Potential of ethyl acetate and ethanol extracts of Bintaro (Cerbera manghas L.) seeds as bioinsecticides against Aedes aegypti (Diptera: Culicidae). [PDF]
Aziz A +7 more
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Ribosomal RNA-Specific Antisense DNA and Double-Stranded DNA Trigger rRNA Biogenesis and Insecticidal Effects on the Insect Pest <i>Coccus hesperidum</i>. [PDF]
Oberemok V +6 more
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Botanical insecticide represents an exciting alternative way in the biological crop protection [PDF]
B. Lapied
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Insect Pest Control from Chemical to Biotechnological Approach: Constrains and Challenges. [PDF]
Civolani S +3 more
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Toxicity across food webs: effects of karanja oil on greenhouse whitefly on tomato and two commercial biocontrol agents. [PDF]
Cabra-Arias C, Carrillo J.
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An integrated mathematical model for optimizing integrated pest management strategies against rice tungro virus disease. [PDF]
Amelia R, Anggriani N.
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Are We Adequately Testing Essential Oils as Insecticides in the Laboratory? Bridging the Gap Between Laboratory Bioassays and Field Applications. [PDF]
Lucia A, Guzmán E, Toloza AC.
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Botanical insecticide research: many publications, limited useful data
Trends in Plant Science, 2014Our analysis of >20000 papers on botanical insecticides from 1980 to 2012, indicates major growth in the number of papers published annually (61 in 1980 to 1207 in 2012), and their proportion among all papers on insecticides (1.43% in 1980 to 21.38% in 2012). However, only one-third of 197 random articles among the 1086 papers on botanical insecticides
Murray B, Isman, Michael L, Grieneisen
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The discovery of novel leads and new mechanisms of action is of vital significance to the development of pesticides. To explore lead compounds for botanical insecticides, 77 β-dihydroagarofuran derivatives were designed and synthesized. Their structures were mainly confirmed by (1)H NMR, (13)C NMR, DEPT-135°, IR, MS, and HRMS.
Ximei, Zhao +4 more
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