesian posterior probabilities and maximum-likelihood approximate likelihood ratio test (aLRT) values of>50% are reported above each node on the right and on the left, respectively; the scale bar indicates the distance in substitutions per site. B, ultrametric tree inferred using BEAST on the COI and EF-12 gene data sets. Horizontal bars represent 95% age confidence intervals for each node. The date of separation is reported for the main lineages above each node, whereas support values are reported below each node. Bayesian posterior probabilities and aLRT percentages of>70% are reported on the left and on the right, respectively. *Nodes with support of 1.0 Bayesian posterior probability and 100% aLRT. The scale bar indicates the distance in substitutions per site, and the geological time scale is recorded. Oligo.: Oligocene.
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