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1.
Fungicidal activities of S-alkyl S′-p-substituted benzyl N-3-pyridyldithiocarbonimidates toward Coniothyrium diplodiella, Scleotinia sclerotiorum (on agar medium) and Sphaerotheca fuliginea (on pot test) were shown. The activities varied with the change of the S-alkyl group and were maximized at certain numbers of carbon atoms. A different pattern was observed in the activity toward S. fuliginea when the carbon number was 8 or more. Bulkiness of the S-alkyl group also appeared to influence the activities. The steric factor of the p-alkyl substituents mainly influenced the activity toward S. fuliginea up to the tert-butyl analog. The activities toward C. diplodiella and S. sclerotiorum increased with the increase in the bulkiness and the hydrophylicity of the p-substituent. Rm values were determined on reversed phase TLC and the structure-activity correlations were analyzed against hydrophobic (Rm), electronic (σ) and steric (Es) factors on 34 compounds.  相似文献   

2.
14C-Denmert(S-n-butyl S′-p-tert-butylbenzyl N-3-pyridyldithiocarbonimidate, S–1358) labeled at the methylene of the benzyl group was gradually decomposed to yield a number of products, when exposed to sunlight on thin-layer plates or in water solution, applied to plant foliage or nutrient solution, and added to soils under upland conditions. The identified products were almost common to plants, soils and light. The primary reactions occurred: (1), oxidation of the sulfur atoms; (2), cleavage of the dithiocarbonimidate linkage, and (3), oxidation of the methylene of the benzyl group. Also, hydroxylation at the tert-butyl group attached to the benzyl moiety slightly took place in soils. Although radioactivity was absorbed by the plant through leaves or roots, translocation into other parts of the plant occurred to a very small extent. Denmert and its degradation products were hardly leached through the acidic soils tested.  相似文献   

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