Persistent toxicity of cyantraniliprole, a diamide insecticide against greenhouse whitefly, Trialeurodes vaporariorum (Westwood) on tomato (Solanum lycopersicum L.) grown under protected environment

Authors

  • Ekta Kaushik Department of Entomology, College of Agriculture Chaudhary Sarwan Kumar Himachal Pradesh Krishi Vishvavidyalaya, Palampur-176 062
  • Ajay K. Sood Department of Entomology, College of Agriculture Chaudhary Sarwan Kumar Himachal Pradesh Krishi Vishvavidyalaya, Palampur-176 062
  • Prem Chand Sharma Department of Entomology, College of Agriculture Chaudhary Sarwan Kumar Himachal Pradesh Krishi Vishvavidyalaya, Palampur-176 062

Keywords:

Cyantraniliprole, greenhouse whitefly, persistent toxicity, protected environment, tomato

Abstract

Persistent toxicity of cyantraniliprole at two different concentrations namely, recommended dose (90 g a.i. ha-1) and double the recommended dose (180 g a.i. ha-1) was determined on tomato (Solanum lycopersicum L.) grown under protected conditions against greenhouse whitefly, Trialeurodes vaporariorum adults during 2021 and 2022 summer crop. On zero days after the spray (DAS), the residual toxicity of cyantraniliprole was highest which declined significantly with the advancement in duration to 10 and 20 DAS in recommended and double the recommended dose, respectively. Cyantraniliprole (180 g a.i. ha-1) resulted in 50 % mortality of greenhouse whitefly adults upto 7 days after spray, whereas at 90 g a.i. ha-1 it lasted upto 3 days. Cyantraniliprole 180 g a.i. ha-1 showed highest persistent toxicity (PT) values of 1112.03 and 1064.41 during 2021 and 2022, respectively as compared to cyantraniliprole @ 90 g a.i. ha-1which recorded 484.21 and 473.33 PT value during the respective seasons.

Downloads

Download data is not yet available.

Downloads

Published

2023-12-27

How to Cite

Kaushik, E., Sood, A. K., & Sharma, P. C. (2023). Persistent toxicity of cyantraniliprole, a diamide insecticide against greenhouse whitefly, <i>Trialeurodes vaporariorum</i> (Westwood) on tomato <i>(Solanum lycopersicum L.)</i> grown under protected environment. Himachal Journal of Agricultural Research, 49(2), 194–198. Retrieved from https://hjar.org/index.php/hjar/article/view/172484

Issue

Section

Full Length Papers

References

Abbott WS. 1925. Method for computing the effectiveness of an insecticide. Journal of Economic Entomology 18: 265-267.

Anonymous. 2018. Package of practices for vegetable crops. Directorate of Extension Education, CSK Himachal Pradesh Krishi Vishvavidyalaya, Palampur, India, P 203.

Brevault T, Oumarou Y, Achaleke J, Vaissayre M and Nibouche S. 2009. Initial activity and persistence of insecticides for the control of boll worms (Lepidoptera: Noctuidae) in cotton crops. Crop Protection 28 (5): 401- 406.

Gonzales-Coloma A, Gutierrez C, Hubner H, Achenbach H, Terrero D and Fraga BM. 1999. Selective insect antifeedant and toxic action of ryanoid diterpenes. Journal of Agricultural and Food Chemistry 47: 4419–4424.

Han W, Zhang S, Shen F, Liu M, Ren C and Gao X. 2012. Residual toxicity and sublethal effects of chlorantraniliprole on Plutella xylostella (Lepidoptera: Plutellidae). Pest Management Science 68 (8):1184-1190.

Hardke JT, Temple JH, Leonard BR and Jackson RE. 2011. Laboratory toxicity and field efficacy of selected insecticides against fall armyworm (Lepidoptera: Noctuidae). Florida Entomologist 94 (2): 272-278.

Jacobson AL and Kennedy GG. 2011. The effect of three rates of cyantraniliprole on the transmission of tomato spotted wilt virus by Frankliniella occidentalis and Frankliniella fusca (Thysanoptera: Thripidae) to Capsicum annuum. Crop Protection 30: 512–515

Kaushik E, Ghongade DS, Singh V, Rana RS and Sood AK. 2023. Diagnosis and management of biotic and abiotic stresses of vegetable crops in protected agriculture and natural farming. CAAST, NAHEP, ICAR on protected agriculture and natural farming. CSK HPKV, Palampur p 182.

Mulrooney JE and Elmore CD. 2000. Rain fastening of bifenthrin to cotton leaves with selected adjuvants. Journal of Environmental Quality 29 (6): 1863-1866.

Pradhan S.1967. Strategy of integrated pest control. Indian Journal of Entomology 29: 105-122.

Saini DK and Sivastava RP. 2022. Persistent toxicity of diamide insecticides against Henosepilachna vigintioctopunctata (F.) on brinjal. Indian Journal of Entomology 84 (4): 959-962.

Sood AK, Mehta PK, Verma KS, Sharma KD, Banyal DK and Chandel YS. 2012. Status of plant protection mechanism under protected cultivation in Himachal Pradesh. In: Indian Science Congress -2012, Bhubneswar, pp. 154-155.

Sood AK, Singh V and Mehta PK.2018. Current status and management strategies of insect-pests of vegetable crops under protected cultivation in Himachal Pradesh. In: Technologies and Sustainability of Protected Cultivation for Hi-Valued Vegetable Crops (Sanjeev Kumar, NB Patel, SN Saravaiya and BN Patel, eds). Navsari Agricultural University, Navsari, Gujarat, India. P 339-354.

Teixeira LA and Andaloro JT. 2013. Diamide insecticides: Global efforts to address insect resistance stewardship challenges. Pesticide Biochemistry and Physiology 106: 76-78.

Teja N, Sunitha V, Babu VR and Satyanarayana J. 2019. Evaluation of novel insecticides and their persistence against diamondback moth, Plutella xylostella (Linn.) Journal of Entomology and Zoology Studies 7 (3): 338- 341.

Thakur H and Srivastava RP. 2020. Persistent toxicity of spinosyn and diamide against tobacco caterpillar, Spodoptera litura (F.) on cowpea and soybean. Indian Journal of Entomology 82 (1): 183-189.

Walgenbach JF, Leidy RB, Sheets TJ. 1991. Persistence of insecticides on tomato foliage and implications for control of tomato fruit worm (Lepidoptera: Noctuidae). Journal of Economic Entomology 84 (3): 978-986.

Xue M, Pang YH, Li QL and Liu TX. 2010. Effects of four host plants on susceptibility of Spodoptera litura (Lepidoptera: Noctuidae) larvae to five insecticides and activities of detoxification esterases. Pest Management Science 66 (12): 1273-1279.

Zanic K, Goreta S, Perica S and Sutic. 2008. Effects of alternative pesticides on greenhouse whitefly in protected cultivation. Journal of Pest Science 81: 161- 166.

Most read articles by the same author(s)

1 2 > >> 

Similar Articles

<< < 5 6 7 8 9 10 11 12 13 14 > >> 

You may also start an advanced similarity search for this article.