Results 81 to 90 of about 139 (111)
A Review of Resistance Mechanisms of Synthetic Insecticides and Botanicals, Phytochemicals, and Essential Oils as Alternative Larvicidal Agents Against Mosquitoes. [PDF]
Senthil-Nathan S.
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Citrus tristeza virus: a pathogen that changed the course of the citrus industry. [PDF]
Moreno P +4 more
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Silencing the mob: disrupting quorum sensing as a means to fight plant disease. [PDF]
Helman Y, Chernin L.
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Algicide Constituents from Swinglea glutinosa
Journal of Agricultural and Food Chemistry, 2009Oscillatoria perornata, a cyanobacterium (blue-green alga), common in catfish production ponds in the southeastern United States, produces the monoterpene 2-methylisoborneol (MIB), which is absorbed into catfish flesh and imparts a "musty" taste, rendering them unpalatable and unmarketable.
Kumudini Meepagala +2 more
exaly +4 more sources
Acridone Alkaloids from Swinglea glutinosa (Rutaceae) and Their Effects on Photosynthesis
Chemistry & Biodiversity, 2016AbstractContinuing our search for herbicide models based on natural products, we investigated the action mechanisms of five alkaloids isolated from Swinglea glutinosa (Rutaceae): Citrusinine‐I (1), glycocitrine‐IV (2), 1,3,5‐trihydroxy‐10‐methyl‐ 2,8‐bis(3‐methylbut‐2‐en‐1‐yl)‐9(10H)‐acridinone (3), (2R)‐2‐tert‐butyl‐3,10‐dihydro‐4,9‐dihydroxy‐11 ...
Pedro H, Arato Ferreira +6 more
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Bioactive Acridone Alkaloids from Swinglea glutinosa
Journal of Natural Products, 2001A new prenylated acridone alkaloid, 1,3,5-trihydroxy-2,8-bis(3-methylbut-2-enyl)-10-methyl-9-acridone (1), was isolated from the stembark of Swinglea glutinosa, along with three known acridone alkaloids, 5-hydroxynoracronycine (2), 1,3,5-trihydroxy-4-methoxy-2-(3-methylbut-2-enyl)-10-methyl-9-acridone (3), and 1,3,5-trihydroxy-4-methoxy-10 ...
B, Weniger +7 more
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Analysis of essential oils isolated by steam distillation fromSwinglea glutinosafruits and leaves
Journal of Essential Oil Research, 2015Essential oils obtained by steam distillation from Swinglea glutinosa (Blanco) Merr. fruit peel or leaves were analyzed by gas chromatography with flame ionization and mass spectrometry detection systems. A total of sixty-seven compounds were found, sixty-four of which were common to both oils, although present in different relative amounts.
Elena Stashenko +3 more
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Journal of Essential Oil Research, 2006
Abstract The chemical composition of the leaf oils of Clausena lansium (Lour). Skeels and Swinglea glutinosa (Blanco) Merr. were studied by GC and GC/MS. Seventy compounds of the oil of C. lansium were identified of which caryophyllene oxide (16.8%) and (Z)-α-santalol (11.7%) were the major constituents. In the oil of S.
Jorge A. Pino +2 more
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Abstract The chemical composition of the leaf oils of Clausena lansium (Lour). Skeels and Swinglea glutinosa (Blanco) Merr. were studied by GC and GC/MS. Seventy compounds of the oil of C. lansium were identified of which caryophyllene oxide (16.8%) and (Z)-α-santalol (11.7%) were the major constituents. In the oil of S.
Jorge A. Pino +2 more
openaire +1 more source

