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712 results for “Beetle diversity”
Figure 8 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 8 - Spercheus cerisyi Guérin-Méneville, 1842 2.4 mm, iSimangaliso Wetland Park, Eastern Shores (site 14), February 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 38 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 38 - Limnebius probus Perkins, 2015 0.9 mm, iSimangaliso Wetland Park, False Bay (site 27), January 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 17 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 17 - Regimbartia obsoleta (Régimbart, 1906) 3.8 mm, iSimangaliso Wetland Park, False Bay (site 27), January 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 40 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 40 - Ochthebius andronicus Orchymont, 1948 2.0 mm, iSimangaliso Wetland Park, Eastern Shores (site 21), February 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 5 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 5 - Hydrochus sp. 1 2.5 mm, iSimangaliso Wetland Park, Catalina Bay (site 32), February 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 7 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 7 - Hydrochus sp. 3 2.4 mm, iSimangaliso Wetland Park, Western Shores (site 18), February 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 41 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 41 - Pseudobagous cf. longulus (Gyllenhal, 1836) 5.0 mm, iSimangaliso Wetland Park, Eastern Shores (site 13), July 2014 MS Bird leg.
Figure 39 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 39 - Aulachochthebius cf. continentalis (Orchymont, 1929) 1.2 mm, iSimangaliso Wetland Park, Eastern Shores (site 21), February 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 16 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 16 - Regimbartia nilotica (Sharp, 1903) 5.4 mm, iSimangaliso Wetland Park, False Bay (site 27), January 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 15 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 15 - Berosus viticollis Boheman, 1851 2.8 mm, iSimangaliso Wetland Park, False Bay (site 29), February 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 14 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 14 - Berosus cuspidatus Erichson, 1843 5.2 mm, iSimangaliso Wetland Park, False Bay (site 29), February 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 13 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 13 - Allocotocerus sp. 4.3 mm, iSimangaliso Wetland Park, False Bay (site 27), February 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 1 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 1 - The Lake St Lucia system in northern KwaZulu-Natal. The locations of sites sampled between November 2013 and February 2015 are depicted. Site numbers 1–32 correspond to those in Table 1. Figure reproduced with permission from Perissinotto et al. (2016).
Figure 12 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 12 - Amphiops uhligi Hebauer, 1995 3.5 mm, iSimangaliso Wetland Park, Eastern Shores (site 14), February 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 10 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 10 - Amphiops globus Erichson, 1843 5.1 mm, iSimangaliso Wetland Park, False Bay (site 27), January 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 11 from: Bird MS, Bilton DT, Perissinotto R (2017) Diversity and distribution of polyphagan water beetles (Coleoptera) in the Lake St Lucia system, South Africa. ZooKeys 656: 51-84. https://doi.org/10.3897/zookeys.656.11622
Figure 11 - Amphiops senegalensis Laporte, 1840 5.0 mm, iSimangaliso Wetland Park, Eastern Shores (site 14), February 2015 DT Bilton, MS Bird & R Perissinotto leg.
Figure 3 in Underestimated diversity and range size of diving beetles in tank bromeliads-Coleoptera of 'hygrofloric' lifestyle (Dytiscidae)
Figure 3. Distributional map of bromeliadicolous Copelatus species.
Data from: Debarking harvesters simultaneously combat the European spruce bark beetle Ips typographus and conserve non-target beetle diversity
<p>In the face of climate change, the European Spruce Bark Beetle (<em>Ips typographus</em>) breeding predominantly in Norway spruce (<em>Picea abies</em>) led to exceptional amounts of damaged timber in European forests. Up to now, if pest control is applied, damaged or weakened P. abies trees are either extracted by salvage logging or, when quantities are low, made unsuitable for breeding by manual debarking techniques. Both pest control interventions are costly, are often limited by the short timeframe of effectiveness and come with negative impacts on the non-target biodiversity. As alternatives for timely removal, a debarking head for harvesters for large scale disturbances and a bark gouging device for motor-manual treatment have been developed in recent years to make breeding material unsuitable for bark beetles and reduce existing larvae. Based on data from an experimental design with infested Norway spruce logs, we show that the harvester debarking head and the motor-manual bark gouging regulate I. typographus populations efficiently, whereas a conventional harvester did not reduce the emerging bark beetles. Species assemblages of non-target beetles living in the infested Norway spruce logs were altered from the natural species assemblages in control logs by processing logs with the debarking head or the bark gouging device but not by the conventional harvester. None of the bark treatments reduced non-target beetle species richness in this experiment. We endorse the debarking head and bark gouging as alternatives to salvage logging and manual debarking. This uncouples pest control from in-time dependencies on the availability of transport capacities. Further, the debarking head and bark gouging open up the opportunity to retain dead wood biomass in the forest, supporting ecological benefits and conservation goals. Particularly for protected areas these two new management option better balance requirements of pest control and biodiversity conservation.</p>
FIG. 5. Morphotypes 1 and 2. A, B. Morphotype 1, VMNH 95900. C, D. Morphotype 2 in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina
FIG. 5. Morphotypes 1 and 2. A, B. Morphotype 1, VMNH 95900. C, D. Morphotype 2, YPM IP 036448. Scale bars: 0.5 mm.
Supplementary material 1 from: Zhang M, Ruan Y, Wan X, Tong Y, Yang X, Bai M (2019) Geometric morphometric analysis of the pronotum and elytron in stag beetles: insight into its diversity and evolution. ZooKeys 833: 21-40. https://doi.org/10.3897/zookeys.833.26164
: Data type: morphometric data
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OpenNeuro
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