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1.
为明确番茄绵疫病菌对嘧菌酯的敏感性,采用菌丝生长速率法测定了2018—2019年从江西省番茄主产区采集分离得到的58株绵疫病菌Phytophthora capsici对嘧菌酯的敏感性,并以敏感菌株YD5为亲本,通过紫外线诱导获得了4株抗性突变体,研究了突变体的生物学性状;进而采用菌丝生长速率法测定了敏感菌株YD5及其4个抗性突变体对烯酰吗啉和甲霜灵的EC50值,分析嘧菌酯与烯酰吗啉和甲霜灵是否存在交互抗性。结果表明:嘧菌酯对绵疫病菌菌丝生长有较强的抑制作用,其对58个绵疫病菌的EC50值介于0.1867~1.6239 μg/mL之间,平均EC50值为 (0.8606±0.3318) μg/mL,58个菌株对嘧菌酯的敏感性频率分布呈正态分布,表明番茄绵疫病菌对嘧菌酯仍然较为敏感。通过紫外线诱导获得4个抗性突变体,突变体的抗药性能够稳定遗传,且在致病力与游动孢子萌发率方面与亲本菌株无显著差异,产孢量较亲本菌株显著下降。嘧菌酯与烯酰吗啉和甲霜灵之间均不存在交互抗药性。研究表明,番茄绵疫病菌对嘧菌酯具有中等抗性风险,一旦田间出现抗性菌株,应立即采取措施控制菌群的转移扩散。同时,需加强番茄绵疫病菌对嘧菌酯的田间抗性监测,在生产过程中轮用或混用不同作用机制的药剂,以避免或延缓抗药性的发展。  相似文献   

2.
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   

3.
嘧菌酯对三种蔬菜病害的毒力、防效及安全性研究   总被引:10,自引:1,他引:10  
采集未施用过甲氧基丙烯酸酯类杀菌剂地区的番茄早疫病菌Alternaria solani、辣椒炭疽病菌Collecterichum capsica、黄瓜霜霉病菌Pseudoperonospora cubensis,于室内测定嘧菌酯对该3种病菌的毒力,结果分别为:对早疫菌的EC50值为8.617 6 μg/mL,对炭疽菌的EC50值为5.634 5 μg/mL,对霜霉菌的EC50值为0.004 9 μg/mL;连续两年在田间使用3个不同剂量的嘧菌酯防治上述3种病菌,均得到了80%以上的良好防效;室内盆栽番茄、辣椒、黄瓜的不同品种,于不同的生长时期,喷施不同浓度的嘧菌酯,500 μg/mL浓度下未见药害。本研究表明,连续使用3次嘧菌酯即可有效控制病害的发展,而且对作物安全性高。  相似文献   

4.
黄瓜霜霉病菌对嘧菌酯的敏感基线研究   总被引:12,自引:2,他引:10  
从山东、河北、武汉等未使用过甲氧基丙烯酸酯类杀菌剂(strobilurins)的地区采集19个黄瓜霜霉病菌 Pseudoperonospora cubensis 样本,采用叶盘漂浮法室内测定新药剂嘧菌酯(azoxystrobin)对该病菌的毒力,其EC50值范围为11.72×10-5~9.340×10-3 μg/mL。在19个菌系中选择最为敏感的河北定兴菌系进行重复测定,将其EC50平均值2.317×10-4 μg/mL 确定为黄瓜霜霉病菌对嘧菌酯的敏感基线。  相似文献   

5.
浙江省柑橘绿霉病菌对嘧菌酯的敏感性研究   总被引:1,自引:0,他引:1       下载免费PDF全文
采用孢子萌发法和生长速率法测定了2000~2006年间采自浙江衢州、杭州、金华、丽水的65个柑橘绿霉病病菌Penicillium digitatum菌株对嘧菌酯的敏感性。结果表明:嘧菌酯对供试菌株 孢子萌发和菌丝生长的EC50值均呈单峰分布,分别介于0.020 1 ~0.260 0 μg/mL和0.005 3 ~0.079 4 μg/mL 之间,平均值分别为0.042 6 μg/mL 和0.025 0 μg/mL。敏感性频次分析结果表明,该65个菌株孢子萌发和菌丝生长对嘧菌酯的敏感性频率分布均符合正态分布,其EC50平均值0.042 6±0.030 4 μg/mL 和0.025 0±0.012 9 μg/mL可分别作为柑橘绿霉病菌孢子萌发和菌丝生长对嘧菌酯的敏感基线。  相似文献   

