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61 results for “Red wood ants”
Fig. 32 in A taxonomic revision of the Palaearctic members of the Formica rufa group (Hymenoptera: Formicidae) - the famous mound-building red wood ants
Fig. 32: Nest-sample means of the first and second principal component of workers of Formica paralugubris (black dots), Formica lugubris morph A1 (squares), F. lugubris morph A3 (triangles), and Formica helvetica sp.n. (rhombs). Eleven phenotypic characters were considered.
Fig. 3 in Changes In The Structure Of Nest Complexes Of The Red Wood Ants Formica Rufa And F. Polyctena (Hymenoptera, Formicidae) In Urban Forests
Fig. 3. Dynamics of changes in total volume (3, A) and number of anthills (3, B) in nest complexes by year of observation. 2017 is not included in the graphs due to the low number of nest complexes observed in that year.
Figure 4 in Effects of genetic relatedness, spatial distance, and context on intraspecific aggression in the red wood ant Formica pratensis (Hymenoptera: Formicidae)
Figure 4. Neighbor-joining tree of genetic distances of the COI gene for F. pratensis sampled from nine colonies. Numbers on the nodes show the bootstrap values (>50%) and the numbers and the abbreviations at the end of the branches denote the localities and the nest IDs, respectively.
Figure 5 in Effect of mound size on intranest thermoregulation in the red wood ants Formicarufa and F. polyctena (Hymenoptera, Formicidae)
Figure 5. Diagram of the range of illumination of nests of different shapes for F. rufa and F. polyctena in different types of forests.
Figure 3 in Effect of mound size on intranest thermoregulation in the red wood ants Formicarufa and F. polyctena (Hymenoptera, Formicidae)
Figure 3. Dependence of the radius of the nest of F. rufa and F. polyctena on the illumination of the space under the foliage. Points – primary data; straight lines are regression lines. The linear regression equations are not given, because for all data groups, the coefficient of determination R2<0.01.
Figure 1 in Effect of mound size on intranest thermoregulation in the red wood ants Formicarufa and F. polyctena (Hymenoptera, Formicidae)
Figure 1. The size parameters used in the calculation of the model. D–diameter of mound, H – height of mound, d – diameter of the inner cone, h – height of the inner cone.
Figure 2 in Highways for red wood ants (Hymenoptera: Formicidae): a new method to increase the size of anthills
Figure 2. Highways built on the forage trails of RWA. A: Highways constructed from the nest mound. B: Movement of RWA workers along the highways.
Figure 4 from: Antonova V, Marinov MP (2021) Red wood ants in Bulgaria: distribution and density related to habitat characteristics. Journal of Hymenoptera Research 85: 135-159. https://doi.org/10.3897/jhr.85.61431
Figure 4 Distribution of RWA by studied variables in percentage by species (F. pratensis: N = 35, F. rufa: N = 91, F. lugubris: N = 100) A elevation B slope C ecological groups of plants D stone cover E grass cover F canopy cover G dominant tree H forest age (transects with unknown values are excluded). For underlined species the impact is statistically significant.
Figure 1 from: Antonova V, Marinov MP (2021) Red wood ants in Bulgaria: distribution and density related to habitat characteristics. Journal of Hymenoptera Research 85: 135-159. https://doi.org/10.3897/jhr.85.61431
Figure 1 The eleven sampling monitoring sites (mountains): 1 Western Stara Planina, 2 Central Stara Planina, 3 Eastern Stara Planina, 4 Vitosha, 5 Osogovo, 6 Belasitsa, 7 Rila, 8 Pirin, 9 Western Rhodopes, 10 Eastern Rhodopes, 11 Strandza.
Figure 2 from: Antonova V, Marinov MP (2021) Red wood ants in Bulgaria: distribution and density related to habitat characteristics. Journal of Hymenoptera Research 85: 135-159. https://doi.org/10.3897/jhr.85.61431
Figure 2 Potential habitats of RWA in Bulgaria. Localities (transects) recorded in the course of the present study are designated (red dots), previous literature data (squares) AFormica pratensisBFormica rufaCFormica lugubris.
Supplementary material 2 from: Antonova V, Marinov MP (2021) Red wood ants in Bulgaria: distribution and density related to habitat characteristics. Journal of Hymenoptera Research 85: 135-159. https://doi.org/10.3897/jhr.85.61431
Table S1
Supplementary material 1 from: Antonova V, Marinov MP (2021) Red wood ants in Bulgaria: distribution and density related to habitat characteristics. Journal of Hymenoptera Research 85: 135-159. https://doi.org/10.3897/jhr.85.61431
Supplementary Field Form
Figure 5 from: Antonova V, Marinov MP (2021) Red wood ants in Bulgaria: distribution and density related to habitat characteristics. Journal of Hymenoptera Research 85: 135-159. https://doi.org/10.3897/jhr.85.61431
Figure 5 A histogram of F. lugubris nest density and exposure. The frequency distribution of the nest number recorded at any particular direction is represented by different colours. For better visualisation, zero values are excluded.
Fig. 1 in A taxonomic revision of the Palaearctic members of the Formica rufa group (Hymenoptera: Formicidae) - the famous mound-building red wood ants
Fig. 1: Formica rufa, gyne; paramedian surface of the dorsum of first gaster tergite.
Fig. 7 in Red wood Ants (Formica rufa-group) prefer mature pine forests in Variscan granite environments (Hymenoptera: Formicidae)
Fig. 7 – Density plots of RWA nests in a, MG, b, FB study area and c, tectonic stress directions in the study areas (yellow; © World Stress Map 2016; Heidbach et al. 2016).
Figure 7 in Effect of mound size on intranest thermoregulation in the red wood ants Formicarufa and F. polyctena (Hymenoptera, Formicidae)
Figure 7. The dependence of nest temperature of F. rufa and F. polyctena on ambient temperature.
Figure 3 from: Antonova V, Marinov MP (2021) Red wood ants in Bulgaria: distribution and density related to habitat characteristics. Journal of Hymenoptera Research 85: 135-159. https://doi.org/10.3897/jhr.85.61431
Figure 3 One of the four active Formica lugubris nests fenced 50 years ago.
Fig. 30 in A taxonomic revision of the Palaearctic members of the Formica rufa group (Hymenoptera: Formicidae) - the famous mound-building red wood ants
Fig. 30: Principal component analysis of 10 nest samples of Formica kupyanskayae (white rhombs) and of 76 nest samples of Formica pratensis (black dots). Ten phenotypic characters were considered.
Fig. 29 in A taxonomic revision of the Palaearctic members of the Formica rufa group (Hymenoptera: Formicidae) - the famous mound-building red wood ants
Fig. 29: Principal component analysis of polymorphism in 295 gynes of Formica pratensis. The P-morph with reduced setae (white dots) is clearly separated from the strongly haired N-morph (black rhombs). Eleven phenotypic characters were considered.
Fig. 24 in A taxonomic revision of the Palaearctic members of the Formica rufa group (Hymenoptera: Formicidae) - the famous mound-building red wood ants
Fig. 24: Position of the type samples of Formica major NY- LANDER, 1849 (MA) and Formica constricta KARAVAJEV, 1929 (CO) in a principal component analysis considering 58 nest samples of Formica polyctena (black squares) and 27 nest samples of Formica aquilonia × polyctena or backcrosses (white dots). The F. polyctena sample deeply placed within the hybrid cluster is aberrant and cannot be a hybrid for zoogeographical reasons. Seven phenotypic characters were considered.
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