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27 November 2023 Exogenous salicylic acid induces defense responses in tea plants against Toxoptera aurantii (Hemiptera: Aphididae)
Wenbin Jiang, Changhao Lu, Jinjuan Fan, Mengyang Wu, Wenlong Chen, Degang Zhao, Suzhen Niu, Yingqin He
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Abstract

Toxoptera aurantii is one of the most destructive pests, threatening the yield and quality of tea plantations. The salicylic acid (SA)-mediated signaling pathway is vital for the induction of plant defense responses; however, its role in tea plant resistance to T. aurantii remains unclear. Thus, this study used and electrical penetration graph and monitoring of population dynamics to evaluate the effects of exogenous SA application on T. aurantii feeding behavior and population growth in tea seedlings. Moreover, the effects of SA treatment on the activities of defense-related enzymes were analyzed. Probe counts and the duration of xylem sap ingestion were significantly higher in SA-treated plants than those in the control group. The total duration of passive phloem ingestion was significantly decreased in 0.5 mmol/l SA-treated plants, and the application of 0.5, 1, and 4 mmol/l SA significantly inhibited T. aurantii population growth. In addition, the activities of polyphenol oxidase, peroxidase, and superoxide dismutase were significantly increased in the 0.5 mmol/l SA-treated plants. Overall, this study demonstrates the capacity of exogenous SA to activate defense responses against T. aurantii. These results have crucial implications for understanding the mechanisms of enhanced resistance, thereby providing a sustainable approach for managing T. aurantii.

Wenbin Jiang, Changhao Lu, Jinjuan Fan, Mengyang Wu, Wenlong Chen, Degang Zhao, Suzhen Niu, and Yingqin He "Exogenous salicylic acid induces defense responses in tea plants against Toxoptera aurantii (Hemiptera: Aphididae)," Journal of Economic Entomology 117(1), 302-310, (27 November 2023). https://doi.org/10.1093/jee/toad220
Received: 17 August 2023; Accepted: 14 November 2023; Published: 27 November 2023
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KEYWORDS
defense enzymes
feeding behavior
population dynamics
salicylic acid
Toxoptera aurantii
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