Items where Author is "Cheesman, Jodie"Group by: Item Type | Date Number of items: 10. 2025Cheesman, J., Bennett, D. M., Wright, C. L., Orr, R. and De Faveri, S. G. (2025) Narrow, Open Canopy Architecture Enables More Effective Management of Mango Scale, Aulacaspis tubercularis Newstead in Mango Orchards. Journal of Applied Entomology . https://doi.org/10.1111/jen.13474 Cheesman, J., Bennett, D. M., Wright, C. L., Orr, R. and De Faveri, S. G. (2025) Effect of canopy architecture on mango scale population, damage, and mango fruit quality. [Dataset] https://doi.org/10.60699/djjt-sa02 Brown, G. W., Starkie, M. L., Fowler, E. V., Blacket, M. J., Royer, J. E., Mayer, D. G., Souza, N. M., Cheesman, J., Missenden, B., Irvine, M. and Schutze, M. K. (2025) Field assessment of current and improved surveillance traps for fruit flies (Diptera: Tephritidae) in Australia. Journal of Economic Entomology, 118 (3). pp. 1344-1353. https://doi.org/10.1093/jee/toaf085 Moses, E. R., Lehman, M. G. M., Johnson, A. J., Welty Peachey, A. M., Yoder, J. M., De Faveri, S. G., Cheesman, J., Manoukis, N. C. and Siderhurst, M. S. (2025) Tracking individual Bactrocera tryoni: Wind effects and natural movement. Entomologia Experimentalis et Applicata, 173 (8). pp. 854-868. https://doi.org/10.1111/eea.13578 2024De Faveri, S. G., Vijaysegaran, S. and Cheesman, J. (2024) Area-wide management of methyl eugenol attracted fruit flies in mango: a systems approach. Manual. ACIAR. Hurst, A. L., O′Brien, A. L., Miller, N. D., Peachey, A. M. W., Yoder, J. M., De Faveri, S. G., Cheesman, J., Manoukis, N. C. and Siderhurst, M. S. (2024) Tracking and modeling the movement of Queensland fruit flies, Bactrocera tryoni, using harmonic radar in papaya fields. Scientific Reports, 14 (1). p. 17521. https://doi.org/10.1038/s41598-024-67372-4 Welty Peachey, A. M., Moses, E. R., Johnson, A. J., Lehman, M. G.M., Yoder, J. M., De Faveri, S. G., Cheesman, J., Manoukis, N. C. and Siderhurst, M. S. (2024) Wind effects on individual male and female Bactrocera jarvisi (Diptera: Tephritidae) tracked using harmonic radar. Environmental Entomology, 54 (1). pp. 1-14. https://doi.org/10.1093/ee/nvae108 2023Katlav, A., Nguyen, D. T., Chhagan, A., Jamieson, L., Robertson, A. R., Cheesman, J., Learmonth, S., Trębicki, P., Cook, J. M. and Riegler, M. (2023) Search for source of invasive-range populations of a haplodiploid pest species reveals Wolbachia-driven mitochondrial selective sweep in native range. Journal of Pest Science, 97 . pp. 1381-1394. https://doi.org/10.1007/s10340-023-01706-5 2020Park, S. J., De Faveri, S. G., Cheesman, J., Hanssen, B. L., Cameron, D. N. S., Jamie, I. M. and Taylor, P. W. (2020) Zingerone in the Flower of Passiflora maliformis Attracts an Australian Fruit Fly, Bactrocera jarvisi (Tryon). Molecules, 25 (12). https://doi.org/10.3390/molecules25122877 2019Catullo, R. A., Yeap, H. L., Lee, S. F., Bragg, J. G., Cheesman, J., De Faveri, S. G., Edwards, O., Hee, A. K. W., Popa, A. D., Schiffer, M. and Oakeshott, J. G. (2019) A genome-wide approach for uncovering evolutionary relationships of Australian Bactrocera species complexes (Diptera: Tephritidae). Invertebrate Systematics, 33 (4). pp. 618-627. https://doi.org/10.1071/IS18065 |