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54 results for “tree damage”

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zenodo32/100

FIGURES 20–23 in A new species of Heilipus Germar (Coleoptera: Curculionidae: Molytinae) associated with commercial species of Annonaceae in Brazil, and comments on other species of the genus causing damage to avocado trees in Brazil

FIGURES 20–23. Heilipus gibbus sp. nov., female paratype from Campinas, SP. (20) left coxite, dorsal view, (21) reproductive tract, ventral view, (22) spermatheca, (23) sternite VIII. (dl = duct lobe; gl = gland lobe).

opennotspecifiedDec 2015View details →
zenodo32/100

FIGURES 47–51 in A new species of Heilipus Germar (Coleoptera: Curculionidae: Molytinae) associated with commercial species of Annonaceae in Brazil, and comments on other species of the genus causing damage to avocado trees in Brazil

FIGURES 47–51. Heilipus catagraphus, male from Campinas, SP. (47) aedeagus lateral view, (48) aedeagus dorsal view, (49) tegmen dorsal view, (50) tegmen lateral view, (51) sternite IX, ventral view.

opennotspecifiedDec 2015View details →
zenodo32/100

FIGURES 68–72 in A new species of Heilipus Germar (Coleoptera: Curculionidae: Molytinae) associated with commercial species of Annonaceae in Brazil, and comments on other species of the genus causing damage to avocado trees in Brazil

FIGURES 68–72. Heilipus rufipes, male from São Benedito, CE. (68) aedeagus, lateral view, (69) aedeagus, dorsal view, (70) tegmen, dorsal view, (71) tegmen, lateral view, (72) Sternite IX, ventral view.

opennotspecifiedDec 2015View details →
zenodo32/100

FIGURES 62–67 in A new species of Heilipus Germar (Coleoptera: Curculionidae: Molytinae) associated with commercial species of Annonaceae in Brazil, and comments on other species of the genus causing damage to avocado trees in Brazil

FIGURES 62–67. Heilipus rufipes, female from São Benedito, CE. (62) habitus, dorsal view, (63) habitus, lateral view, (64) head, frontal view, (65) head, lateral view, (66) detail of tooth of profemora, (67) ventrites.

opennotspecifiedDec 2015View details →
zenodo32/100

Data from: Novel associations among insect herbivores and trees: drivers of occurrence and damage on pines and eucalypts

<p><span>List of novel associations beteween insects and pine and eucalypt trees recorded in these study (each row represents a single novel association). We detail characteristics of the insect species involved in each novel association, indicating their order, family, subfamily species, native biogeographic region (Afr: Afrotropic, AP: Austro-Pacific, IM: Indo-Malaya, Nea: Nearctic, Neo: Neotropic, Pal: Palearctic), non-native biogeographic region where it has established, feeding guild (W&amp;PF: wood and phloem feeder, FF: foliage feeder, F&amp;SF: fruit and seed feeders , SF: sap feeder, ShF: shoot feeder), specificity in host use (VP: very polyphagous, P: polyphagous, O: oligophagous, M: monophagous), impact (N: negligible, L-M: low-medium, H: high, LD: lack of data), and the tree condition (L: living, DD: dying or dead, D: exclusively dead). Information not available is indicated as N/A). We also detail the biogeographic region where the novel association was reported, the novel association type (NIET: native insect on exotic trees, EINT: exotic insect on native trees, EIET: exotic insect on exotic trees), the pine and eucalypt novel host involved in the association, and the phylogenetic relatedness between ancient and novel hostts both for pines and eucalypts (SG: same genus, SF: different genera of the same family, DF: different family). Colors were assigned for the<span>&nbsp; </span>insect species involved in: two new association (orange), three new association (yellow), four new association (pink), five new association (green).</span></p>

opencc-by-4.0Oct 2024View details →
dryad32/100

Data from: Ants, fire and bark traits affect how African savanna trees recover following damage

