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BACKGROUND: The objectives of this work were to determine if the control of potato virus Y (PVY, genus Potyvirus, family Potyviridae) in seed potato could be improved by combining border crops and mineral oil sprays, and if the border crop acts as a barrier or a virus sink. RESULTS: Field tests over 3 years confirmed that mineral oils alone are an effective barrier to PVY, and showed that borders alone act as a PVY sink. Combining the familiar mineral oil and the more recent crop border methods was almost twice as effective in reducing PVY incidence as either one used alone. The combination provided consistently high PVY control compared with the variable and often lower level of control by either method alone. The contribution of the oil to PVY reduction was similar whether it was applied to the border, the center seed plot, or both. Oil application to the border alone should not affect efficacy and would help keep control costs down. CONCLUSION: Combining border and oil provided the best reduction in PVY incidence 3 years out of 3, providing producers with a tool to reduce year‐to‐year variation in the effectiveness of crop borders or oil sprays used separately. © Her Majesty the Queen in Right of Canada, as represented by the Minister of Agriculture and Agri‐Food Canada. Published by John Wiley and Sons, Ltd. 相似文献
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DL-α-Difluoromethylornithine (DFMO), a specific suicide inhibitor of the polyamine biosynthetic enzyme ornithine decarboxylase
(EC 4.1.1.17), strongly inhibited mycelial growth and sporidial formation of the wheat pathogen,Neovossia indica, in vitro, while DL-α-difluoromethylarginine (DFMA), the analogous suicide inhibitor of arginine decarboxylase (EC 4.1.1.19), did not.
The inhibited mycelial growth and sporidial formation were not only restored by putrescine (polyamine) addition, but were
actually enhanced in the putrescine + DFMO cultures. Besides altering mycelial growth and morphology, DFMO also reduced the
cell size drastically. The inhibition of fungal polyamine biosynthesis is discussed in relation to selective control of plant
disease. 相似文献
44.
Uma S. Singh 《Pest management science》1989,25(2):145-154
[14C]metalaxyl applied to seeds, roots and leaves of cowpea was readily taken up by all plant parts and a major fraction of it was retained within the treated leaves and seeds but not in the roots. The fungicide exhibited ambimobility inside the plant. When applied to the middle of leaflets, metalaxyl mobilised towards proximal and distal parts of the leaflet. Intraleaflet movement seemed to result from translocation through veins and diffusion through cell walls and intercellular spaces. Accumulation of metalaxyl at tips and margins of primary leaves followed application to roots. Metalaxyl was readily extracted from most plant parts except cotyledons and only 0.8% of the fungicide applied as a seed treatment was recovered from 50-day-old plants. 相似文献
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Twenty-six pigs from four litters in a healthy herd of swine were examined periodically for the fecal excretion of viruses by the use of porcine kidney cell cultures. Viruses were initially isolated from all pigs between 34 to 64 days of age. The pigs within each litter began shedding virus in their feces approximately at the same time, usually within one week, and the type of virus initially recovered was usually the same. Subsequently, waves of infection with different enteroviruses appeared to occur during the observation period of six months. At least six antigenically different viruses were isolated from this herd over a 26-month period. Most, if not all, of these viruses were considered to belong to the enterovirus group. No disease was associated with these enteroviral infections.
The colostrum and milk of sows contained significant amounts of enteroviral antibodies. Prior to nursing, the serum of new-born pig contained no enteroviral antibodies but, shortly after nursing, high titers of such antibodies were present in the serum. Antibodies were detected in the feces of suckling pigs.
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