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1.
河南省番茄灰霉病菌对3种杀菌剂的抗药性检测   总被引:2,自引:0,他引:2  
为了明确河南省番茄灰霉病菌对苯并咪唑类杀菌剂多菌灵、二甲酰亚胺类杀菌剂腐霉利和氨基甲酸酯类杀菌剂乙霉威的抗药性状况,2013年从河南省不同保护地中采集番茄灰霉病病果或病叶,经单孢分离共获得番茄灰霉病菌菌株139株。采用最低抑制浓度法(MIC)测定了其对多菌灵、腐霉利和乙霉威的抗药性。结果显示:番茄灰霉病菌对多菌灵、腐霉利和乙霉威产生抗性菌株的频率分别为81. 29%、80.58%和93.53%; 所测菌株对3类杀菌剂的抗性类型有BenRDicSNPCS、BenRDicRNPCS、BenRDicSNPCR、BenSDicRNPCR、BenSDicSNPCR和BenRDicRNPCR 6种,所占比例分别为2. 88%、3.60%、3.60%、5.04%、13.67%和71. 22%。表明河南省番茄灰霉病菌已对多菌灵、腐霉利和乙霉威产生抗药性,迫切需要筛选新的杀菌剂防治番茄灰霉病。  相似文献   

2.
采用最低抑制浓度法(MIC)和菌落直径法,对采自山西晋中、晋南、晋东南和晋北4个地区的188个灰霉病菌株对3种杀菌剂的抗性表现型和稳定性进行了测定,旨在了解灰霉病菌的抗药性状况和预测其抗性发展趋势。结果表明:对多菌灵的抗性表现型可分为敏感(S)、低抗或中抗(RM)和高抗(R),对腐霉利和乙霉威可分为敏感(S)和抗性(R)。以对多菌灵、腐霉利和乙霉威的抗性为序,检测出8种不同类型的抗性表现型,即RRR、RRS、RSR、RSS、RMRS、RMSR、RMSS 和SSR。各表现型的分布频率随各地区用药历史和水平的不同而变化,并与抗性监测结果相一致。对55个不同抗性表现型的单孢菌株的稳定性测定结果表明:继代无药培养10代后,以RRR和RSS型表现最稳定,而其余类型菌株均不同程度发生了变异,尤其是RMSS和RMRS型菌株100%发生了变异,抗性表现型不稳定的菌株占52.7%。对多菌灵的抗性变化趋势是由敏感向低抗、再向高抗发展;对腐霉利的抗性变化主要是由抗性转变为敏感;而对乙霉威的抗性则相对比较稳定。  相似文献   

3.
番茄叶霉病菌对多菌灵、乙霉威及代森锰锌抗性检测   总被引:11,自引:4,他引:11       下载免费PDF全文
报道了番茄叶霉病菌Fulvia fulva对多菌灵、乙霉威及代森锰锌的敏感性基线,以及抗性频率和抗性水平。离体条件下,多菌灵、乙霉威及代森锰锌对番茄叶霉病菌敏感菌株的平均EC50值分别为0.101、2.475、9.067 μg/mL;最低抑制浓度(MIC)值分别为0.5、5、50 μg/mL 。山西晋南地区番茄叶霉病菌对3种杀菌剂的抗性频率最高,分别达到97.4%、70.5%、98.7%;山西吕梁地区与太原地区相对较低,但该病菌对3种杀菌剂的抗性频率也都超过了30%。辽宁沈阳、山东寿光、河北保定番茄叶霉病菌对多菌灵的抗性频率均为100%;对乙霉威的抗性频率前两地为100%,保定为10%;对代森锰锌的抗性频率都超过90%。所有抗性菌株对多菌灵均属于高抗类型,抗性指数超过5000,测不出MIC值;对乙霉威有50%的高抗菌株,抗性指数在100以上;对代森锰锌各地均未发现高抗菌株,低抗和中抗菌株所占比例较大,其抗性指数集中在50左右。对多菌灵与乙霉威具有双重抗性的菌株占测试菌株总数的49.9%,并且首次在田间发现了对3种杀菌剂都具有抗性的番茄叶霉病菌多抗菌株。  相似文献   