Open the record for dataset details and reuse information.

publicMay 2019View details →
dryad32/100

Data from: Quantifying the damage caused by fruit bats to backyard lychee trees in Mauritius and evaluating the benefits of protective netting

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publicSep 2019View details →
dryad32/100

Data from: Elephant damage, not fire or rainfall, explains mortality of overstorey trees in Serengeti

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publicNov 2016View details →
dryad32/100

Associational resistance to both insect and pathogen damage in mixed forests is modulated by tree neighbour identity and drought

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publicApr 2020View details →
dryad28/100

Data from: A native plant competitor mediates the impact of above- and belowground damage on an invasive tree

Plant competition may mediate the impacts of herbivory on invasive plant species through effects on plant growth and defense. This may predictably depend on whether herbivory occurs above- or belowground and on relative plant competitive ability. We simulated the potential impact of above- or belowground damage by biocontrol agents on the growth of a woody invader (Chinese tallow tree, Triadica sebifera) through artificial herbivory, with or without competition with a native grass, little bluestem (Schizachyrium scoparium). We measured two defense responses of Triadica through quantifying constitutive and induced extrafloral nectar production and tolerance of above- and belowground damage (root and shoot biomass regrowth). We examined genetic variation in plant growth and defense across native (China) and invasive (US) Triadica populations. Without competition, aboveground damage had a greater impact than belowground damage on Triadica performance, whereas with competition, above- and belowground damage impacted Triadica similarly. Whole plant tolerance to damage belowground was negatively associated with tolerance to grass competitors indicating tradeoffs in the ability to tolerate herbivory versus compete. Competition reduced investment in defensive extrafloral nectar (EFN) production. Aboveground damage inhibited rather than induced EFN production while belowground plant damage did not impact aboveground nectar production. We found some support for the evolution of increased competitive ability hypothesis for invasive plants as US plants were larger than native China plants and were more plastic in their response to biotic stressors than China plants (they altered their root to shoot ratios dependent on herbivory and competition treatments). Our results indicate that habitat type and the presence of competitors may be a larger determinant of herbivory impact than feeding mode and suggest that integrated pest management strategies including competitive dynamics of recipient communities should be incorporated into biological control agent evaluation at earlier stages.

opencc-zeroDec 2015View details →
zenodo28/100

Figure 3 in A bagworm damaging chestnut trees in Vietnam

Figure 3. Morphological characteristics of Acanthoecia larminati: a, b. adults; c. bagworms; d. larva; e. pupal skins (pupae after adult emergence).

opencc-by-4.0Feb 2024View details →
zenodo28/100

Figure 4 in A bagworm damaging chestnut trees in Vietnam

Figure 4. Some Acanthoecia larminati die naturally in Castanea mollissima plantations: a. larva with soft rot putatively parasitized by entomopathogenic bacteria in a plantation in Hoa Binh; b. larvae covered in white and green fungal mycelium putatively parasitized by entomopathogenic fungi in a plantation in Thanh Hoa.

opencc-by-4.0Feb 2024View details →
zenodo28/100

Figure 2 in Stem borer Orientozeuzera rhabdota (Lepidoptera, Cossidae) damaging Manglietia conifera and Michelia mediocris trees in Vietnam

Figure 2. Symptoms of Orientozeuzera rhabdota attack in Manglietia conifera and Michelia mediocris: a, b, c, g, h, i. M. conifera; d, e, f. M. mediocris; a, d. damaged tree with holes in the main stem; b. broken tree after serious damaged from O. rhabdota; c. damaged tree with symptom on a branch (white arrow); e. larva eating on the stem; f, g. damage to the wood; h, i. entry holes (white arrows) and exit holes (black arrows) on stems.

opencc-by-4.0Jul 2023View details →
dryad28/100

Data from: A native plant competitor mediates the impact of above- and belowground damage on an invasive tree

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publicApr 2016View details →

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