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1.
选择对多菌灵、乙霉威和苯酰菌胺具有不同敏感性的胶孢炭疽菌Colletotrichum gloeosporioides、辣椒疫霉菌Phytophthora capsici及恶疫霉菌P. cactorum,分析其β-微管蛋白氨基酸突变与敏感性的关系。结果表明,胶孢炭疽菌对苯酰菌胺、多菌灵和乙霉威的敏感性与β-微管蛋白198位或200位氨基酸突变有关:对多菌灵敏感,对苯酰菌胺和乙霉威不敏感的胶孢炭疽菌β-微管蛋白氨基酸198位为谷氨酸(E),200位为苯丙氨酸(F);对多菌灵已产生抗性而对苯酰菌胺和乙霉威不敏感的菌株,其氨基酸200位由苯丙氨酸(F)突变为了酪氨酸(Y);对多菌灵高抗,对苯酰菌胺和乙霉威敏感的菌株其氨基酸198位由谷氨酸(E)突变为了丙氨酸(A)。辣椒疫霉菌和恶疫霉菌对苯酰菌胺敏感,对多菌灵和乙霉威均不敏感。检测疫霉菌菌株β-微管蛋白未发现氨基酸突变,但发现其β-微管蛋白氨基酸在196~200位与胶孢炭疽菌差异较大,这可能是导致苯酰菌胺仅对疫霉菌有抑制效果的原因。  相似文献   

2.
选择对多菌灵、乙霉威和苯酰菌胺具有不同敏感性的胶孢炭疽菌 Colletotrichum gloeosporioides、辣椒疫霉菌 Phytophthora capsici 及恶疫霉菌 P.cactorum,采用菌丝生长速率抑制法及氨基酸序列比对法分析了其 β-微管蛋白氨基酸突变与敏感性的关系。结果表明,胶孢炭疽菌对苯酰菌胺、多菌灵和乙霉威的敏感性与 β-微管蛋白198位或200位氨基酸突变有关:对多菌灵敏感、对苯酰菌胺和乙霉威不敏感的胶孢炭疽菌 β-微管蛋白氨基酸198位为谷氨酸(E),200位为苯丙氨酸(F);对多菌灵已产生抗性而对苯酰菌胺和乙霉威不敏感的菌株,其 β-微管蛋白氨基酸200位由苯丙氨酸(F)突变为了酪氨酸(Y);对多菌灵高抗、对苯酰菌胺和乙霉威敏感的菌株其 β-微管蛋白氨基酸198位由谷氨酸(E)突变为了丙氨酸(A)。辣椒疫霉菌和恶疫霉菌对苯酰菌胺敏感,对多菌灵和乙霉威均不敏感。检测疫霉菌菌株 β-微管蛋白未发现氨基酸突变,但发现其 β-微管蛋白氨基酸在196~200位与胶孢炭疽菌差异较大,这可能是导致苯酰菌胺仅对疫霉菌有抑制效果的原因。  相似文献   

3.
根据禾谷镰孢菌参考菌株NRRL31084(PH-1)的γ-微管蛋白基因核苷酸序列设计5对引物,采用PCR方法从禾谷镰孢菌(Fusarium graminearum)对多菌灵(MBC)的敏感菌株、室内诱导及田间多菌灵抗药性菌株中分段扩增测序,获得了γ-微管蛋白基因全序列.该基因全长1 868 bp,含有5个内元,编码一含493aa的多肽;与PH-1的γ-微管蛋白基因核苷酸序列同源性99%,存在10个差异核苷酸,与所编码的氨基酸序列同源性100%;与其它7种真菌的γ-微管蛋白基因所编码的氨基酸序列同源性为31%~72%.中国的2个敏感菌株和4个抗药菌株的γ-微管蛋白基因序列完全相同,认为多菌灵抗药性与该微管蛋白变异无关.  相似文献   