4.
北京地区番茄灰霉病菌的多重抗药性检测   总被引:5,自引:0,他引:5  
2009年12月-2010年5月,在北京12个郊区县采集番茄病标样150份,分离纯化得到109个灰葡萄孢(Botrytis cinerea)单孢菌株,用最低抑制浓度法(MIC)测定了其对苯并咪唑类(多菌灵)、二甲酰亚胺类(腐霉利)和氨基甲酸酯类(乙霉威)杀菌剂的抗药性。结果表明:番茄灰霉病菌对多菌灵、腐霉利和乙霉威产生抗性菌株的频率分别为96.3%、80.7% 和58.7%;所测菌株对3类杀菌剂的抗性类型有BenRDicSNPCS、BenSDicSNPCR、BenRDicRNPCS和BenRDicRNPCR 4种,所占比例分别是19.3%、3.7%、21.1%和56.0%,表明北京地区番茄灰霉病菌对苯并咪唑类、二甲酰亚胺类和氨基甲酸酯类三类杀菌剂的抗药性严重,在生产中需慎用,应选择一些替代的新型杀菌剂和生物农药。  相似文献   

5.
设施蔬菜灰霉病菌对不同类型杀菌剂的抗性检测   总被引:14,自引:8,他引:14  
为了明确设施蔬菜灰霉病菌Botryotinia fuckeliana的抗药性现状,采用菌丝生长速率法检测了20052006年采自浙江、江苏、山东和辽宁4省的144个菌株对6种常用防治药剂的敏感性。结果表明,灰霉病菌对百菌清已经产生了低水平的抗性,频率为5.56%,其对多菌灵的抗性非常严重,总的抗性频率为43.05%,高抗(HR)频率为27.08%;乙霉威的EC50值在0.137728.9μg/mL之间,平均为40.06μg/mL。其中多菌灵-乙霉威双抗频率为36.11%,且首次检测到了两种新的双抗类型。二甲酰亚胺类杀菌剂在生产上已经应用近20年,但灰霉病菌对异菌脲和腐霉利只有频率为20%左右的低水平抗性,没有检测到高抗菌株;苯胺嘧啶类杀菌剂嘧霉胺虽然只应用几年时间,但已经产生了抗性,其抗性菌株频率为4.16%。研究表明,设施蔬菜灰霉病菌对常用的6种防治药剂均产生了不同程度的抗性。  相似文献   

6.
番茄叶霉病菌对多菌灵抗药性的诱导及抗性菌株特性研究   总被引:8,自引:0,他引:8  
采用紫外线诱导及药剂驯化两种方法对番茄叶霉病菌的目标菌株进行多菌灵抗性诱导,分别经7、9代诱导后获得抗性突变体。突变体菌株的EC50均大于500μg/mL,达高抗水平。突变体菌株与自然抗性菌株无药继代培养10代后,抗性程度没有明显变化。与亲本菌株比较,突变体菌株菌落生长速率、产孢量及产毒量有所下降。室内交互抗性测定表明:多菌灵与苯菌灵、菌核净及克霉灵之间具有正交互抗性,与瑞毒霉、扑海因及速克灵无交互抗性。乙霉威对多菌灵的高抗菌株表现负交互抗性或无交互抗性,但对敏感菌株不表现负交互抗性。  相似文献   

7.
番茄叶霉病菌异菌脲抗药性突变体的诱导与生物学性状   总被引:2,自引:1,他引:1  
测定了苯并咪唑类杀菌剂敏感-乙霉威抗性(BenS-DieR)、苯并咪唑类杀菌剂抗性-乙霉威敏感(BenR-DieS)和苯并咪唑类杀菌剂抗性-乙霉威抗性(BenR-DieR)3种类型的番茄叶霉病菌Cladosporium fulvum菌株对不同类型药剂的敏感性。结果表明,蕃茄叶霉病菌对供试药剂的敏感性与其对苯并咪唑类杀菌剂及乙霉威的敏感性无关。根据药剂对3类菌株EC50值的平均值, 16种杀菌剂抑制菌丝生长的活性依次为腐霉利>乙烯菌核利>异菌脲>戊唑醇>百菌清>嘧霉胺>醚菌酯>代森锰锌>8-羟基喹啉铜>丙环唑>苯醚甲环唑>嘧菌酯>灭锈胺>烯酰吗啉>烟酰胺>三唑酮;抑制孢子萌发的活性依次为醚菌酯>腐霉利>百菌清>乙烯菌核利>灭锈胺>8-羟基喹啉铜>异菌脲>代森锰锌>嘧菌酯>烟酰胺>嘧霉胺>戊唑醇>丙环唑>苯醚甲环唑>三唑酮>烯酰吗啉。通过紫外诱变共获得17株抗异菌脲突变体,突变频率为4.5×10-7。其中低抗、中抗和高抗菌株分别占 17.65%、70.59%和11.75%。这些突变体对腐霉利和乙烯菌核利表现交互抗性,对苯并咪唑类、脱甲基抑制剂(DMIs)、QoIs等药剂的敏感性与亲本菌株之间没有显著性差异,与亲本菌株在生长、产孢、致病能力等方面也无显著差异,但对渗透胁迫的敏感性要显著高于亲本。  相似文献   

