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1.
氰烯菌酯对禾谷镰孢菌的生物活性及其内吸输导性研究   总被引:4,自引:3,他引:4  
氰烯菌酯(2-氰基-3-氨基-3-苯基丙烯酸乙酯,JS399-19) 是一种对禾谷镰孢菌具有专化活性的新型杀菌剂。研究表明,该药在离体条件下对禾谷镰孢菌Fusarium graminearum抗多菌灵菌株及野生敏感菌株的菌丝生长均有很高的抑制活性,平均EC50值分别为0.117±0.036和0.107±0.020 μg/mL 。氰烯菌酯不能抑制禾谷镰孢菌的分生孢子萌发,但能引起抗多菌灵菌株及敏感菌株的分生孢子萌发后的芽管畸形。活体条件下,氰烯菌酯灌根处理对小麦赤霉病有一定防效,在叶片间的输导性较差,不能被小麦穗颈吸收;该药在同一张叶片上仅表现为向上输导,对处理部位的下部几乎没有防效。用400 μg/mL氰烯菌酯和400 μg/mL多菌灵穗部喷雾处理前1 、2 、3 d接种禾谷镰孢菌分生孢子,氰烯菌酯对小麦赤霉病的防效分别为95%、75%和62%;处理后1 、2 、3 d 接种,防效分别为88%、78%和73%,而对照药剂多菌灵的防效较差。说明氰烯菌酯对小麦赤霉病有优异的保护和治疗作用,在禾谷镰孢菌对多菌灵已产生抗性的地区,氰烯菌酯可以作为一种很好的替代药剂用于防治小麦赤霉病。  相似文献   

2.
为评估引起小麦茎基腐病的病原菌假禾谷镰孢Fusarium pseudograminearum对氰烯菌酯的抗性风险,对5株敏感菌株进行了室内药剂驯化,获得33株抗性突变体,突变频率为16.5%,其对氰烯菌酯的抗性水平范围为7.39~1 665.76倍,3株表现低抗,4株表现中抗,26株表现高抗;发现在myosin-5基因上存在11种抗性突变类型,其中217位的丝氨酸突变为亮氨酸(S217L)、420位的谷氨酸突变为赖氨酸(E420K)和135位的丙氨酸突变为苏氨酸(A135T)为主要突变类型,其比例分别为45.5%、15.2%和9.1%。S217L型抗性突变体的产孢量显著下降,菌丝生长速率和致病力与亲本菌株无显著差异。E420K型抗性突变体的菌丝生长速率和致病力显著下降,产孢量与亲本菌株无显著差异。A135T型抗性突变体的菌丝生长速率和产孢量与亲本菌株无显著差异。研究结果表明假禾谷镰孢在药剂选择压力下易形成氰烯菌酯的抗性群体,对氰烯菌酯存在中到高等的潜在抗性风险,其myosin-5的点突变与其对氰烯菌酯的抗性相关。  相似文献   

3.
为明确琥珀酸脱氢酶抑制剂类新型吡啶酰胺杀菌剂氟唑菌酰羟胺在中国小麦赤霉病防治中的应用潜力,分别采用菌丝生长速率法和孢子萌发法,测定了氟唑菌酰羟胺对湖北省6个地区106株禾谷镰孢菌的室内毒力、田间防效及其与多菌灵和氰烯菌酯的交互抗性。结果显示:氟唑菌酰羟胺对106株禾谷镰孢菌菌丝生长的EC50值为 (0.018 0 ± 0.209 0) mg/L,平均值为 (0.072 8 ± 0.025 9) mg/L;对分生孢子萌发的EC50值为 (0.052 7 ± 0.473 2) mg/L,平均值为 (0.176 0± 0.059 6) mg/mL;且其EC50值频率分布均呈单峰曲线,因此可分别将菌丝生长和孢子萌发的平均EC50值作为禾谷镰孢菌对氟唑菌酰羟胺的敏感性基线。初步的交互抗性测定结果表明,抗多菌灵或氰烯菌酯的菌株对氟唑菌酰羟胺均未表现出抗性。田间试验显示,氟唑菌酰羟胺有效剂量200 g/hm2处理的防效 (超过90.0%) 显著高于对照药剂氰烯菌酯600 g/hm2的防效 (78.0%),与空白对照相比增产效果在127%~135%之间。经氟唑菌酰羟胺处理后,小麦籽粒中由禾谷镰孢菌产生的毒素脱氧雪腐镰刀菌烯醇 (DON) 的含量比空白对照降低了55.09%。研究表明,氟唑菌酰羟胺对禾谷镰孢菌呈现出较高的室内活性且田间防效优越,同时还能降低小麦籽粒中DON毒素的含量及提高小麦产量,因此可作为生产中防治小麦赤霉病的替代或后备药剂,同时也可考虑用作为禾谷镰孢菌对多菌灵抗性治理的替代药剂。  相似文献   