4.
 田间抗性监测发现了大麦云纹斑病菌新型的抗性菌株,这类菌株对苯并咪唑类(多菌灵)、Phenylcarbamate(乙霉威)及三唑类(三唑醇)表现多重抗性,先前发现的多菌灵抗药性菌株均是在β-维管蛋白基因的198位点出现等位基因的突变,而新发现的菌株则仅在200位点(TTC)由苯并氨酸转变成赖氨酸(TAC)而导致对3种药剂的抗性。温室试验证明,这类菌株的致病性和野生敏感菌的致病性几乎一致,说明大麦云纹斑病菌对杀菌剂抗药性的发展与致病性之间没有相关性。  相似文献   

5.
 本研究用真菌U-微管蛋白基因的通用寡聚核苷酸引物B1和B3,扩增并克隆了一段821 bp的小麦赤霉病菌Fusarium graminearum的U-微管蛋白基因片段,并进行了序列测定。根据该序列设计了F.graminearum U-微管蛋白基因的特异性测序引物,测定了赤霉病菌对多菌灵不同抗感菌株的U-微管蛋白基因核苷酸序列,结果表明不同F.graminearum菌株的U-微管蛋白的165,198,200和257位氨基酸未发生突变,在克隆的片段内也未发现核苷酸突变引起的氨基酸改变。表明该菌对多菌灵产生抗性的分子机制与目前已知的其它真菌有所不同,有待进一步研究。  相似文献   

6.
 根据禾谷镰孢菌参考菌株NRRL31084(PH-1)的γ-微管蛋白基因核苷酸序列设计5对引物,采用PCR方法从禾谷镰孢菌(Fusarium graminearum)对多菌灵(MBC)的敏感菌株、室内诱导及田间多菌灵抗药性菌株中分段扩增测序,获得了γ-微管蛋白基因全序列。该基因全长1 868bp,含有5个内元,编码一含493aa的多肽;与PH 1的γ-微管蛋白基因核苷酸序列同源性99%,存在10个差异核苷酸,与所编码的氨基酸序列同源性100%;与其它7种真菌的γ-微管蛋白基因所编码的氨基酸序列同源性为31%~72%。中国的2个敏感菌株和4个抗药菌株的γ-微管蛋白基因序列完全相同,认为多菌灵抗药性与该微管蛋白变异无关。  相似文献   

7.
为明确浙江省桐乡市发生的杭白菊叶枯病的病原菌,采用传统组织分离法对采集的病样进行病原菌分离,在测定其致病性的同时,结合形态学特征及基于核糖体内部转录间隔区(ITS)、nrDNA大亚基(LSU)和β-微管蛋白基因(TUB2)的联合系统发育分析对该病原菌进行鉴定,并测定其对多菌灵的抗性。结果表明,从杭白菊叶枯病病样中共分离到35株菌株,在回接试验中杭白菊表现出的症状与田间自然发病症状一致,证明分离到的菌株为引起杭白菊叶枯病的病原菌。该病原菌菌丝生长初期为淡黄色,后为灰白色;培养25 d后菌落上的黑色球形分生孢子器产生大量液体状的淡粉色分生孢子堆;分生孢子为单胞、无色、长椭圆形,大小(n=200)为2.8~4.9μm×1.2~3.0μm,初步判断该病原菌是茎点霉属Phoma真菌P. bellidis。基于ITS、LSU、TUB2联合系统发育分析的分子鉴定结果与形态学鉴定结果一致,确定引起该病害的病原菌为P. bellidis。该病原菌对多菌灵的抗性频率为94.3%,且全部为高水平抗性菌株,抗药性机制为其TUB2的E198A突变,即TUB2的第198位密码子从GAG突变为GCG,导致第198位氨基酸从谷氨酸(Glu)突变为丙氨酸(Ala)。  相似文献   

8.
利用实时荧光定量PCR 技术检测油菜菌核病菌   总被引:2,自引:0,他引:2  
 采用高通量实时荧光定量PCR 技术建立检测和监测油菜菌核病菌群体数量的方法。利用油菜菌核病菌(Sclerotiniasclerotiorum)的茁-微管蛋白基因内含子序列的特异性,设计引物对SclSF (5'-CTCAAATCTCCGAAAGTT -3') / SclAF (5'-TGCAGACGGGTAATATG -3'),建立和优化了SYBR Green 玉实时荧光定量PCR 检测体系。结果表明,该引物对能够从8种所测试的十字花科植物常见病原真菌中特异性扩增出油菜菌核病菌;所建立的实时定量PCR 技术可应用于油菜病叶和病茎中菌核病菌的早期检测及菌核病的预测预报。  相似文献   

