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101 results for “Saproxylic beetles”
Figure 2 in Revisiting the saproxylic beetle 'Propomacrus cypriacus Alexis & Makris, 2002' (Coleoptera: Euchiridae) using molecular, morphological and ecological data
Figure 2. Paramera of male at left (lateral and dorsal views) and parts of left valves of female Propomacrus at right. The dashed line separates different scales and sexes. (a–d): 'P. cypriacus'; (e–h) P. bimucronatus from the Lebanon; (i–l): P. bimucronatus from Turkey; a, g and k: basal parts of valves; d, h and l: distal parts of valves.
Figure 1 in Revisiting the saproxylic beetle 'Propomacrus cypriacus Alexis & Makris, 2002' (Coleoptera: Euchiridae) using molecular, morphological and ecological data
Figure 1. Map of Cyprus with new and previous records of P. cypriacus. Localities where unsuccessful searches were performed are also shown.
Figure 3 in Revisiting the saproxylic beetle 'Propomacrus cypriacus Alexis & Makris, 2002' (Coleoptera: Euchiridae) using molecular, morphological and ecological data
Figure 3. Protibiae of P. bimucronatus (left) from Turkey (upper), the Lebanon (middle), and Greece (lower), and 'P. cypriacus' (upper right: holotype; middle and lower: paratypes; Vretsia, Cyprus, leg. Makris). All photos are at the same scale.
Figs. 3–4 in The Saproxylic Beetle Corticaria bella Redtenbacher, 1847 (Coleoptera: Cucujoidea: Latridiidae) in Europe: Distribution and Habitats
Figs. 3–4. Distribution of Corticaria bella. 3) In Poland, historical (dashed lines) and recent localities (dots); 4) In Europe (grey color indicates countries with documented presence of the species).
Fig. 4 in Assessing the Old-Growth Dependency of Two Saproxylic Beetle Species in the Southern Appalachian Mountains
Fig. 4. Boxplots of (A) elevatioc, (B) tree diameter, acd (C) basal area amocg sampled historic distkrbacce classes ic Great Smoky Mokctaics Natiocal Park.
Fig. 1 in Assessing the Old-Growth Dependency of Two Saproxylic Beetle Species in the Southern Appalachian Mountains
Fig. 1. Map of the soktherc Appalachiac Mokctaics ic the soktheasterc Ucited States, showicg collecticg areas withic Natiocal Forests acd Great Smoky Mokctaics Natiocal Park (GSMNP). Icset shows the regioc withic the Ucited States.
Fig. 2 in Assessing the Old-Growth Dependency of Two Saproxylic Beetle Species in the Southern Appalachian Mountains
Fig. 2. (A) Phellopsis obcordata, dorsal habitks. (B) Fomitopsis ochracea, cewly recorded host. (C) Records of P. obcordata acd Fomitopsis spp. withic Great Smoky Mokctaics Natiocal Park with historic lacd kses. Oktliced areas oc the map icdicate areas searched dkricg this stkdy ic 2019 acd 2021. All records oktside acd some records icside of the areas searched are from iNatkralist acd previoks literatkre.
Fig. 5 in Assessing the Old-Growth Dependency of Two Saproxylic Beetle Species in the Southern Appalachian Mountains
Fig. 5. Probability of occkrrecce withic Great Smoky Mokctaics Natiocal Park of (A) Phellopsis obcordata based oc distacce from the cearest kcdistkrbed forest (0 icdicates icside kcdistkrbed areas), acd (B) Megalodacne heros based oc elevatioc.
Data from: The indicator side of tree microhabitats: a multi-taxon approach based on bats, birds and saproxylic beetles
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Blast output from: Lost in dead wood? Environmental DNA sequencing from dead wood shows little signs of saproxylic beetles
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Data from: Conservation value of low-productive forests measured as the amount and diversity of dead wood and saproxylic beetles
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Diversity and conservation of saproxylic beetles in 42 European tree species: an experimental approach using early successional stages of branches
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Data from: Minimal effects on genetic structuring of a fungus-dwelling saproxylic beetle after recolonization of a restored forest
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Fig. 6 in Saproxylic beetle (Coleoptera) communities and forest management practices in coniferous stands in southwest Nova Scotia, Canada
Fig. 6. The number of species of beetles in the 22 most speciose families collected in the present study and in Bishop (1998).