8.
为明确山东省胶东地区葡萄白腐病菌Coniella diplodiella对抑霉唑的敏感性及抑霉唑与常规杀菌剂之间的交互抗性,采用菌丝生长速率法测定葡萄白腐病菌对抑霉唑等杀菌剂的敏感性,并通过分析抑霉唑与戊唑醇、吡唑醚菌酯、福美双、多菌灵、代森锰锌毒力的相关性,判断抑霉唑与各药剂之间是否存在交互抗性。结果表明,供试69株葡萄白腐病菌菌株对抑霉唑的EC50在0.13~55.53 μg/mL之间,最高值与最低值相差427.15倍;其频数分布图呈多峰曲线,第一主峰内EC50平均值为6.34 μg/mL,可作为胶东地区葡萄白腐病菌对抑霉唑的敏感基线。与敏感基线相比,田间已出现抑霉唑低抗菌株,占检测总株数的8.70%,未检测到中、高抗菌株。选择3个抗性菌株连续继代培养10代后,其对抑霉唑的敏感性明显提高,说明其抗药性不能稳定遗传。抑霉唑EC50对数值与戊唑醇、吡唑醚菌酯、福美双、多菌灵、代森锰锌的EC50对数值之间的相关系数分别为0.799、-0.143、-0.089、-0.268和0.159,说明抑霉唑与戊唑醇存在一定的交互抗性,但与其他4种药剂之间不存在交互抗性。表明抑霉唑可用于胶东地区田间葡萄白腐病的有效防控。  相似文献   

9.
本文采用单孢分离法对四川汉源和山东烟台等地采集的樱桃果实进行了采后灰霉病的病原菌分离和鉴定;采用区分剂量法分别测定了菌株对苯并咪唑类杀菌剂甲基硫菌灵、乙霉威和二甲酰亚胺类杀菌剂腐霉利的敏感性,并进一步分析了抗药性菌株的分子机制。结果表明,分离得到的54株樱桃采后灰霉病菌均为灰葡萄孢Botrytis cinerea,对甲基硫菌灵的总抗性频率高达79.6%,其中甲基硫菌灵抗性-乙霉威敏感 (BEN R1) 菌株频率为 25.9%;甲基硫菌灵-乙霉威双重抗性菌株 (BEN R2) 频率为53.7%;检测到腐霉利抗性菌株 (DCF R) 9 株,频率为16.7%。甲基硫菌灵抗性菌株在β-tubulin基因上的突变共有2种类型: BEN R1抗性菌株中,第198位密码子发生点突变 (GAG→GCG),编码氨基酸由Glu (E)突变成缬氨酸Ala (A);在BEN R2抗性菌株中,第198位密码子发生点突变 (GAG→GTG),编码氨基酸由Glu (E)突变成缬氨酸Val (V)。DCF R菌株在BcOS1的第365位密码子由ATC突变成AAC或AGC,导致编码的氨基酸由异亮氨酸Ile (I)突变成天冬酰胺Asn (N)或丝氨酸Ser (S)。本研究表明樱桃采后灰霉病菌对甲基硫菌灵和腐霉利存在不同程度抗性,应在加强抗药性监测的同时与其他类型杀菌剂交替使用,延缓抗药性发展。  相似文献   