6.
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   

7.
蔬菜灰霉病菌对腐霉利抗药性变异及其治理   总被引:4,自引:0,他引:4  
蔬菜灰霉病菌(Botrytis cinerea)分生孢子经紫外光灯照射,可获得10^-4~10^-5频率的腐霉利抗药性突变体。获得的13个抗性突变体的抗性水平平均EC50值为18.45ug/ml,EC90值为305.17ug/ml。抗性突变体的可溶性蛋白谱带比其亲本敏感菌株多2~4条,其中Rf=0.38的蛋白谱带是抗性菌株所拥有而敏感菌株所共同缺乏的。抗性菌株对腐霉利抗药性稳定遗传,具有与亲本菌株相同的致病性。苗期抗、感测定结果表明,灰霉克杀菌剂对腐霉利突变体具有明显的克抗作用。田间抗性菌治理使用灰霉克400~800倍对大棚番茄灰霉病平均防效为95.93%~75.8%,优于腐霉剂600倍的平均防效(61.32%)。  相似文献   

8.
研究了采自浙江衢州地区,包括柯城区、衢江区和开化县12个贮藏库的70个柑橘绿霉病菌Penicillium digitatum菌株对抑霉唑和多菌灵的抗性频率、抗性水平及其抗性分子机制。结果表明:柯城区和衢江区的抑霉唑抗性菌株(最低抑制浓度MIC≥0.5 μg/mL)的比例分别为77.1%和62.5%,两地抗性菌株的平均EC50值分别为2.07±1.04 μg/mL和2.35±0.73 μg/mL,分别是当地敏感菌株EC50值的41.4和47.0倍;而采自开化县的菌株均对抑霉唑敏感(MIC≤0.1 μg/mL),平均EC50值为0.04±0.02 μg/mL。柯城区和衢江区的多菌灵抗性菌株(MIC≥10 μg/mL) 的比例分别为54.3%和54.2%,而开化县的抗性菌株比例仅为9.1%。即来自柯城和衢江两个柑橘主产区的绿霉病菌群体对抑霉唑和多菌灵的抗性频率均远高于非柑橘主产区的开化县群体,说明抗药性群体的形成与药剂使用历史有关。进一步研究发现,衢州地区柑橘绿霉病菌对抑霉唑的抗性均属于IMZ-R3型,即与抑霉唑靶标基因 CYP51B 启动子区的插入突变有关,而对多菌灵的抗性则与 β-微管蛋白基因的992位核苷酸点突变(T→A)导致对应的200位点的氨基酸突变(F→Y)有关。  相似文献   

9.
水稻稻瘟病菌对烯肟菌胺的抗性风险评估及抗性机制初探   总被引:2,自引:0,他引:2  
 采用菌丝生长速率法测定了100株采自我国主要水稻产区的水稻稻瘟病菌对烯肟菌胺的敏感性, 结果表明, 其EC50分布于0.011 1~0.295 6 μg·mL-1, 平均EC50=(0.078 6±0.056 1) μg·mL-1。供试菌株对烯肟菌胺的敏感性分布呈单侧峰曲线, 未出现抗药性亚群体, 可将该曲线作为稻病瘟菌对烯肟菌胺的敏感性基线。通过室内药剂驯化获得了7株抗药突变体, 突变频率为1.11×10-4, 其中2株高抗突变体NJ0811-I和A10的抗性水平大于1 000倍, 抗药性性状能稳定遗传, 致病力显著弱于其亲本菌株;5株低抗突变体抗性水平在2.05~4.55倍之间, 抗药稳定性差, 适合度与亲本无显著性差异。交互抗药性结果表明, 烯肟菌胺与嘧菌酯存在正交互抗药性, 与田间防治稻瘟病常用药剂稻瘟灵、异稻瘟净无交互抗药性。综合分析表明, 稻瘟病菌对烯肟菌胺可能存在低到中等抗性风险。进一步克隆了抗药突变体及其亲本的cytb基因, CYTB氨基酸序列比对结果表明, 2株高抗突变体均在143位由甘氨酸突变为丝氨酸(G143S), 建立了高抗菌株的AS-PCR分子检测方法;而5株低抗突变体cytb基因未发生点突变, 推测可能存在其他的抗性分子机制。  相似文献   

