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331 results for “plantation”
Figure 5 in Impact of rainforest conversion into monoculture plantation systems on pseudoscorpion density, diversity and trophic niches
Figure 5. Stable isotope values of pseudoscorpion species in different land-use systems; means with standard deviation. Dashed horizontal lines represent estimated trophic level boundaries; trophic level 1 (plant material) not shown. Decomposers feeding on detritus (trophic level 2) were assumed to be enriched in 15N by 1.7 ‰ compared to leaf litter, each following trophic level was assumed to span 3.4 ‰ (Post 2002; Potapov et al. 2019a). For abbreviations see Table 1.
Figure 3 in Impact of rainforest conversion into monoculture plantation systems on pseudoscorpion density, diversity and trophic niches
Figure 3. Bootstrap species accumulation curve based on the number of adult individuals in the studied land-use systems.
Figure 4 in Impact of rainforest conversion into monoculture plantation systems on pseudoscorpion density, diversity and trophic niches
Figure 4. Venn diagram of the species composition in the three land-use systems studied (rainforest, rubber, oil palm) in the Bukit Duabelas (left) and Harapan landscape (right). Landscape-specific species are underlined in red. The riparian-specific species in Harapan is underlined in cyan. For abbreviations see Table 1.
Figure 2 in Impact of rainforest conversion into monoculture plantation systems on pseudoscorpion density, diversity and trophic niches
Figure 2. Density of pseudoscorpions in litter and soil of the three land-use systems studied (rainforest, rubber, oil palm) in the Bukit Duabelas and Harapan landscape. Each data point represents one sampling plot (three pooled subplot samples). Only non-riparian sites are shown.
Figure 1 in Impact of rainforest conversion into monoculture plantation systems on pseudoscorpion density, diversity and trophic niches
Figure 1. Four species of pseudoscorpions found at the study sites. From left to right: Atemnidae sp.1, Lagynochthonius sp.1, Atemnidae sp.2, Hya minuta.
Figure 2 in Social wasps (Hymenoptera: Vespidae) associated with Eucalyptus sp. plantations from an Altitude Field in Southern Minas Gerais State, Brazil
Figure 2. Aerial view of the sampled region, exemplifying the replacement of native vegetation by the monoculture of Eucalyptus spp. / Vista aérea de la región muestreada, ejemplificando el reemplazo de la vegetación nativa por el monocultivo de Eucalyptus spp.
Figure 1 in Social wasps (Hymenoptera: Vespidae) associated with Eucalyptus sp. plantations from an Altitude Field in Southern Minas Gerais State, Brazil
Figure 1. Limits of the sampled area in Morro do Ferro, municipality of Poços de Caldas, Minas Gerais, Brazil. / LÍmites del área de muestreo en Morro do Ferro, municipio de Poços de Caldas, Minas Gerais, Brasil.
Figure 3 in Longhorn beetles as new pests for exotic plantations in Vietnam
Figure 3. Desisa subfasciata damage in Eucalyptus hybrid (E. urophylla × E. grandis) in Bac Giang province: A, B, C. female adult; D. damaged tree with a hole on the top (white arrow).
Figure 2 in Longhorn beetles as new pests for exotic plantations in Vietnam
Figure 2. Anagelasta apicalis damage in Eucalyptus hybrid (E. urophylla × E. grandis) in Bac Giang province: A, B, C. female adult; D. damaged tree with holes near the base.
Figure 1 in Longhorn beetles as new pests for exotic plantations in Vietnam
Figure 1. Coptops annulipes damage in Acacia crassicarpa in Quang Tri province: A, B, C. female adult; D. damaged tree with holes on the stem (white arrows).
Figure 4 in Longhorn beetles as new pests for exotic plantations in Vietnam
Figure 4. Cephalallus unicolor damage in Pinus caribaea in Quang Tri province: A, B, C. female adult; D. damaged tree with holes on the stem
Fig. 3 in The stem borer Zeuzera multistrigata Moore (Lepidoptera, Cossidae): a serious pest undermining Eucalyptus plantations in Northern Vietnam
Fig. 3 Symptoms of Zeuzera multistrigata in Eucalyptus hybrid: a. damaged tree; b. damage to the wood; c. broken tree after sereous damaged by Z. multistrigata.
Figure 3 in Neurozerra conferta (Lepidoptera: Cossidae) damaging Melaleuca plantations in Vietnam and its biological control
Figure 3. Symptoms of Neurozerra conferta in Melaleuca leucadendra: a plantation with damaged trees; b damaged tree; c damage to the wood.
Figure 2 in Neurozerra conferta (Lepidoptera: Cossidae) damaging Melaleuca plantations in Vietnam and its biological control
Figure 2. Morphological characteristics of Neurozerra conferta: a, b adults; c eggs; d larva; e pupae.
Figure 2 in The stem borer Zeuzera multistrigata Moore (Lepidoptera, Cossidae): a serious pest undermining Eucalyptus plantations in Northern Vietnam
Figure 2. Morphological characteristics of Zeuzera multistrigata: a, b. female adult; a. dorsal view b. ventral view; c. eggs; d. larva; e. Pupa
Fig. 2 in Environmental determinants affecting the occurrence of defoliator caterpillars on Eucalyptus (Myrtaceae) plantations in the Brazilian Amazonian region
Fig. 2. Average annual growth of Eucalyptus urophylla (Myrtaceae) trees (m3 of wood per ha per yr) as a function of the total number of Lepidoptera individuals collected per light trap (Almeirim Municipality, Pará State, and Laranjal do Jari Municipality, Amapá State, Brazil).
Fig. 3 in Environmental determinants affecting the occurrence of defoliator caterpillars on Eucalyptus (Myrtaceae) plantations in the Brazilian Amazonian region
Fig. 3. Total number of individuals of the 2 Lepidoptera primary pests, Misogada bleura (Lepidoptera: Notodontidae) and Sarsina violascens (Lepidoptera: Lymantriidae), collected with light traps in Eucalyptus urophylla (Myrtaceae) plantations as a function of the distance from the area of native vegetation (Almeirim Municipality, Pará State, and Laranjal do Jari Municipality, Amapá State, Brazil).
Fig. 1 in Environmental determinants affecting the occurrence of defoliator caterpillars on Eucalyptus (Myrtaceae) plantations in the Brazilian Amazonian region
Fig. 1. Number of Oxydia vesulia (Lepidoptera: Geometridae) and Sarsina violascens (Lepidoptera: Lymantriidae) adults collected with light traps in Eucalyptus urophylla (Myrtaceae) plantations as a function of the number of rotations of this plant in the same area. (Almeirim Municipality, Pará State, and Laranjal do Jari Municipality, Amapá State, Brazil).
Fig. 1 in Native enemies of Strategus aloeus (Coleoptera: Scarabaeidae) in oil palm plantations in Colombia
Fig. 1. Natural enemies of Strategus aloeus. Metarhizium anisopliae infecting S. aloeus in: A. larvae, B. pupae, and C. adult of Phileurus didymus, D. searching for prey and E. preying on 3rd stage larvae of S. aloeus.
Fig. 5 in Dispersal of the zoophytophagous predator Brontocoris tabidus and Podisus nigrispinus (Heteroptera: Pentatomidae) in an eucalyptus plantation
Fig. 5. Distribution of the predators Brontocoris tabidus and Podisus nigrispinus (Heteroptera: Pentatomidae) males and females in a clonal eucalyptus plantation (Eucalyptus grandis × Eucalyptus urophylla) 7 d afer release.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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