4.
 本文报道了禾谷镰孢菌(Fusarium graminearum)对氰烯菌酯(2-氰基-3-氨基-3-苯基丙烯酸乙酯,JS399-19)的敏感性基线及其抗药性风险。离体条件下氰烯菌酯对51个禾谷镰孢菌菌株的平均EC50和MIC值分别为(0.153±0.050)μg/mL和小于4.0μg/mL;通过紫外线照射和药剂驯化的方法获得了14个禾谷镰孢菌对氰烯菌酯的抗药性突变体,紫外光诱变抗药性突变频率为1.67×10-7。这些突变体的抗性水平可分为低、中、高3种类型,其EC50分别为1.5~15.0μg/mL、15.1~75.0μg/mL和75.0μg/mL以上。与亲本菌株2021相比,抗药突变体间的菌丝生长量和产生子囊壳能力发生不同程度的增加或下降,而分生孢子繁殖量则显著下降。在无药培养基上菌丝体转代培养8次后,抗药水平保持不变,且与亲本菌株有相同的致病性。所测定的突变体在含1%葡萄糖的PDA上菌丝生长除UV-2021-4显著下降外,其余都表现生长速率比亲本显著增加。在含3%和4%葡萄糖的PDA上2021生长优于亲本菌株。氰烯菌酯与苯并咪唑类、麦角甾醇生物合成抑制剂类、甲氧基丙烯酸酯类、二硫代氨基甲酸盐类和取代芳烃类杀菌剂没有交互抗性。  相似文献   

5.
杀菌剂对玉米穗腐病菌的毒力及毒素产生的影响   总被引:2,自引:1,他引:2  
为筛选防治玉米穗腐病同时减少病原菌毒素积累的化学药剂,采用菌丝生长速率法、涂布平板法分别测定了4种药剂多菌灵、百菌清、吡唑醚菌酯和氰烯菌酯对玉米穗腐病的3种主要致病镰孢菌拟轮生镰孢菌、层出镰孢菌和禾谷镰孢菌菌丝生长和孢子萌发的影响,并采用高效液相色谱法测定了4种药剂对其毒素积累的影响。结果表明:层出镰孢菌菌株127-1和禾谷镰孢菌菌株125-3的最佳产毒时间为第10天。供试4种药剂对3种镰孢菌菌丝生长的EC50值范围为0.18~5.71μg/m L,对孢子萌发的EC50值范围为0.02~8.14μg/m L,均表现出一定的抑制作用。但对3种镰孢菌产伏马毒素、玉米赤霉烯酮和脱氧雪腐镰孢菌烯醇的影响不尽相同,吡唑醚菌酯浓度在1~500μg/m L时能够抑制拟轮生镰孢菌和层出镰孢菌产生伏马毒素,氰烯菌酯能够在0.05~0.8μg/m L浓度范围内显著抑制禾谷镰孢菌产生玉米赤霉烯酮,当多菌灵浓度为0.05~0.5μg/m L时,几乎可以完全抑制禾谷镰孢菌产生脱氧雪腐镰孢菌烯醇。  相似文献   

6.
嘧菌酯对番茄早疫病菌的抑制作用   总被引:5,自引:3,他引:2  
采用菌丝生长速率法和孢子萌发法分别测定了嘧菌酯对番茄早疫病菌Alternaria solani菌丝生长的抑制作用及其对分生孢子萌发的影响,同时测定了其对菌丝呼吸速率的影响。结果表明,嘧菌酯抑制番茄早疫病菌分生孢子萌发的作用强于对菌丝生长的抑制作用。抑制菌丝生长的剂量-反应曲线与抑制菌丝呼吸的剂量-反应曲线趋势相似,但菌丝在经嘧菌酯处理5~7 h后呼吸速率恢复到对照水平,相比之下,嘧菌酯却能一直抑制菌丝的生长。因此,采用孢子萌发法测定番茄早疫病菌对嘧菌酯的敏感性比用菌丝生长速率法测定更为适宜。水杨肟酸与嘧菌酯在抑制番茄早疫病菌菌丝生长和分生孢子萌发方面有协同作用,对菌丝生长的平均协同系数为7.24。随处理时间延长,药剂对菌丝耗氧的抑制作用下降,但仍抑制菌丝生长。研究表明:呼吸作用对药剂的敏感性随着处理的延长而下降的机理不是因为旁路氧化途径增强, 也不是因为基质中药剂效力的下降,而是存在其它机制。  相似文献   