10.
不同类型杀菌剂对灰葡萄孢菌菌株的离体、活体毒力测定结果表明 ,苯并咪唑类的多菌灵、甲基硫菌灵之间 ,二甲酰亚胺类的腐霉利、异菌脲、菌核净之间表现交互抗性 ;苯并咪唑类和 N -苯氨基甲酸酯类乙霉威表现有负交互抗性趋势。离体测定中 ,对不同类型菌株以吡咯类杀菌剂咯菌腈 (EC50 200mg/ L) ,咯菌腈以及甾醇抑制剂戊唑醇、氟硅唑和丙环唑均表现出较高的活性。  相似文献   

11.
灰霉菌的抗药性与适合度测定   总被引:12,自引:2,他引:10  
室内监测了北京、沈阳、保定等地区番茄灰霉菌 (Botrytis cinerea)对不同杀菌剂的抗药性 ,发现抗多菌灵菌株占监测总数的 74 .6 7% ,抗乙霉威菌株占 2 5.82 % ,还监测到 3株抗多菌灵、乙霉威菌株——即双抗菌株 ;利用菌落直径法和番茄叶片法测定了 3种抗药类型的番茄灰霉菌在离体和活体条件下的适合度 ,结果表明 ,不同抗药类型菌株在生长速率、致病力、繁殖力等方面差异不明显。  相似文献   

12.
After nitrosoguanidine- or UV-mutagenesis, three different benzimidazole-resistant phenotypes were isolated on media containing benomyl or a mixture of carbendazim and diethofencarb from wild-type strains of Botrytis cinerea Pers. ex Fr. and Ustilago maydis (D.C.) Corda. Mutants of B. cinerea with moderate (MBr) or low (LBr) resistance to benzimidazoles and high resistance to diethofencarb (Dr) were isolated from the fungicide-mixture-containing medium in low frequency (7–1 × 10?8). Only benzimidazole-resistant strains highly sensitive to diethofencarb (HBrDs) were identified on benomyl-containing medium at a frequency of 6.6 × 10?6. Fitness-determining characteristics such as sporulation, germination and germ-tube elongation, were found to be reduced significantly in the mutants of B. cinerea that were resistant to both benzimidazoles and diethofencarb. However, pathogenicity of a MBrDr mutant strain on cucumber seedlings was equal to that of the wild type and a carbendazim + diethofencarb mixture was found to control grey mould caused by the wild type, but was not effective when the plant cotyledons were infected by the mutant strain. Three benzimidazole-resistant phenotypes (HBrDs, HBrDr, MBrDr) were isolated easily in U. maydis from a benomyl-containing medium. In contrast with B. cinerea, only one-tenth of the benzimidazole-resistant strains were sensitive to diethofencarb. Genetic analysis of benzimidazole resistance in U. maydis showed that the three benzimidazole-resistant phenotypes were due to three allelic mutations in a single gene and one of them was responsible for the negative cross-resistance between benzimidazoles and diethofencarb.  相似文献   

13.
The molecular basis of resistance to benzimidazole fungicides with laboratory and field mutant isolates of Botrytis cinerea was investigated. After chemical mutagenesis with N-methyl-N-nitrosogouanidine (NMNG) two different benzimidazole-resistant phenotypes were isolated on media containing carbendazim or a mixture of carbendazim and diethofencarb. The mutant isolates from the fungicide-mixture-containing medium were moderately resistant to carbendazim with wild-type tolerance to diethofencarb while mutant isolates from carbendazim-containing medium were highly resistant to carbendazim but sensitive to diethofencarb. The studied field isolates were highly resistant to benzimidazoles and sensitive to diethofencarb. Study of fitness characteristics of benzimidazole highly-resistant isolates showed that the resistance mutation(s) had no apparent effect on fitness-determining parameters. Contrary to this, the moderately benzimidazole-resistant strains, with no increased diethofencarb sensitivity, had a significant reduction in certain ecological fitness-determining characteristics. Analysis of the sequence of the β-tubulin gene revealed two amino acid replacements in the highly benzimidazole-resistant mutants compared to that of the wild-type parent strain. One was the glutamic acid (GAG) to alanine (GCG) change at position 198 (E198A), identified in both laboratory and field highly benzimidazole-resistant isolates, a mutation previously implicated in benzimidazole resistance. The second was a novel benzimidazole resistance mutation of glutamic acid (GAG) to glycine (GGG) substitution at the same position 198 (E198G), identified in a highly benzimidazole-resistant laboratory mutant strain. Molecular analysis of the moderately benzimidazole-resistant strains revealed no mutations at the β-tubulin gene. A novel diagnostic PCR-RFLP assay utilising a BsaI restriction site present in the benzimidazole-sensitive (E198) but absent in both resistant genotypes (E198G and E198A) was developed for the detection of both amino acid replacements at the β-tubulin gene.  相似文献   