9.
由禾谷镰刀菌Fusarium graminearum引起的小麦赤霉病(Fusarium head blight,FHB)是小麦、大麦、燕麦、黑麦等禾谷类作物的毁灭性病害。目前,生产上防治小麦赤霉病主要依靠化学药剂防治,多菌灵等苯并咪唑类杀菌剂使用较为广泛,其作用靶标为β微管蛋白。禾谷镰刀菌有2个β微管蛋白,通过分子对接结果发现β2微管蛋白第138位氨基酸位点可能为多菌灵结合位点。本研究对β2第138位丝氨酸位点进行突变研究,以明晰其生物学功能。结果表明Fgβ2S138A突变后禾谷镰刀菌对多菌灵的敏感性显著增加,EC50值由0.617 mg/L降至0.290 mg/L,但不影响对噻菌灵的敏感性,EC50值为0.950 mg/L左右,并且该突变不影响禾谷镰刀菌菌丝营养生长、无性繁殖、有性生殖和致病性。本研究结果可为多菌灵对小麦赤霉病的化学防治提供理论基础,在生产上具有一定指导意义。  相似文献   

10.
桃褐腐病菌对多菌灵抗性的AS-PCR检测技术   总被引:1,自引:0,他引:1  
罗梅  阴伟晓  罗朝喜 《植物保护》2020,46(6):136-143
由于杀菌剂的长期大量使用, 植物病原菌对杀菌剂抗性问题日趋突出, 严重影响病害防治的效果?褐腐病是一种在全世界范围内广泛发生和流行的重要果树病害?本文以桃褐腐病菌Monilinia fructicola为例, 基于已知的多菌灵抗性机理, 即靶标β微管蛋白基因TUB2的点突变E198A, 建立了一种桃褐腐病菌对多菌灵抗性的等位基因专化性PCR检测技术?结果表明, 碱基错配?内参引物?退火温度?dNTPs?Taq DNA聚合酶?专化性引物浓度及配比等因素均对检测效率有影响?经过对以上因素的优化, 并对优化后的检测技术进行专化性及灵敏度评价, 证实该检测技术能特异性地鉴别桃褐腐病菌M. fructicola对多菌灵抗性基因型E198A, 且检测灵敏度可达到4.342 pg/μL病菌DNA, 有望在实践中推广使用?  相似文献   

11.
陕西省小麦赤霉病菌对多菌灵敏感性研究   总被引:2,自引:0,他引:2  
 The mycelium growth rate method was used to test the sensitivity to carbendazim (MBC) at distinctive concentrations in 136 isolates of Fusarium graminearum from 19 counties of 6 districts in Shaanxi Province in 2008. The distinctive MBC concentration was 4 mg / L for testing of resistance and sensitivity. The results showed that average 50% effective concentration (EC50 ) of 136 tested sensitive isolates were (0. 908 6 ± 0. 062 3) mg / L. All the isolates were sensitive to MBC. The fungicide of MBC could be continually applied wheat production in Shaanxi.  相似文献   

12.
Venturia nashicola isolates with a high level of resistance to carbendazim showed either increased sensitivity or were resistant to theN-phenylformamidoxime compoundN-(3,5-dichloro-4-propynyloyphenyl)-N′-methoxyformamidine (DCPF). Isolates with an intermediate or low level of carbendazim resistance were resistant to DCPF. Increased sensitivity to DCPF was also associated with a high level of carbendazim resistance inBotrytis cinerea but not with a moderate resistance level. Increased sensitivity to DCPF was not observed in carbendazim resistant isolates ofGibberella fujikuroi.Binding of [14C]DCPF in cell-free mycelial extracts of the highly carbendazim-resistant and DCPF-sensitive isolate ofV. nashicola was higher than in those of DCPF-resistant isolates that were either highly-resistant, intermediately resistant, or weakly resistant to carbendazim or were sensitive to carbendazim. [14C]carbendazim binding in extracts of highly carbendazim-resistant isolates ofB. cinerea was lower than that in extracts of sensitive isolates, whereas [14C]DCFP binding was higher. A decreased [14C]carbendazim binding was also observed in extracts of carbendazim-resistant isolates ofG. fujikuroi, binding of [14C]DCPF, however, was similar in extracts of both carbendazim-resistant and sensitive isolates.  相似文献   

