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712 results for “Beetle diversity”
Figure D1 from: Riley Peterson KN, Browne RA, Erwin TL (2021) Carabid beetle (Coleoptera, Carabidae) richness, diversity, and community structure in the understory of temporarily flooded and non-flooded Amazonian forests of Ecuador. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 831-876. https://doi.org/10.3897/zookeys.1044.62340
Figure D1 Numbers of individuals for Carabidae tribes with significant differences (P < 0.05) between FP and TF forests.
Figure 3 from: Riley Peterson KN, Browne RA, Erwin TL (2021) Carabid beetle (Coleoptera, Carabidae) richness, diversity, and community structure in the understory of temporarily flooded and non-flooded Amazonian forests of Ecuador. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 831-876. https://doi.org/10.3897/zookeys.1044.62340
Figure 3 Inverse Simpson index (1/D) for FP forest and TF forest carabid beetle samples. FP forest had significantly higher 1/D values than TF forest (P = 0.003).
Figure 1 from: Riley Peterson KN, Browne RA, Erwin TL (2021) Carabid beetle (Coleoptera, Carabidae) richness, diversity, and community structure in the understory of temporarily flooded and non-flooded Amazonian forests of Ecuador. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 831-876. https://doi.org/10.3897/zookeys.1044.62340
Figure 1 Maps of the field sites A country boundaries of South America with the Amazon Basin indicated by the heavier outline B Ecuador with the locations of TBS as a red circle and the boundaries of Yasuní National Park shaded C a DEM of the study area. The 24 sampling sites are indicated, with blue squares representing FP forest sites and green circles for TF forest. Latitude and longitude (in DD) shown along x and y axes. Maps generated through R packages: 'raster' (Hijmans 2015), 'sp' (Pebesma and Bivand 2005; Bivand et al. 2013), 'GISTools' (Brunsdon and Chen 2014), and 'maps' (Becker et al. 2015).
Figure C3 from: Riley Peterson KN, Browne RA, Erwin TL (2021) Carabid beetle (Coleoptera, Carabidae) richness, diversity, and community structure in the understory of temporarily flooded and non-flooded Amazonian forests of Ecuador. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 831-876. https://doi.org/10.3897/zookeys.1044.62340
Figure C3 Morphospecies relative abundance by the number of sampling sites at which they were present. Point markers represent the 143 morphospecies coded according the three rarity categories: 'dominant' (circle), 'common' (triangles) and 'rare' (diamonds). Morphospecies classified as 'dominant' occurred at a higher number of sampling sites than 'common' morphospecies. 'Common' morphospecies occurred at a higher number of sampling sites than 'rare' morphospecies (P < 0.001).
Figure 6 from: Riley Peterson KN, Browne RA, Erwin TL (2021) Carabid beetle (Coleoptera, Carabidae) richness, diversity, and community structure in the understory of temporarily flooded and non-flooded Amazonian forests of Ecuador. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 831-876. https://doi.org/10.3897/zookeys.1044.62340
Figure 6 Simpson's evenness index (E1/D) for species assemblages were significantly more even from FP than TF forests (P = 0.008).
Figure 2 from: Riley Peterson KN, Browne RA, Erwin TL (2021) Carabid beetle (Coleoptera, Carabidae) richness, diversity, and community structure in the understory of temporarily flooded and non-flooded Amazonian forests of Ecuador. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 831-876. https://doi.org/10.3897/zookeys.1044.62340
Figure 2 Carabid beetle rarefaction curves. Interpolation (solid lines) indicated by filled point markers represents the sampling extent of the current study. Extrapolation curves based on the Chao1 nonparametric diversity estimator are shown (dashed lines). Shaded areas depict unconditional 95% confidence intervals A the overall dataset with both forest types combined and richness extrapolated to n = 2,510 (twice the number of individuals collected) B rarefaction curves for FP forests (blue square) and TF forests (green circle) with sample size extrapolated to n = 1,128 (twice the number of individuals collected in FP forests). FP forests (96 ± 8.0) were significantly more species rich than TF forests (72 ± 8.1) at the rarefied sample size (n = 564). The extrapolated rarefaction curves suggest the difference in cumulative morphospecies richness between FP and TF will decrease as sample size increases.