14.
Forty-nine greenhouses of vegetable crops were surveyed in southeast Spain at the beginning of the disease season in December 1992 to estimate frequencies of resistance to benzimidazoles, dicarboximides and N -phenylcarbamates (NPC) in B. cinerea . Out of 261 isolates collected, 28% were sensitive to both benzimidazoles and dicarboximides, 15% were benzimidazole-resistant and dicarboximide-sensitive, 8% were benzimidazole-sensitive and dicarboximide-resistant and 46% were benzimidazole- and dicarboximide-resistant. Resistance to benzimidazole, dicarboximide and N -phenylcarbamate was determined by measuring the ability of each isolate to grow in the presence of carbendazim, procymidone and diethofencarb fungicides respectively. Carbendazim- or procymidone- resistant isolates were found in all surveyed greenhouses. Three isolates were found with resistance to carbendazim, procymidone and diethofencarb collected in two adjacent greenhouses that were sprayed with the carbendazim and diethofencarb mixture. All other isolates were sensitive to the mixture because they were either sensitive to carbendazim and resistant to diethofencarb or vice versa. Fitness of 31 isolates of B. cinerea was determined in vivo by measuring their sporulation and lesion growth rate on leaf disks. No fitness costs were associated with resistance to iprodione (dicarboximide) and benomyl (benzimidazole). Isolates with EC50 values higher than 101 mg/L for benomyl and 1.6 mg/L for iprodione were considered to be field resistant (they caused visible lesions on cucumber leaf disks treated with each fungicide).  相似文献   

15.
In Botrytis cinerea, multidrug resistant (MDR) strains collected in French and German vineyards were tested in vitro, at the germ-tube elongation stage, towards a wide range of fungicides. Whatever the MDR phenotype, resistance was recorded to anilinopyrimidines, diethofencarb, iprodione, fludioxonil, tolnaftate and several respiratory inhibitors (e.g., penthiopyrad, pyraclostrobin). In MDR1 strains, overproducing the ABC transporter BcatrB, resistance extended to carbendazim and the uncouplers fluazinam and malonoben. In MDR2 strains, overproducing the MFS transporter BcmfsM2, resistance extended to cycloheximide, fenhexamid and sterol 14α-demethylation inhibitors (DMIs). MDR3 strains combined the overexpression of both transporters and exhibited the widest spectrum of cross resistance and the highest resistance levels. The four transport modulators, amitriptyline, chlorpromazine, diethylstilbestrol, and verapamil, known to affect some ABC transporters, were tested in B. cinerea. In our experimental conditions, the activity of several fungicides was only enhanced by verapamil. Interestingly, synergism was only recorded in MDR2 and/or MDR3 isolates treated with tolnaftate, fenhexamid, fludioxonil or pyrimethanil, suggesting that verapamil may inhibit the MFS transporter BcmfsM2. This is the first report indicating that a known modulator of ABC transporters could also block MFS transporters.  相似文献   

16.
Treatments with dicarboximide fungicides provided only 20 to 40% control of grey mould on grape (cv. Moscato d'Asti) in vineyards where benzimidazole and dicarboximide resistant strains ofBotrytis cinerea Pers. constituted about 50% of the fungal population and a high disease pressure existed. The percentage of dicarboximide resistant strains increased after treatment. Fungicide combinations of a benzimidazole with diethofencarb, sprayed twice per season or once alternated with a dicarboximide, provided satisfactory control of grey mould and decreased the percetage of benzimidazole resistant strains. A combination of thiram and procymidone controlled grey mould, but increased dicarboximide resistance in the population.  相似文献   

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