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37 results for “Arionidae”
FIGURE 1 in Kootenaia burkei, a new genus and species of slug from northern Idaho, United States (Gastropoda: Pulmonata: Arionidae)
FIGURE 1: Relief map of Idaho showing the localities of Kootenaia burkei new species. 1) Little Bumblebee Creek, Shoshone County (type locality), 2) Trestle Creek, Bonner County, 3) Beauty Creek, Kootenai County, 4) Heyburn State Park, Benewah County, and 5) East side of Harrison, Kootenai County. For detailed locality information see the Appendix. The lower photograph shows paratype CM 66247.
FIGURE 3 in Kootenaia burkei, a new genus and species of slug from northern Idaho, United States (Gastropoda: Pulmonata: Arionidae)
FIGURE 3. Eggs of Kootenaia burkei photographed on 10 September 2003, 62 days after being laid in the laboratory.
Fig. 2 in Fast Recent Expansion Of The Spanish Slug (Gastropoda, Stylommatophora, Arionidae) Across Ukraine
Fig. 2. Distribution of the Spanish slug in Ukraine. Black circles — anatomically confirmed locations; empty circles — by external view only.
Fig. 2 in Comparative Karyotype Analysis Of Slugs Of The Genus Arion (Gastropoda, Pulmonata, Arionidae)
Fig. 2. Chromosomes of Arion spp. in the diakinesis (meiosis) (n): 1 — A. distinctus; 2 — A. fasciatus; 3 — A. fuscus.
Fig. 1 in Comparative Karyotype Analysis Of Slugs Of The Genus Arion (Gastropoda, Pulmonata, Arionidae)
Fig. 1. Chromosomes of Arion spp. in the mitotic metaphase (2n): 1 — A. distinctus; 2 — A. lusitanicus s. l.; 3 — A. fuscus, 4 — A. fasciatus.
Fig. 1 in Distribution Of "Spanish Slug" Arion Lusitanicus Auct. Non Mabille 1868 (Or Arion Vulgaris Moquin-Tandon, 1855) (Gastropoda: Arionidae) In Latvia
Fig. 1. Confirmed localities of Arion lusitanicus auct. non J. Mabille 1868 in Latvia during 2009 - 2016 (map drawn by M. Nitcis). Full name of places are given in Table 1.
Fig. 4 in A comprehensive phylogeographic study of Arion vulgaris Moquin-Tandon, 1855 (Gastropoda: Pulmonata: Arionidae) in Europe
Fig. 4 Haplotype diversity for COI (a) and ZF (b) markers calculated for all localities of A. vulgaris with sample size larger or equal to two individuals against latitude and longitude. The larger bubble size, the higher haplotype diversity was observed at a particular locality
Fig. 3 in A comprehensive phylogeographic study of Arion vulgaris Moquin-Tandon, 1855 (Gastropoda: Pulmonata: Arionidae) in Europe
Fig. 3 Haplotype median joining network of the nuclear DNA haplotypes of A. vulgaris. Haplotypes are represented by circles, the size of which is proportional to the number of populations in which a particular haplotype is present. Populations are listed in Table 6 (Supplementary Materials). Haplotypes are 1 to 24; circles without a number indicate a hypothetical intermediate haplotype linking observed haplotypes. Hatch marks in the network represent single mutations
Fig. 6 A in A comprehensive phylogeographic study of Arion vulgaris Moquin-Tandon, 1855 (Gastropoda: Pulmonata: Arionidae) in Europe
Fig. 6 A COI-based Bayesian phylogenetic tree for Arion species con-" structed from currently available sequences with Arianta arbustorum sequence as an outgroup (see also Table 4, Supplementary Materials). Numbers at nodes indicate Bayesian posterior probability, values less than 0.90 are not shown on the tree. Clades for particular Arion species were collapsed regardless of the value of sequence divergence. The scale bar represents 0.05 substitutions per nucleotide position. Taxonomic names have been adopted from named GenBank sequences; accession numbers are given next to a particular clade
Fig. 2 in The effect of various environmental factors on the distribution of terrestric slugs (Gastropoda: Pulmonata: Arionidae) - An exemplary study
Fig. 2: Scheme illustrating the study area with its four sub-units. The area is characterized by the alternating sequence of small forests and meadows exhibiting a predominance of different plant associations, respectively. The sketch below shows the arrangement of single sample points within each of the four areas.