Fig. 4 in Saproxylic beetle (Coleoptera) communities and forest management practices in coniferous stands in southwest Nova Scotia, Canada
Fig. 4. Percentage of coarse woody debris (CWD) volume by tree species for 11 stands in southwestern Nova Scotia (Thompson 2004). Tree species: wP White Pine; wB White Birch; SP Spruce spp.; rM Red Maple; OX unidentified hardwood; OS unidentified softwood; eH Eastern Hemlock; bF Balsam Fir. Site descriptions: 1 & 2 – 40-80 yr, CT; 3 & 4 – 40-80 yr, none; 5 – 80-120 yr, US; 6 & 7 – 80-120, none; 8 – 120+ yr, S; 9 – 120+ yr, S/SH; 10 & 11 – 120+ yr, none. CT = Commercial thinning; US = Uniform selection harvest; SH = Shelterwood harvest; S = Selection harvest.
Fig. 9. Scatter plot demonstrating a in Saproxylic beetle (Coleoptera) communities and forest management practices in coniferous stands in southwest Nova Scotia, Canada
Fig. 9. Scatter plot demonstrating a non-significant positive correlation between beetle species richness and CWD volume. Included are the regression equation and the R2 value.
Supplementary material 1 from: Landvik M, Miraldo A, Niemelä P, Valainis U, Cibuļskis R, Roslin T (2017) Evidence for geographic substructuring of mtDNA variation in the East European Hermit beetle (Osmoderma barnabita). In: Campanaro A, Hardersen S, Sabbatini Peverieri G, Carpaneto GM (Eds) Monitoring of saproxylic beetles and other insects protected in the European Union. Nature Conservation 19: 171-189. https://doi.org/10.3897/natureconservation.19.12877
Details of the Osmoderma barnabita specimens included in the data set : Data type: specimens data
Supplementary material 1 from: Campanaro A, Redolfi De Zan L, Hardersen S, Antonini G, Chiari S, Cini A, Mancini E, Mosconi F, Rossi de Gasperis S, Solano E, Bologna MA, Sabbatini Peverieri G (2017) Guidelines for the monitoring of Rosalia alpina. In: Carpaneto GM, Audisio P, Bologna MA, Roversi PF, Mason F (Eds) Guidelines for the Monitoring of the Saproxylic Beetles protected in Europe. Nature Conservation 20: 165-203. https://doi.org/10.3897/natureconservation.20.12728
Monitoring of Rosalia alpina – field sheet : Data type: Field sheet
Supplementary material 2 from: Romiti F, Redolfi De Zan L, Rossi de Gasperis S, Tini M, Scaccini D, Anaclerio M, Carpaneto G (2017) Latitudinal cline in weapon allometry and phenology of the European stag beetle. In: Campanaro A, Hardersen S, Sabbatini Peverieri G, Carpaneto GM (Eds) Monitoring of saproxylic beetles and other insects protected in the European Union. Nature Conservation 19: 57-80. https://doi.org/10.3897/natureconservation.19.12681
Monthly total precipitations and temperatures : Data type: еnvironment data
Supplementary material 2 from: Hardersen S, Bardiani M, Chiari S, Maura M, Maurizi E, Roversi PF, Mason F, Bologna MA (2017) Guidelines for the monitoring of Morimus asper funereus and Morimus asper asper. In: Carpaneto GM, Audisio P, Bologna MA, Roversi PF, Mason F (Eds) Guidelines for the Monitoring of the Saproxylic Beetles protected in Europe. Nature Conservation 20: 205-236. https://doi.org/10.3897/natureconservation.20.12676
Field-sheet Morimus asper :
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