Figure C1 from: Riley Peterson KN, Browne RA, Erwin TL (2021) Carabid beetle (Coleoptera, Carabidae) richness, diversity, and community structure in the understory of temporarily flooded and non-flooded Amazonian forests of Ecuador. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 831-876. https://doi.org/10.3897/zookeys.1044.62340
Figure C1 Number of individuals for the morphospecies cicindelid Pentacomia species b (Pentb) for FP and TF forests (P = 0.02).
Figure 8 from: Riley Peterson KN, Browne RA, Erwin TL (2021) Carabid beetle (Coleoptera, Carabidae) richness, diversity, and community structure in the understory of temporarily flooded and non-flooded Amazonian forests of Ecuador. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 831-876. https://doi.org/10.3897/zookeys.1044.62340
Figure 8 Non-metric multidimensional scaling (NMDS) ordination using Bray-Curtis dissimilarity for carabid morphospecies assemblages from FP and TF forests (stress = 13.7, k = 2). Each data point represents one of 24 sampling sites, with blue squares representing FP forest sites and green circles representing TF forest sites. Morphospecies assemblages were significantly different between FP and TF (P < 0.001).
Supplementary material 1 from: Riley Peterson KN, Browne RA, Erwin TL (2021) Carabid beetle (Coleoptera, Carabidae) richness, diversity, and community structure in the understory of temporarily flooded and non-flooded Amazonian forests of Ecuador. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 831-876. https://doi.org/10.3897/zookeys.1044.62340
Geolocation data for sampling sites at Tiputini Biodiversity Station
Figure A1 from: Riley Peterson KN, Browne RA, Erwin TL (2021) Carabid beetle (Coleoptera, Carabidae) richness, diversity, and community structure in the understory of temporarily flooded and non-flooded Amazonian forests of Ecuador. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 831-876. https://doi.org/10.3897/zookeys.1044.62340
Figure A1 Water height for the Tiputini River at Tiputini Biodiversity Station, Ecuador. (A) Monthly values represent overall mean river height and the mean maxima and minima based on data from 2009–2014 (B) three years before and after the sampling period for this study. Monthly river height values during the sampling periods, 2011 (B) and 2012 (C) for mean river height in addition to water height maxima and minima.
Figure 5 from: Riley Peterson KN, Browne RA, Erwin TL (2021) Carabid beetle (Coleoptera, Carabidae) richness, diversity, and community structure in the understory of temporarily flooded and non-flooded Amazonian forests of Ecuador. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 831-876. https://doi.org/10.3897/zookeys.1044.62340
Figure 5 Number of Cicindelini (tiger beetles) collected from FP and TF forests. Significantly more tiger beetle individuals were collected in TF forest (P = 0.011).
Figure 3 in The diversity and distributions of the beetles (Insecta: Coleoptera) of the northern Leeward Islands, Lesser Antilles (Anguilla, Antigua, Barbuda, Nevis, Saba, St. Barthélemy, St. Eustatius, St. Kitts, and St. Martin-St. Maarten
Figure 3. The major paleo- islands of the northeastern Caribbean at times of maximum low sea levels during the last glacial, about 26,000 to 20,000 years ago. Some of the present islands of the northern Lesser Antilles thus had considerably larger areas and were joined with other islands on their marine bank as continuous land, and these larger islands were closer to each other. The low glacial sea level bathymetry line is drawn at a generous - 200 m below the present sea level. The evidence for sea level depression in the last glacial is for a decrease of as much as -150 m (Clark et al. 2009). The larger island areas are the exposed submarine banks which represent the true biogeographic islands which were isolated from each other. There were additional exposed banks which do not have emergent land at present sealevels.
Figures 42-46 from: Konstantinov A, Konstantinova A (2011) New genus and species of flea beetles (Coleoptera, Chrysomelidae, Galerucinae, Alticini) from Puerto Rico, with comments on flea beetle diversity in the West Indies and a key to the West Indian Monoplatini genera. ZooKeys 155: 61-87. https://doi.org/10.3897/zookeys.155.2124
Figures 42-46 - Kiskeya species:Kiskeya baorucae:42 spermatheca 43 vaginal palpi 44 tignum 45 Kiskeya baorucae median lobe of aedeagus, ventral, lateral and dorsal views 46 Kiskeya neibae median lobe of aedeagus, ventral, lateral and dorsal views.