Fig. 3 in The effect of various environmental factors on the distribution of terrestric slugs (Gastropoda: Pulmonata: Arionidae) - An exemplary study
Fig. 3: Distribution maps for the slug groups investigated in this study. As clearly recognizable from the graphs, at the time of the investigation slug distribution within the forest areas is more highly developed with respect to that on the meadows.
Fig. 1 in The effect of various environmental factors on the distribution of terrestric slugs (Gastropoda: Pulmonata: Arionidae) - An exemplary study
Fig. 1: Drawings illustrating the size and habit of the four snail species which were included into the present investigation: a) Arion ater, b) A. subfuscus agg., c) A. fasciatus agg., d) A. hortensis agg.
Fig. 1. Spanish slug from Kyiv, August 2017 in Fast Recent Expansion Of The Spanish Slug (Gastropoda, Stylommatophora, Arionidae) Across Ukraine
Fig. 1. Spanish slug from Kyiv, August 2017 (photo I. Balashov).
Fig. 2 in Invasion Of Spanish Slug Arion Vulgaris Moquin-Tandon, 1855 (Gastropoda Arionidae) In Latvia Between 2016 And 2020
Fig. 2. Distribution of Arion vulgaris Moquin-Tandon, 1855 in Latvia (map drawn by M. Nitcis).
Fig. 1 in Invasion Of Spanish Slug Arion Vulgaris Moquin-Tandon, 1855 (Gastropoda Arionidae) In Latvia Between 2016 And 2020
Fig. 1. Invasion of Arion vulgaris Moquin-Tandon, 1855 in Latvia during 2009 – 2020.
Fig. 4 in The effect of various environmental factors on the distribution of terrestric slugs (Gastropoda: Pulmonata: Arionidae) - An exemplary study
Fig. 4: Distribution maps of four environmental factors recorded in the study area.
FIGURE 4 in Kootenaia burkei, a new genus and species of slug from northern Idaho, United States (Gastropoda: Pulmonata: Arionidae)
FIGURE 4: A. Maximum parsimony tree for representatives of the genera Hemphillia, Kootenaia, Prophysaon, and Zacoleus based on 15 anatomical characters. Bootstrap values (10,000 replicates) are given at the nodes. The scale bar indicated the number of changes. B. Bayesian phylogram for the same species based on combined fragments of mitochondrial COI DNA and LSU rRNA showing the 50% majorityrule consensus of topologies sampled during the Bayesian search. The scale bar indicates the substitution rate according to the model of sequence evolution applied. The numbers at the branches are the percentages that the clade occurs among all sampled trees; i.e. the posterior probability of that clade.
FIGURE 2 in Kootenaia burkei, a new genus and species of slug from northern Idaho, United States (Gastropoda: Pulmonata: Arionidae)
FIGURE 2. Dissected holotype of Kootenaia burkei from Shoshone County, Idaho, showing the reproductive and digestive systems. Dorsal view of reproductive system on the left and ventral view of digestive system on the right. Total body length in alcohol = 10 mm.
FIGURE 1 in Kootenaia burkei, a new genus and species of slug from northern Idaho, United States (Gastropoda: Pulmonata: Arionidae)
FIGURE 1: Relief map of Idaho showing the localities of Kootenaia burkei new species. 1) Little Bumblebee Creek, Shoshone County (type locality), 2) Trestle Creek, Bonner County, 3) Beauty Creek, Kootenai County, 4) Heyburn State Park, Benewah County, and 5) East side of Harrison, Kootenai County. For detailed locality information see the Appendix. The lower photograph shows paratype CM66247.
FIGURE 3 in Kootenaia burkei, a new genus and species of slug from northern Idaho, United States (Gastropoda: Pulmonata: Arionidae)
FIGURE 3. Eggs of Kootenaia burkei photographed on 10 September 2003, 62 days after being laid in the laboratory.
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