7.
本文通过孢子萌发检测、平板生长抑制法和果实病害防治试验,测定了淡紫紫孢菌Purpureocillium lilacinus PL36-1防治储藏期番茄果实灰霉病的效果。结果表明,菌株PL36-1发酵滤液不仅能够抑制灰葡萄孢分生孢子萌发和芽管伸长,而且可以抑制灰葡萄孢菌丝生长。对峙培养的菌株PL36-1显著抑制灰葡萄孢的菌丝生长,菌丝生长抑制率可达到74.45%,菌株PL36-1产生的挥发性物质也对灰葡萄孢菌丝生长有一定的抑制作用。菌株PL36-1发酵液处理樱桃番茄果实后,能有效控制番茄果实灰霉病的发生,含有2×10~8孢子/m L的发酵液10 d的防治效果达70.64%。  相似文献   

8.
啶菌噁唑对番茄灰霉病菌的抑菌作用研究   总被引:3,自引:2,他引:1  
采用生物测定方法研究了啶菌噁唑对番茄灰霉病菌Botrytis cinerea不同发育阶段的影响。结果表明:其对菌落扩展、芽管伸长、分生孢子产生和菌核形成均具有显著的抑制活性,其中啶菌噁唑对P-9菌株菌丝生长和芽管伸长的EC50值分别为0.193和0.154 μ g/mL,0.5 μ g/mL的啶菌噁唑对菌丝生长和芽管伸长的抑制率大于77%,对分生孢子和菌核萌发的抑制率分别低于10%和40%,表明药剂对分生孢子萌发无明显抑制作用。紫外吸收分析显示,啶菌 NFDA1 唑可破坏细胞的膜结构,促使菌体核酸和蛋白外渗。离体叶片毒力测定结果表明,120 μ g/mL的啶菌 NFDA1 唑可有效抑制番茄灰霉病病斑扩展,抑制率达83.74%。  相似文献   

9.
为明确山东省辣椒炭疽病菌对吡唑醚菌酯的敏感性,延缓其抗性发展及降低防治成本,在该省主要辣椒产区采集并经单孢分离获得175株尖孢炭疽复合种,采用菌丝生长速率法和孢子萌发法测定了病原菌群体对吡唑醚菌酯的敏感性,同时测定了吡唑醚菌酯与甲基硫菌灵、多菌灵、代森锰锌、戊唑醇和咯菌腈5种杀菌剂分别混用对尖孢炭疽复合种的联合毒力。结果表明:吡唑醚菌酯对尖孢炭疽复合种菌丝生长和孢子萌发的EC50值范围分别为0.056~0.530和0.002~0.027 μg/mL,平均值为(0.273 ± 0.067)和(0.014 ± 0.019)μg/mL,其敏感性频率分布呈连续单峰曲线,符合正态分布,可作为田间抗性监测的敏感基线;不同采集地菌株对吡唑醚菌酯的敏感性存在一定差异,其中采自菏泽市的菌株敏感性最高,而采自潍坊市的菌株敏感性最低;吡唑醚菌酯与甲基硫菌灵按体积比1:3和3:1复配,对抑制尖孢炭疽复合种的菌丝生长和分生孢子萌发均表现为增效作用,其中按体积比1:3混用时增效作用最明显,增效系数分别是4.82和3.94。结果可为吡唑醚菌酯的合理使用提供理论依据。  相似文献   

10.
主要由假禾谷镰孢Fusarium pseudograminearum引起的茎基腐病是小麦上的重要病害,对产量及质量都有严重影响,目前尚无登记应用在该病害防治上的化学药剂。本研究从河南省17个地市采集病害样本,分离纯化得到82株小麦茎基腐病菌菌株,包括76株假禾谷镰孢和6株禾谷镰孢。嘧菌酯抑制76株假禾谷镰孢孢子萌发的EC50值为0.02~1.54 μg/mL,平均EC50值为 (0.33 ± 0.29) μg/mL;经数据异常值检验,舍弃异常菌株LHWY-6及SQYC-6后,嘧菌酯对74株 (97.37%) 正常菌株的平均EC50值(0.30 ± 0.24) μg/mL可作为假禾谷镰孢对嘧菌酯的敏感性基线;不同地市菌株间敏感性存在差异,同一地市菌株间对嘧菌酯的敏感性差异较大,许昌、焦作、洛阳和商丘4市的菌株间敏感性差异倍数均在20.00以上,南阳、三门峡和开封3地的菌株间差异倍数均在2.00以下,其他地市菌株间差异倍数在2.70~12.00之间;假禾谷镰孢孢子萌发对嘧菌酯与其对丙硫菌唑、多菌灵、咯菌腈、氰烯菌酯、吡唑醚菌酯和戊唑醇的敏感性相比,除吡唑醚菌酯外其余5种药剂的抑制作用均弱于嘧菌酯;嘧菌酯对6株禾谷镰孢的EC50值在0.10~0.42 μg/mL之间,平均EC50值为 (0.19 ± 0.12) μg/mL;嘧菌酯对两种镰孢菌丝生长的抑制活性均较弱,EC50都在7 μg/mL以上。离体条件下,15%嘧菌酯悬浮种衣剂在260 g/(100 kg种子) 剂量下防效达63.64%;温室盆栽时,在220 g/(100 kg种子) 剂量下防效为55.24%。嘧菌酯对小麦茎基腐病菌孢子萌发有明显的抑制作用,且在离体和温室条件下对病害均有很好的防治效果,可作为备选药剂推广使用。  相似文献   

