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1.
室内药效试验表明:麦根宁1号、敌力脱对小麦根腐病菌的生长均有良好的抑制作用。麦根宁Ⅰ号稀释300倍时,平均抑菌圈直径最大;敌力脱稀释800倍时,平均抑菌圈直径最大。同时,麦根宁Ⅰ号、敌力脱Ⅱ号,粉锈宁对小麦全蚀病菌生长也有明显的抑制作用。粉锈宁,麦根宁Ⅰ,Ⅱ号在稀释10000倍时,抑菌率均达100%;敌力脱在稀释15000倍时,平均抑菌率仍达89.7%。  相似文献   
2.
The yeasts Cryptococcus laurentii,Trichosporon pullulans,Rhodotorula glutinis and Trichosporon sp.were used to investigate their sensitivity to four fungicides and different concentrations of CO2,as well as their antagonistic ability to Penicilliumexpansum and Alternaria alternata in vitro when applied with fungicide.There were significant differences in sensitivity to the fungicides among the different yeasts(P = 0.05).R.glutinis was more sensitive to Deccocil,Iprodione and Stroby as compared to other yeasts.Combination antagonistic yeasts with fungicide could more significantly enhance biocontrol ability of the yeasts against the pathogenic fungi in vitro(P = 0.05).C.laurentii was the most effective antagonist among the four yeasts and could completely control spore germination of P.expansum and A.alternata when combined with Stroby at the concentration of 100 μL L-1.The yeasts,except R.glutinis,could grow well on nutrient yeast dextrose agar (NYDA) after 8 d incubation even at 20% CO2 concentration at 25℃.Particularly Trichosporon sp.showeda better adaptability to low temperature as compared to other antagonists.  相似文献   
3.
甲氧基丙烯酸酯类杀菌剂的应用、开发现状及展望   总被引:19,自引:2,他引:19  
本文对甲氧基丙烯酸酯类杀菌剂的开发现状及应用前景进行了简要的介绍。文中涉及甲氧基丙烯酸酯类杀菌剂的化学结构、生物活性、登记与专利和开发公司等。  相似文献   
4.
This review provides an overview of members of the ATP-binding cassette (ABC) and major facilitator superfamily (MFS) of transporters identified in filamentous fungi. The most common function of these membrane proteins is to provide protection against natural toxic compounds present in the environment of fungi, such as antibiotics produced by other microorganisms. In plant pathogenic fungi, these transporters can also be an important determinant of virulence on host plants by providing protection against plant defence compounds or mediating the secretion of host-specific toxins. Furthermore, they play a critical role in determining base-line sensitivity to fungicides and other antimycotic agents. Overexpression of some of these transporters can lead to the development of resistance to chemically-unrelated compounds, a phenomenon described as multidrug resistance (MDR). This has been observed in a variety of organisms and can impose a serious threat to the effective control of pathogenic fungi.  相似文献   
5.
十种常用农药与球孢白僵菌的生物学相容性   总被引:24,自引:2,他引:24  
球孢白僵菌孢子粉与10种常用农药相容性的测定结果显示,随着孢子浓度上升,所试农药对孢子的抑制作用均有不同程度的增强。在1/10田间常规使用浓度下,百菌清和代森锰锌均能抑制或杀死孢子(萌发率<1%)。除阿维菌素外,所有杀虫剂均与白僵菌孢子相容,在常规使用浓度的10倍稀释液中孢子萌发率达90%以上。吡虫啉、蚜虱灵、灭多威和氟虫腈与孢子的相容性最好,其中吡虫啉和蚜虱灵对孢子萌发率的影响不明显随药剂浓度的变化而变化,即使在田间常规使用浓度下孢子萌发率也在95%以上,而阿维菌素与白僵菌的相容性极差。因此,应用白僵菌制剂防治害虫,选择生物学相容性好的农药以低剂量与白僵菌制剂混用,既可使菌剂增效,又可大幅度降低化学药剂用量。  相似文献   
6.
The role of multiple ATP-binding cassette (ABC) and major facilitator superfamily (MFS) transporter genes from the plant pathogenic fungus Botrytis cinerea in protection against natural fungitoxic compounds was studied by expression analysis and phenotyping of gene-replacement mutants. The expression of 11 ABC (BcatrA–BcatrK) and three MFS genes (Bcmfs1, Bcmfs2 and Bcmfs4) was studied. All genes showed a low basal level of expression, but were differentially induced by treatment with cycloheximide and the plant defence compounds camptothecin, eugenol, psoralen, resveratrol and rishitin. The latter compounds induced expression of BcatrB at a high level. Eugenol was more toxic to BcatrB gene-replacement mutants than to the control isolates. Eugenol also caused an instantaneous increase in mycelial accumulation of the fungicide fludioxonil, a known substrate of BcatrB. However, there was no difference in virulence between the wild-type and BcatrB gene-replacement mutants on Ocimum basilicum, a plant known to contain eugenol. The results indicate that BcatrB is a transporter of lipophilic compounds, such as eugenol, but its role in virulence remains uncertain.  相似文献   
7.