13.
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   

14.
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   

15.
申嗪霉素对油菜菌核病菌生物学活性的初步研究   总被引:3,自引:3,他引:0  
申嗪霉素是一种新型微生物源杀菌剂,主要成分为吩嗪-1-羧酸。测定了申嗪霉素对油菜菌核病菌菌丝生长的抑制作用。结果表明,申嗪霉素对油菜菌核病菌51个菌株菌丝生长的平均有效抑制中浓度(EC50值)为3.31±0.77 μ g/mL,并且与常规杀菌剂多菌灵、菌核净无交互抗性关系。离体叶片和田间药效试验表明,申嗪霉素对油菜菌核病的防治效果随其处理剂量增加而提高,用有效成分200 μ g/mL药液处理时,抑制离体叶片发病的效果可达到67.08%,田间防效可达83.29%,优于对照药剂异菌脲。  相似文献   

16.
Chen C  Wang J  Luo Q  Yuan S  Zhou M 《Pest management science》2007,63(12):1201-1207
BACKGROUND: Carbendazim (MBC) has failed to control wheat scab, caused by Fusarium graminearum Schwabe, on the eastern coast of China in recent years after about 30 years of application. RESULTS: MBC resistance was found to be common in pathogen populations on the eastern coast and along areas of the Yangtze River. EC(50) and minimum inhibitive concentration (MIC) values of MBC inhibiting mycelium growth of wild-type isolates were less than 0.9 and 1.4 microg mL(-1) respectively, while EC(50) values of resistant collections averaged 7.02 +/- 11.86 microg mL(-1). The slope of the MBC dosage-response curve (DRC) for resistant isolates of F. graminearum was flat: 1 < b < 2.8 for resistant isolates and 3.5 < b < 11 for sensitive isolates). Both field resistant and sensitive MBC strains shared similar temperature sensitivity, fitness and virulence on ears. Field resistant strains and UV-induced mutants showed positive cross-resistance to other benzimidazole derivatives and were mainly at intermediate MBC resistance level. Highly resistant field MBC strains rarely appeared, but only some of the highly resistant MBC UV mutants were insensitive to N-phenylaminecarbamates. No mutation in beta-tubulin was found in F. graminearum, in contrast to mutation in this tubulin which has led to MBC resistance in other plant pathogens. CONCLUSION: MBC(R) isolates have high fitness and competition in field, conferred by a novel molecular mechanism.  相似文献   

17.
三种甘薯病毒多重RT-PCR检测技术的建立   总被引:1,自引:0,他引:1  
本文根据GenBank中甘薯G病毒(SPVG)、甘薯卷叶病毒(SPLCV)和甘薯羽状斑驳病毒(SPFMV)外壳蛋白(CP)基因序列设计特异引物,对多重RT-PCR退火温度、延伸温度、模板浓度、引物浓度进行改良优化,建立能同时检测3种甘薯病毒的多重RT-PCR方法。该方法能同时扩增出SPVG、SPLCV和SPFMV特异片段,其大小分别是800、276和570bp。测序结果表明,扩增出的3种病毒序列与相应参考序列相似性达到98%以上。灵敏度分析结果表明,多重RT-PCR方法能够检测cDNA的量为0.1ng。应用建立的多重RT-PCR检测方法对田间样品进行检测,结果显示该方法可以特异、快速、灵敏地同时检测3种甘薯病毒。这些研究结果可为甘薯病毒检测提供参考。  相似文献   