10.
小麦赤霉病菌对多菌灵的抗药性研究   总被引:11,自引:0,他引:11  
测定了1976 年从江苏南京采集的54 株小麦赤霉病菌菌株对多菌灵的敏感性,EC50值在0. 2617~ 0. 6544 μg. mL - 1 之间, 1983 年在同一地点采集的76 株, EC50 值相应为0. 2517~ 0. 7050 μg. mL- 1 , 而1998 年从浙江、湖北、上海、福建、安徽、江苏各地采集的104 株菌株EC50值为0. 2478~ 6. 4574 Lg. mL- 1 , 表明湖北、上海、浙江等地田间已检测到小麦赤霉病菌抗多菌灵菌株。紫外光诱导分生孢子也获得了该病菌抗多菌灵突变株, 其EC50 值为14. 1993 Lg. mL - 1 。抗药性突变体JPR 与敏感亲本菌株JPS 相比, 在菌丝生长、产孢量方面无明显差异, 但JPR 孢子萌发率为57. 1% , 而JPS 为100% , 而且50% 孢子萌发的时间较野生亲本菌株滞后12 h。JPR 产生脱氧雪腐镰刀菌烯醇(DON 毒素) 3. 90 μg mL - 1 , 而JPS 产生的DON 毒素为9. 28μg. mL - 1 。  相似文献   

11.
 通过研究致病疫霉对缬菌胺抗性突变体的生物学特性,评估致病疫霉对缬菌胺产生抗性的风险。采用菌丝生长速率法检测田间菌株对缬菌胺的敏感性;通过比较抗性突变体在无药条件下继代培养前后对缬菌胺的敏感性来确定其抗性稳定性;采用离体叶片法测定抗性突变体及其亲本敏感菌株的适合度和竞争力;通过量化7个基本抗性因素的风险值评估致病疫霉对缬菌胺的基本抗性风险。结果表明:在2018年从内蒙、河北、贵州、四川、黑龙江等五省(自治区)采集分离的153个菌株和2019年从河北、内蒙采集分离的40个菌株中低抗菌株分别占31.4%和35.0%,敏感菌株分别占68.6%和65.0%,抗性指数均为0.34,抗性倍数分别为1.5和2.1,未发现中抗和高抗菌株;8个抗性突变体在无药条件下继代培养10代后,少数抗性突变体的抗药性不能稳定遗传;6个抗性突变体的适合度均显著低于其亲本敏感菌株;4个抗性突变体与其亲本菌株的孢子囊不同比率混合物分别在离体叶片上继代培养1、3、7代的抗性频率显著低于初始抗性频率或与初始抗性频率无显著差异;致病疫霉对缬菌胺7个基本抗性因素的风险值之和为9,推测致病疫霉对缬菌胺的基本抗性风险为低至中等。建议加强致病疫霉菌群体对缬菌胺的抗性监测,将缬菌胺与不同作用机理的杀菌剂交替或混合使用,以延缓抗药性产生和发展。  相似文献   