Fungicides are indispensable for high-quality crops, but the rapid emergence and evolution of fungicide resistance have become the most important issues in modern agriculture. Hence, the sustainability and profitability of agricultural production have been challenged due to the limited number of fungicide chemical classes. Resistance to site-specific fungicides has principally been linked to target and non-target site mechanisms. These mechanisms change the structure or expression level, affecting fungicide efficacy and resulting in different and varying resistance levels. This review provides background information about fungicide resistance mechanisms and their implications for developing anti-resistance strategies in plant pathogens. Here, our purpose was to review changes at the target and non-target sites of quinone outside inhibitor (QoI) fungicides, methyl-benzimidazole carbamate (MBC) fungicides, demethylation inhibitor (DMI) fungicides, and succinate dehydrogenase inhibitor (SDHI) fungicides and to evaluate if they may also be associated with a fitness cost on crop pathogen populations. The current knowledge suggests that understanding fungicide resistance mechanisms can facilitate resistance monitoring and assist in developing anti-resistance strategies and new fungicide molecules to help solve this issue. © 2023 Society of Chemical Industry.  相似文献   
8.
In field and laboratory experiments, enhanced degradation of the dicarboximide fungicides, iprodione and vinclozolin, was stimulated by only one application of the fungicides in a soil with no previous history of any pesticide input. Field and laboratory studies demonstrated the ease of stimulation by pre-treatment with even very low concentrations of the fungicides (0·5 μg g−1 soil) and at a range of temperatures and soil moisture conditions. Soils that had acquired full enhanced degradation could rapidly degrade fungicide applied at 30 times the recommended field rate. Cross-enhancement of degradation was noted with both fungicides, but not with their common metabolite, 3,5-dichloroaniline. Application of the antibiotics chloramphenicol or rifampicin to soil reduced enhanced degradation to control levels; cycloheximide had no effect. This, together with the inhibitory action of azide, mercuric chloride and repetitive microwaving, indicated that the agent(s) of enhanced degradation was probably bacterial.  相似文献   
9.
采用菌丝生长速率法,测定了11种杀菌剂对杨梅褐斑病菌的离体抑菌活性,结果表明,嘧菌酯的抑制活性最强,EC50值为0.96 mg/L;百菌清的活性最弱,EC50值为69.24 mg/L;其余药剂的抑制活性依次为吡唑醚菌酯>氟硅唑>腈菌唑>抑霉唑>戊唑醇>咪鲜胺>喹啉铜>代森锰锌>多菌灵,EC50值在3.25~68.73 mg/L之间。林间试验结果表明,嘧菌酯对杨梅褐斑病具有很好的控制效果,其防效显著优于喹啉铜和多菌灵。进一步的研究结果表明,供试100株杨梅褐斑病菌对嘧菌酯的EC50值在0.15~2.17 mg/L之间,呈近似正态的连续分布,其平均EC50值为0.97?.22 mg/L,可作为该病菌对嘧菌酯的敏感性基线,用于田间抗药性监测。  相似文献   
10.
采取南丰75个和衢州41个柑橘园土壤及叶片,对样品中铜和锰的含量进行分析。结果表明:南丰和衢州柑橘园土壤有效铜均表现为过量。其中,南丰土壤有效铜平均含量为3.00mg/kg,铜过量比例为85.3%;衢州土壤有效铜含量平均为3.68 mg/kg,铜过量比例为95.1%。南丰柑橘园土壤有效锰含量平均为7.41 mg/kg,缺乏比例为22.7%,适量比例为77.3%;衢州柑橘园土壤锰含量平均为7.21 mg/kg,缺乏比例为26.8%,适量比例为73.2%。南丰和衢州柑橘叶片铜含量均表现为过量。其中,南丰柑橘叶片铜含量平均为54.68mg/kg,过量比例为98.7%;衢州柑橘叶片铜含量平均为51.49mg/kg,过量比例为95.1%。南丰柑橘叶片锰含量平均为117.78 mg/kg,过量比例为78.7%;衢州柑橘叶片锰含量平均为99.79 mg/kg,过量比例仅为2.4%,其余均为适量。  相似文献   
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