18.
从海南5个芒果主产区采集分离芒果蒂腐病菌可可球二孢菌株,采用室内人工接种的方法对110个可可球二孢菌株进行致病力测定,采用区分剂量法和菌丝生长速率法测定其中106个菌株对多菌灵的抗性。结果表明:芒果蒂腐病自然发病率29.37%;人工接种的发病率100.00%,110株可可球二孢菌株中强致病力、中等致病力及弱致病力菌株分别占64.55%、25.45%和10.00%;在106株可可球二孢菌株中,抗性菌株发生频率为52.83%,其中高抗菌株可在含100 mg/L多菌灵培养基上生长,发生频率为45.28%,中抗菌株在含100 mg/L多菌灵培养基上不能正常生长,抗性频率为7.55%;没有发现低抗菌株。多菌灵对可可球二孢田间分离菌株EC50的频率分布为不连续分布,研究结果表明海南地区危害芒果的可可球二孢对多菌灵抗性非常严重。  相似文献   

19.
采用菌丝生长速率法测定了四霉素对采自山东省不同地区不同蔬菜作物的151株菌核病菌的毒力作用,同时比较了其对蔬菜菌核病菌不同生育阶段的抑制活性,并通过离体叶片法评价了四霉素对蔬菜菌核病的防治效果。结果表明:菌核病菌对四霉素比较敏感,敏感性频率呈单峰正态分布,151株病菌菌丝生长的平均EC50值为 (0.29 ± 0.01) μg/mL,该值可作为蔬菜菌核病菌对四霉素的敏感基线。此外,经四霉素处理后,该病菌的菌核数量以及干重明显降低,菌核明显变小;2 μg/mL的处理对菌核萌发的抑制率达到100.00%。 离体黄瓜叶片接种试验表明,四霉素对菌核病具有较好的保护和治疗效果,且保护作用较为显著。在质量浓度为20 μg/mL时,四霉素对该病的防效显著高于对照药剂多菌灵和异菌脲。因此,四霉素具有防治蔬菜菌核病的潜在价值,可进一步通过田间试验验证其应用效果。  相似文献   

20.
Cercospora species cause cercospora leaf blight (CLB) and purple seed stain (PSS) on soybean. Because there are few resistant soybean varieties available, CLB/PSS management relies heavily upon fungicide applications. Sensitivity of 62 Argentinian Cercospora isolates to demethylation inhibitor (DMI), methyl benzimidazole carbamate (MBC), quinone outside inhibitor (QoI), succinate dehydrogenase inhibitor (SDHI) fungicides, and mancozeb was determined in this study. All isolates were sensitive to difenoconazole, epoxiconazole, prothioconazole, tebuconazole, and cyproconazole (EC50 values ranged from 0.006 to 2.4 µg/ml). In contrast, 51% of the tested isolates were sensitive (EC50 values ranged from 0.003 to 0.2 µg/ml), and 49% were highly resistant (EC50 > 100 µg/ml) to carbendazim. Interestingly, all isolates were completely resistant to azoxystrobin, trifloxystrobin, and pyraclostrobin, and insensitive to boscalid, fluxapyroxad, and pydiflumetofen (EC50 > 100 µg/ml). The G143A mutation was detected in 82% (53) of the QoI-resistant isolates and the E198A mutation in 97% (31) of the carbendazim-resistant isolates. No apparent resistance mutations were detected in the succinate dehydrogenase genes (subunits sdhB, sdhC, and sdhD). Mancozeb completely inhibited mycelial growth of the isolates evaluated at a concentration of 100 µg/ml. All Argentinian Cercospora isolates were sensitive to the DMI fungicides tested, but we report for the first time resistance to QoI and MBC fungicides. Mechanism(s) other than fungicide target-site modification may be responsible for resistance of Cercospora to QoI and MBC fungicides. Moreover, based on our results and on the recent introduction of SDHI fungicides on soybean in Argentina, Cercospora species causing CLB/PSS are insensitive (naturally resistant) to SDHI fungicides. Insensitivity must be confirmed under field conditions.  相似文献   

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