12.
由灰葡萄孢(Botrytis cinerea Pers.)引起的草莓灰霉病是严重危害草莓的病害之一。为了解草莓灰霉病菌对杀菌剂嘧菌酯的抗性情况,本研究针对2012年从国内10省市采集和分离的134株草莓灰霉病菌菌株,利用特异性引物BcAR-F/BcAR-R扩增其cytb基因的部分序列,进行了嘧菌酯抗性的分子检测;对检测出的抗性菌株在嘧菌酯浓度分别为22.4、112和224μg·mL~(-1)的含药培养基上进行抗性验证;此外,还比较了抗性菌株与敏感菌株主要生物学性状的差异。结果表明,有54个菌株对嘧菌酯表现抗性,均属于中等抗性水平,占检测总数的40.3%,分布于北京市、湖北、江苏、河北、辽宁和四川各省;对15个抗性菌株cytb基因的序列分析表明,其第143位发生突变,由甘氨酸变为丙氨酸;对随机选取的4株抗性菌株和2株敏感菌株的适合度测定结果发现,抗性菌株和敏感菌株在最适生长温度、菌落生长速度、孢子萌发率方面没有表现出规律性差异,但抗性菌株的产孢量和致病力均显著低于敏感菌株。  相似文献   

13.
为明确我国山西、山东、河北和云南省葡萄霜霉病菌对烯酰吗啉的抗性以及田间病菌群体的适合度,本研究采用Taqman-MGB技术检测了2020年-2021年采自上述4省份292株葡萄霜霉病菌对烯酰吗啉的抗性频率;采用叶盘法测定了田间抗性菌株与敏感菌株的适合度。结果表明,上述4个地区的平均烯酰吗啉抗性频率及抗性等位基因频率分别为64.0%和74.7%,其中山东省蓬莱区最高(91.2%和96.3%),河北省廊坊市(73.8%和85.0%)和云南省宾川县(75.0%和82.6%)次之,山西省清徐县(16.7%和34.7%)最低。适合度分析发现,田间抗性菌株的产孢能力明显高于敏感菌株,但二者的复合适合度指数无显著差异。上述结果表明,4省份霜霉病菌群体均对烯酰吗啉产生了不同程度的抗性,田间抗性菌株与敏感菌株相比无明显适合度变化。  相似文献   

14.
六省市致病疫霉交配型及其对几种杀菌剂的敏感性   总被引:14,自引:1,他引:14  
测定了2000-2002年采自四川、重庆、吉林、黑龙江、福建、北京六省(市)致病疫霉菌株的交配型及其对几种杀菌剂的敏感性。结果显示,来自六省市的74个菌株中73株为典型的A1交配型,1株采自四川的菌株为可自育的A1交配型,未发现A2交配型。测定的37株代表菌中,对甲霜灵表现敏感、中抗、高抗的分别占27.0%、27.0%和46.0%。吉林、福建、黑龙江及重庆都存在高抗菌株。研究中还发现甲霜灵可促进部分抗性菌株的菌丝生长。随机抽取15个对甲霜灵表现敏感、中抗和高抗的菌株,测定其对几种杀菌剂的敏感性,结果全部对腈嘧菌酯和烯酰吗啉表现敏感;其中2株对丙酰胺表现敏感,11株表现中抗,2株表现高抗。结果也显示:烯酰吗啉和腈嘧菌酯与甲霜灵之间不存在交互抗性,具有应用潜力。  相似文献   

