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Biology subjects

Anderson, T. D.

Publications and source records attributed to Anderson, T. D..

2 recordsLinked to original sources

Pharmacological modulation of ATP-binding cassette transporters alters feeding phases of the sugarcane aphid on susceptible sorghum

BACKGROUND: Aphids damage crops through sustained feeding and by rapid transmission of plant viruses, processes that are not effectively prevented by conventional insecticides. The sugarcane aphid (Melanaphis sacchari), an invasive pest of sorghum in the United States, can inoculate non-persistent viruses within minutes of probing. Disrupting feeding phases represents an alternative strategy in plant disease and integrated pest management. ATP-binding cassette transporters (ABC transporters) influence insect physiological performance, but their role in regulating aphid feeding behavior relevant to crop damage and virus transmission remains unknown. This study evaluated whether ABC transporter activity alters feeding phases of M. sacchari on sorghum. RESULTS: Aphids exposed to ABC transporter modulators via artificial diet and monitored using Electrical Penetration Graph (EPG) recordings showed significant reductions in salivation in E1 phase, compared with controls (P < 0.05) and an increased duration in xylem phase when treated with elacridar, an ABC transporter inhibitor. Aphids treated with dexamethasone, an ABC transporter activator, exhibited increased time spent in pathway phase compared to the controls. ATPase assays also showed significant variations in modulator-treated samples compared to the controls. CONCLUSION: These results demonstrate that transporter modulators alter feeding behaviors which might lead to reduced crop damage/virus transmission, including pathway activities, salivation, and xylem ingestion. This study opens the path to identify ABC transporters as regulators of feeding phases, and to advance the understanding of aphid-plant interactions. This new knowledge will support the development of feeding-based pest management strategies to reduce crop damage and virus transmission.

physiology↗

Vaporous essential oils and isolates restore pyrethroid-treated netting efficacy to Aedes aegypti (Diptera: Culicidae)

Decreasing opportunities for mosquitoes to bite is critical in the reduction of mosquito-borne pathogen transmission, such as Plasmodium spp. or dengue, yellow fever, and West Nile viruses. Field-evolved resistance to a large selection of synthetic insecticides is crippling efforts to reduce mosquito populations and new strategies are necessary to sustain the efficacy of commercially available tools. Aedes aegypti (L.), among other species, have evolved pyrethroid resistance in the field and the pyrethroid-resistant Puerto Rico (PR) strain is a valuable tool for understanding resistance mechanisms. A previous study showed that pyrethroid efficacy can be enhanced by pre-exposing the PR strain to essential oil vapors before topical application of deltamethrin. Insecticide-treated nets (ITNs) and long-lasting insecticidal nets (LLINs) are current products commercialized for mosquito bite protection, but nets using pyrethroids are losing efficacy in the field due to field-evolved pyrethroid resistance. This study tested essential oils previously identified to affect pyrethroid efficacy, as well as their main isolates, to assess if they can restore the efficacy of pyrethroid-treated LLIN against the PR strain. We show that although amyris (Amyris balsamifera) expectedly decreases net efficacy, increased mortality can be obtained after exposure to tagetes (Tagetes bipinnata) and cajeput (Melaleuca cajuputi) oils, but also after exposure to their isolates, such as dihydro tagetone and ocimene, from 1 h after exposure to the net. This study provides a selection of promising synergists used as vaporous emanations to restore pyrethroid efficacy and counteract field-evolved resistance in mosquitoes.

pharmacology and toxicology↗