Figures 12-14 from: Konstantinov A, Konstantinova A (2011) New genus and species of flea beetles (Coleoptera, Chrysomelidae, Galerucinae, Alticini) from Puerto Rico, with comments on flea beetle diversity in the West Indies and a key to the West Indian Monoplatini genera. ZooKeys 155: 61-87. https://doi.org/10.3897/zookeys.155.2124
Figures 12-14 - Borinken elyunque: 12 median lobe of aedeagus, ventral, lateral and dorsal views 13 right elytron, lateral view 14 left elytron, ventral view.
Figures 6-11 from: Konstantinov A, Konstantinova A (2011) New genus and species of flea beetles (Coleoptera, Chrysomelidae, Galerucinae, Alticini) from Puerto Rico, with comments on flea beetle diversity in the West Indies and a key to the West Indian Monoplatini genera. ZooKeys 155: 61-87. https://doi.org/10.3897/zookeys.155.2124
Figures 6-11 - Borinken elyunque: 6 head, anteroventral view 7 antenna 8 last maxillary palpomere 9 thoracic sternites with mid- and hind legs, ventral view 10 thoracic sternites with mid- and hind legs, lateral view 11 protibia and protarsus.
Figures 51-55 from: Konstantinov A, Konstantinova A (2011) New genus and species of flea beetles (Coleoptera, Chrysomelidae, Galerucinae, Alticini) from Puerto Rico, with comments on flea beetle diversity in the West Indies and a key to the West Indian Monoplatini genera. ZooKeys 155: 61-87. https://doi.org/10.3897/zookeys.155.2124
Figures 51-55 - Ulrica iviei: 51 habitus, dorsal view 52 habitus, lateral view 53 head, frontalview 54 abdominal sternites, female 55 median lobe of aedeagus, ventral, lateral and dorsal views.
Figures 1-5 from: Konstantinov A, Konstantinova A (2011) New genus and species of flea beetles (Coleoptera, Chrysomelidae, Galerucinae, Alticini) from Puerto Rico, with comments on flea beetle diversity in the West Indies and a key to the West Indian Monoplatini genera. ZooKeys 155: 61-87. https://doi.org/10.3897/zookeys.155.2124
Figures 1-5 - Borinken elyunque: 1 habitus, dorsal view 2 habitus, frontalview 3 habitus, lateral view 4 head and pronotum, frontal view 5 head and pronotum, lateral view.
Figures 22-27 from: Konstantinov A, Konstantinova A (2011) New genus and species of flea beetles (Coleoptera, Chrysomelidae, Galerucinae, Alticini) from Puerto Rico, with comments on flea beetle diversity in the West Indies and a key to the West Indian Monoplatini genera. ZooKeys 155: 61-87. https://doi.org/10.3897/zookeys.155.2124
Figures 22-27 - Distigmoptera chamorrae: 22 median lobe of aedeagus, ventral, lateral and dorsal views 23 spermatheca 24 vaginal palpi 25 tignum 26 abdominal sternites, female 27 last abdominal tergite.
Figures 35-41 from: Konstantinov A, Konstantinova A (2011) New genus and species of flea beetles (Coleoptera, Chrysomelidae, Galerucinae, Alticini) from Puerto Rico, with comments on flea beetle diversity in the West Indies and a key to the West Indian Monoplatini genera. ZooKeys 155: 61-87. https://doi.org/10.3897/zookeys.155.2124
Figures 35-41 - Kiskeya elyunque: 35 prothorax, frontal view 36 mesosternum, ventral view 37 hind leg 38 median lobe of aedeagus, ventral, dorsal and lateral views 39 spermatheca 40 vaginal palpi 41 tignum.
Figures 59-60 from: Konstantinov A, Konstantinova A (2011) New genus and species of flea beetles (Coleoptera, Chrysomelidae, Galerucinae, Alticini) from Puerto Rico, with comments on flea beetle diversity in the West Indies and a key to the West Indian Monoplatini genera. ZooKeys 155: 61-87. https://doi.org/10.3897/zookeys.155.2124
Figures 59-60 - El Yunque, Puerto Rico: 59 moss on tree trunks 60 forest along El Toro trail where moss occurs.
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