15.
Mutants of Phytophthora infestans with high resistance to the amidocarbamates iprovalicarb and benthiavalicarb and to the cyanoimidazole cyazofamid were isolated after UV-mutagenesis and selection on media containing one of the above fungicides. In vitro fungitoxicity tests showed that all resistant strains presented a highly reduced sensitivity to both cyazofamid and to the amidocarbamates. Cross-resistance studies with other oomycete fungicides from different chemical groups showed that the mutation(s) for resistance to iprovalicarb (IPV), benthiavalicarb (BVC) and cyazofamid (CZF) also greatly reduced the sensitivity of mutant strains to the phenylamide metalaxyl, acetamide cymoxanil, morpholine dimethomorph, benzamide zoxamide and to chlorothalonil. A lower reduction of sensitivity of mutant strains to the strobilurins azoxystrobin, kresoxim-methyl, pyraclostrobin and trifloxystrobin, azolones famoxadone and fenamidone and to antimycin A was observed. A resistance correlation was not apparent for the dithiocarbamate propineb and phenylpyridinamine fluazinam. Studies of fitness parameters in the wild-type and mutant strains of P. infestans showed that most resistant isolates had significantly reduced sporulation and sporangial germination, but not in the differentiation of sporangia into zoospores. Pathogenicity tests on tomato seedlings showed that most resistant isolates were significantly less pathogenic compared to the wild-type parent strain. However, experiments on the stability of the resistant phenotypes did not show a reduction in resistance when the mutants were grown for more than eleven generations on inhibitor-free medium. This is believed to be the first report of high level multi-drug resistance in fungal pathogens to chemically unrelated fungicides inhibiting different sites of cellular pathway.  相似文献   

16.
Qo-inhibiting fungicides act as respiration inhibitors by binding to the Qo center of cytochrome b. Sensitivities of fungi to Qo inhibitors can be influenced by the induction of alternative respiration or by mutational changes of the cytochrome b target site. Previous studies on both mechanisms in Magnaporthe grisea (Hebert) Barr were focused on the mycelial stage of the pathogen. The present study describes the expression and impact of both resistance mechanisms during the stage of conidia germination. In the absence of a host, alternative respiration provided a >500-fold rescue from azoxystrobin during the germination of conidia derived from four wild-type isolates of M. grisea. This rescue potential during conidia gemination was substantially more pronounced than for mycelial growth. However, the pronounced effectiveness of alternative respiration during conidia germination was not apparent when barley leaves were protected with azoxystrobin prior to inoculation with conidia. In a comparison of a wild-type strain and an alternative respiration-deficient mutant, azoxystrobin efficacies in suppressing symptom development differed by a factor of two, with full disease control achieved for both genotypes at 1 microg ml(-1) azoxystrobin. In contrast, conidia derived from two QoI-resistant target site mutants were highly resistant to azoxystrobin and trifloxystrobin and fully capable of infecting leaf surfaces protected with 10 microg ml(-1) of azoxystrobin. Both target-site mutants had emerged spontaneously in the presence of high azoxystrobin doses when residual mycelial growth was supported by alternative respiration. The effective silencing of alternative respiration in protective applications of Qo-inhibiting fungicides might constitute a strategy of slowing the emergence of highly resistant target site mutants.  相似文献   

17.
Zhu S  Liu P  Liu X  Li J  Yuan S  Si N 《Pest management science》2008,64(3):255-261
BACKGROUND: The oomycete fungicide flumorph is a recently introduced carboxylic acid amide (CAA) fungicide. In order to evaluate the risk of developing field resistance to flumorph, the authors compared it with dimethomorph and azoxystrobin with respect to the ease of obtaining resistant isolates to these fungicides, the level of resistance and their fitness in the laboratory. RESULTS: Mutants with a high level of resistance to azoxystrobin were isolated readily by adaptation and UV irradiation, and their fitness was as good as that of the parent isolates. Attempts to generate mutants of Pseudoperonospora cubensis (Burk. & MA Curtis) Rostovsev resistant to flumorph and dimethomorph by sporangia adaptation on fungicide-treated leaves were unsuccessful. However, moderately resistant mutants were isolated using UV mutagenesis, but their resistance level [maximum resistance factor (MRF) < 100] was much lower than that of the azoxystrobin-resistant mutant (MRF = 733). With the exception of stability of resistance, all mutants showed low pathogenicity and sporulation compared with wild-type isolates and azoxystrobin-resistant mutants. There is cross-resistance between flumorph and dimethomorph, suggesting that they have the same resistance mechanism. CONCLUSION: The above results suggest that the resistance risk of flumorph may be similar to that of dimethomorph but lower than that of azoxystrobin and can be classified as moderate. Thus, it can be managed by appropriate product use strategies.  相似文献   

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