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7 results for “Trialeurodes vaporariorum”
Fig. 1 in Effect of UV-C irradiation on greenhouse whitefly, Trialeurodes vaporariorum (Hemiptera: Aleyrodidae)
Fig. 1. Mean ± SE number of Trialeurodes vaporariorum adults per plant (A), nymphs per 9-leaf sample (B), and eggs per 9-leaf sample (C) per wk from tomato plants treated nightly with a 16-s UV-C treatment or lef untreated from 28 Jun to 2 Aug 2018. *Indicates a significant difference between treatment and control at P <0.05).
Datasets related to agroinoculation and transmission experiments with Tomato Leaf Curl New Delhi Virus Spain Strain between zucchini cv. Milenio and Ecballium elaterium plants by Trialeurodes vaporariorum and Bemisia tabaci MED whiteflies
<p>These datasets support the data provided directly in the scientific publication titled "Tomato Leaf Curl New Delhi Virus Spain Strain Is Not Transmitted by Trialeurodes vaporariorum and Is Inefficiently Transmitted by Bemisia tabaci Mediterranean between Zucchini and the Wild Cucurbit Ecballium elaterium", published in the <a href="https://www.mdpi.com/2075-4450/14/4/384">Insects journal</a>. </p> <p>The figure included in the datasets highlights agroinoculation experiments with tomato leaf curl New Delhi virus Spain strain using different source plant–target plant–whitefly species combinations. ToLCNDV (DNA-A and DNA-B) was detected by molecular hybridization after tissue printing on nylon membranes using specific digoxigenin-labelled DNA probes for each viral component. (<strong>A</strong>) Prints of zucchini plants inoculated using Trialeurodes vaporariorum (T. v.) or Bemisia tabaci MED (B. t.) as a vector and infected zucchini plants as the virus source. (<strong>B</strong>) Prints of Ecballium elaterium plants using B. t. as a vector and infected zucchini plants as the virus source. (<strong>C</strong>) Prints of zucchini plants using B. t. as a vector and infected E. elaterium plants as the virus source. Blots from one of the two independent experiments (Experiment 1 in the Table) carried out for each source plant–target plant–whitefly species combination are shown. Prints of ToLCNDV-infected zucchini plants included as positive controls are outlined with red squares.</p> <p>The table included in the datasets show the results of transmission experiments of tomato leaf curl New Delhi virus Spain strain between zucchini cv. Milenio and Ecballium elaterium plants by Trialeurodes vaporariorum and Bemisia tabaci MED. Infection was determined by tissue-printing and molecular hybridization with digoxigenin-labelled ToLCNDV DNA-A and DNA-B probes. Blots from experiment (Exp.) 1 of each source plant–target plant–whitefly species combination are shown in the Figure.</p> <p>The provided datasets are further discussed and interpreted in detail, as well as their subsequent results, in the scientific publication.</p> <p>This research was conducted within the VIRTIGATION project, which is part of the EU Open Research Data pilot. This project has received funding from the European Union’s Horizon 2020 research and innovation program under grant agreement No. 101000570.</p>
FIGURES 39–47. Trialeurodes vaporariorum. 39 in Morphological and molecular identification of all developmental stages of four whitefly species (Hemiptera: Aleyrodidae) commonly intercepted in quarantine
FIGURES 39–47. Trialeurodes vaporariorum. 39, third instar on E. pulcherrima from Italy; 40, fourth instar on E. pulcherrima from Italy; 41, diagrammatic representation of left compound eye of adult female; 42, upper and lower compound eyes separate; 43, mesotibia combs; 44, male abdomen with dorsal discoidal pores; 45, female antenna; 46, aedeagus; 47, female cement gland.
From circles to cubes: Exploring the effectiveness of different geometric shapes in trapping Greenhouse Whiteflies, Trialeurodes vaporariorum (Hemiptera: Aleyrodidae)
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Data from: Double cuticle barrier in two global pests, the whitefly Trialeurodes vaporariorum and the bedbug Cimex lectularius
The integument protects the organism against penetration of xenobiotics and water that would potentially interfere with homeostasis. In insects that play key roles in a variety of agricultural and ecological habitats, this inward barrier has barely been investigated. In order to advance knowledge in this field, we studied integumental barrier (cuticle) permeability in the two global pests Trialeurodes vaporariorum (greenhouse whitefly) and Cimex lectularius (bedbug), applying a simple dye-penetration assay. In agreement with our recent findings in Drosophila melanogaster, we show that the surface of these insects is regionalised. We also show that, in contrast to the single barrier in D. melanogaster, two barriers with distinct temperature-sensitive and lipid-based physico-chemical material properties act in parallel to protect these insects against penetration of hydrophilic molecules. These findings imply the existence of unexplored mechanisms by which the cuticle acts as a protective coat against the penetration of water and xenobiotics, including pollutants and insecticides.
Data from: Double cuticle barrier in two global pests, the whitefly Trialeurodes vaporariorum and the bedbug Cimex lectularius
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Over-expression of a Cytochrome P450 is Associated with Resistance to Pyriproxyfen in the Greenhouse Whitefly Trialeurodes vaporariorum
GEO Series GSE31316. Trialeurodes vaporariorum. 8 samples. Type: Expression profiling by array.
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