Literature DB >> 19297972

Pesticide usage pattern in tea ecosystem, their retrospects and alternative measures.

G Gurusubramanian1, A Rahman, M Sarmah, Somnath Ray, S Bora.   

Abstract

Tea is a perennial plantation crop grown under monoculture providing favorable conditions for a variety of pests. The concept of pest control has undergone a considerable change over the past few decades. In recent years there has been a greater dependence on the use of pesticides (7.35-16.75 kgha(-1)) with little importance laid on other safe control methods for the management of tea pests. Due to this practice, the tea pests showed a higher tolerance/ resistance status due to formation of greater amount of esterases, glutathione S-transferase and acetylcholinesterase. Thus, over reliance on pesticides end up with pesticide residue in made tea (DDT - 10.4-47.1%; endosulfan - 41.1-98.0%; dicofol- 0.0-82.4%; ethion - 0.0-36.2%; cypermethrin - 6.0- 45.1%). The growing concern about the pesticide residue in made tea, its toxicity hazards to consumers, the spiraling cost of pesticides and their application have necessitated a suitable planning which will ensure a safe, economic as well as effective pest management in tea. At present it is a global concern to minimize chemical residue in tea and European union and German law imposed stringent measures for the application of chemicals in tea and fixed MRL values at < or = 0. 1 mgkg(-1) for the most commonly used pesticides which will not be met out in the real practice and has been a major constraint to tea exporting countries like India. In order to regulate the situation of the Indian market at global level, central insecticide board and prevention of food adulteration regulation committee have reviewed the MRL position for tea and has recommended 10 insecticides, 5 acaricides, 9 herbicides and 5 fungicides for use in tea and issued the tea distribution and export control order 2005 which will help the country to limit the presence of undesirable substances in tea. This review attempts to provide the readers with a comprehensive account of pesticide use in North East in tea, surveillance report of the European community regarding the residue level in Assam and Darjeeling tea, recent amendments by international and national regulatory bodies, revised MRL values of pesticides in tea, an update about the current strategies for the management of tea pests with more focus on the use of biological control agents and a possible beneficial role or judicious use of chemical pesticides in complement with other alternative measures to achieve optimum effects in terms of limiting agricultural input, lowering production costs, reducing environmental contamination and the effect on non-target organisms, delaying the development of resistant pest biotypes and above all minimizing the pesticide residues in tea to increase the exports.

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Year:  2008        PMID: 19297972

Source DB:  PubMed          Journal:  J Environ Biol        ISSN: 0254-8704


  12 in total

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8.  Black Tea Source, Production, and Consumption: Assessment of Health Risks of Fluoride Intake in New Zealand.

Authors:  Declan T Waugh; Michael Godfrey; Hardy Limeback; William Potter
Journal:  J Environ Public Health       Date:  2017-06-21

9.  Tea saponin reduces the damage of Ectropis obliqua to tea crops, and exerts reduced effects on the spiders Ebrechtella tricuspidata and Evarcha albaria compared to chemical insecticides.

Authors:  Chi Zeng; Lingbing Wu; Yao Zhao; Yueli Yun; Yu Peng
Journal:  PeerJ       Date:  2018-03-19       Impact factor: 2.984

10.  Predation Pressure in Tea (Camellia sinensis) Plantations in Southeastern China Measured by the Sentinel Prey Method.

Authors:  Titus S Imboma; De-Ping Gao; Min-Sheng You; Shijun You; Gabor L Lövei
Journal:  Insects       Date:  2020-03-29       Impact factor: 2.769

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