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Phyto-Fungicides: Structure Activity Relationships of the Thymol Derivatives against <i>Rhizoctonia solani</i>
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作者 Kamlesh R. Chauhan Thanh C. Le +1 位作者 Praveen Kumar Chintakunta Dilip K. Lakshman 《Journal of Agricultural Chemistry and Environment》 2017年第4期175-185,共11页
Thymol, the key component of the thyme oil and its derivatives were evaluated for their structure activity relationship as fungicide against Rhizoctonia solani. Since plant-based chemicals are considered as “Generall... Thymol, the key component of the thyme oil and its derivatives were evaluated for their structure activity relationship as fungicide against Rhizoctonia solani. Since plant-based chemicals are considered as “Generally Recognized as Safe” (GRAS) chemicals, there is great potential to use those and synthetic derivatives against R. solani and other fungal pathogens, in vitro, and in the?greenhouse or field conditions. Among the six thymol derivatives evaluated, thymol acetate was considered as the most suitable commercially viable plant-based fungicide due to its superior efficacy as well as lowest residue. 展开更多
关键词 Fungicide THYMOL DERIVATIVES RHIZOCTONIA SOLANI
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Synthesis of Southern Corn Rootworm Pheromone from S-Citronellol and Its Field Evaluation
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作者 Thangaiah Subramanian Meiling Webb +3 位作者 Ganga Bhagavathy Annett Rozek Bheema Rao Paraselli Kamlesh R. Chauhan 《Journal of Agricultural Chemistry and Environment》 2016年第4期223-230,共9页
Southern rootworm (Diabrotica undecimpunctata howardi) affects several plants such as soybean, sorghum, wheat, cucumber, alfalfa, cucurbits and it is most damaging to corn and peanuts. The pheromone based “attract an... Southern rootworm (Diabrotica undecimpunctata howardi) affects several plants such as soybean, sorghum, wheat, cucumber, alfalfa, cucurbits and it is most damaging to corn and peanuts. The pheromone based “attract and kill” strategy is one of the powerful ways to control pest population. To address our key objective of the practical utility of the synthetic pheromone, we have developed a simple synthetic strategy to produce gram scale southern corn rootworm pheromone in nine simple steps starting from S-Citronellol. The present strategy takes advantage of the existing chiral center of commercially available S-Citronellol. To get the basic carbon skeleton of the pheromone, the main step in the synthetic strategy is coupling of aliphatic units through Wittig reaction. The phosphonium salt from a non-functionalized aliphatic bromide followed by Wittig reaction improved the overall yield in the multistep synthesis of this pheromone. The large-scale production of pheromone enabled us to test it in the field. 展开更多
关键词 Southern Corn Rootworm Pheromone Synthesis Wittig Reaction Diabrotica undecimpunctata howardi Field Attraction
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