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712 results for “Beetle diversity”
Figure 4 in Deep soil floatation in Chile reveals diverse and mainly nameless fauna of endogean beetles (Coleoptera)
Figure 4. SEM images of endogean non-Staphylinidae beetles of Chile.
Figure 5 in Deep soil floatation in Chile reveals diverse and mainly nameless fauna of endogean beetles (Coleoptera)
Figure 5. SEM images of endogean rove beetles (Staphylinidae) of Chile.
Figure 3 in Deep soil floatation in Chile reveals diverse and mainly nameless fauna of endogean beetles (Coleoptera)
Figure 3. Endogean rove beetles (Staphylinidae) of Chile.
Figure 2 in Deep soil floatation in Chile reveals diverse and mainly nameless fauna of endogean beetles (Coleoptera)
Figure 2. Endogean non-Staphylinidae beetles of Chile.
Figure 2 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 2. Principal islands of the northern Leeward Islands.
Fig. 2 in Environmental and geographic factors driving dung beetle (Coleoptera: Scarabaeidae: Scarabaeinae) diversity in the dipterocarp forests of Peninsular Malaysia
Fig. 2. All dung beetle capture data for the eight sampling sites rarefied by trap.
Figure 3 in The beetles of Barbados, West Indies (Insecta: Coleoptera): diversity, distribution and faunal structure
Figure 3. Seasonal semi-deciduous forest in Turner Hall Woods, Barbados.
Dung Beetle Diversity Survey Data for Sekar Imej Conservation Area (SICA)
<p>The Sekar Imej Conservation Area (SICA) project was initiated by Wilmar International with aims, (1) Establishing effective management of High Conservation Value (HCV) for long term biodiversity conservation in plantation landscapes; (2) capacity building to support local communities; and (3) empowering local communities to support the protection within SICA landscapes. The SICA is recognised as the largest conservation area (2,469 hectares) within Wilmar’s operations in Malaysia (Forest & Reserves, 2021). A rapid assessment was conducted to assess the diversity of dung beetles within the targeted trails. Fieldwork was conducted from 26th – 29th September 2022.</p> <p>Dung beetle sampling was carried out in Monjuk trail (117°11’07.0’’; 6°20’54.1’’) and Tobobon trail (117°11’42.5’’; 6°21’14.5’’) at Sekar Imej Conservation Area (SICA), Sabah, Malaysian Borneo. The forest consist of secondary forest, dominated area with young regenerating forest and lowland mixed dipterocarp forest. These trails are located nearby to larger Paitan and Lingkabau Forest Reserves, which interspersed between other oil palm plantations.</p> <p>We did pitfall and canopy traps using human dung, trapping for 48 hours. The traps were spaced 200 metres from one another. </p>
Beetle evolution illuminates the geological history of the world's most diverse tropical archipelago
<p><span>The geologically-complex Indo-Australian-Melanesian archipelago (IAMA) hosts extraordinarily high levels of species richness and endemism and has long served as a natural laboratory for studying biogeography and evolution. Nonetheless, its geological history and the provenance and evolution of its biodiversity remain poorly understood. Here, we provide a geological scenario for the IAMA informed by a time-calibrated molecular phylogeny of 1,006 species of <em>Trigonopterus</em> weevils—an exceptionally diverse radiation of regionally-endemic flightless beetles. Moreover, we performed a statistical biogeographic analysis and examined timing and patterns in the accumulation of lineages residing in <em>a priori</em>-defined geographic units comprising the IAMA. We estimate that <em>Trigonopterus</em> originated in Australia during the early Paleogene. Subsequent rapid diversification in the area of the present-day Papuan Peninsula suggests the presence of proto-Papuan islands by the middle Eocene; the New Guinea North Coast Ranges were colonized in the late Eocene, followed by the New Guinea Highlands and the Bird´s Head Peninsula. We inferred the presence of terrestrial habitat in the North Moluccas and Sulawesi in the late Oligocene and the subsequent rapid colonization of Sundaland and the Lesser Sunda Islands. New Caledonia and Samoa were colonized from the Papuan Peninsula, and their faunas also diverged in the late Oligocene. These biota-informed time estimates are compatible with geological data from the region and shed new light on IAMA paleogeography, even where geological evidence has been lost to erosion. Beetle evolution thus appears to have closely tracked the geological evolution of the IAMA, revealing a uniquely well-resolved view of regional biogeography.</span><span><br></span></p>
Forest habitat parameters influence abundance and diversity of cadaver-visiting dung beetles in Central Europe
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Data from: Fungal and beetle diversity in deciduous fine woody debris in spruce-dominated forests in relation to substrate quantity and quality
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Data from: How do attached crown parts and branches contribute to the diversity of saproxylic fungi and beetles in downed and decaying spruce trees?
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Data from: Geosmithia associated with bark beetles and woodborers in the western USA: taxonomic diversity and vector specificity
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Data from: Species distribution modeling reveals the influence of climatic and geographic factors on scarab beetle beta diversity along altitudinal gradients
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Influence of tree hollow characteristics and forest structure on saproxylic beetle diversity in tree hollows in managed forests in a regional comparison
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Biased predation could promote convergence yet maintain diversity within Müllerian mimicry rings of Oreina leaf beetles
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Beetle evolution illuminates the geological history of the world’s most diverse tropical archipelago
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Data for: Whole-of-community invertebrate rewilding: Leaf litter transplants rapidly increase beetle diversity during restoration
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Data from: Magellanic woodpeckers as indicators of wood-dwelling beetle diversity in trees with different levels of decay and under changing environmental conditions
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Functional diversity of ground beetles improved aphid control but did not increase crop yields on European farms
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International Brain Laboratory public data
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OpenNeuro
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