11.
The fungicide JS399-19 is a novel cyanoacrylate fungicide active against Gibberella zeae , and has been marketed in China for control of fusarium head blight (FHB) on wheat. Forty-three isolates sensitive to fungicide JS399-19 were collected from three commercial wheat fields in China. Forty-five isolates resistant to JS399-19, obtained from five sensitive isolates by selection for resistance to JS399-19, were selected. Three sensitivity levels were identified: sensitive (S), moderately resistant (MR) and highly resistant (HR) to JS399-19, based on a previous study. Eight isolates representing the three sensitivity-level phenotypes were randomly selected for a study on the inheritance of JS399-19 resistance by analysing the sensitivity of hybrid F1 progeny. A nitrate-non-utilizing mutant ( nit ) was used as a genetic marker to confirm that individual perithecia were the result of outcrossing. Five crosses were assessed: S × S, S × HR, MR × HR, HR × HR and MR × S. In crosses between parents with different sensitivity levels, such as S × HR, MR × HR and MR × S, the progeny fitted a 1:1 segregation ratio of the two parental phenotypes. No segregation was observed in the crosses S × S and HR × HR. It was concluded that the MR and HR phenotypes in G. zeae were conferred by different allelic mutations within the same locus. In these isolates, resistance to JS399-19 was not affected by modifying genes or cytoplasmic components.  相似文献   

12.
JS399-19 (2-cyano-3-amino-3-phenylancryic acetate), a novel cyanoacrylate fungicide, has powerful inhibition against Fusarium species, especially to Fusarium graminearum. Treated with JS399-19, mycelium of F. graminearum was distorted and swelled. The embranchment increased. In order to investigate the effect of JS399-19 on protein expression of F. graminearum, total protein of F. graminearum cultured in normal condition and that treated with 0.5 μg/mL (EC90 value) JS399-19 were extracted respectively and proteomic analysis was performed using two-dimensional gel electrophoresis. The expression levels of 38 proteins varied quantitatively at least twofold. 33 proteins out of the 38 were successfully identified by MALDI-TOF-MS/MS and MASCOT. According to the classification of physiological functions from Conserved Domain Database analysis, 19, 5, 2, 3, 2 and 2 proteins were respectively associated with metabolism, regulation, motility, defense, signal transduction, and unknown function, which indicated that energy metabolism, the synthesis and transport of proteins and DNA of F. graminearum were inhibited by JS399-19 in different degrees. The expression levels of the genes were further confirmed by quantitative real-time PCR analyses. This study represents the first proteomic analysis of F. graminearum treated by JS399-19 and will provide some useful information to find the mode of action of the fungicide against F. graminearum.  相似文献   

13.
The baseline sensitivity ofFusarium graminearum Schwade [teleomorph =Gibberella zeae (Schweinitz) Petch] to the fungicide JS399-19 (development code no.) [2-cyano-3-amino-3-phenylacrylic acetate] and the assessment of risk to JS399-19 resistancein vitro are presented. The mean EC50 values for JS399-19 inhibiting mycelial growth of three populations of wild-typeF. graminearum isolates were 0.102±0.048, 0.113±0.035 and 0.110±0.036 μg ml−1, respectively. Through UV irradiation and selection for resistance to the fungicide, we obtained a total of 76 resistant mutants derived from five wild-type isolates ofF. graminearum with an average frequency of 1.71 × 10−7% and 3.5%, respectively. These mutants could be divided into three categories of resistant phenotypes with low (LR), moderate (MR) and high (HR) level of resistance, determined by the EC50 values of 1.5–15.0 μg ml−1, 15.1–75.0 μg ml−1 and more than 75.0 μg ml−1, respectively. There was no positive cross-resistance between JS399-19 and fungicides belonging to other chemical classes, such as benzimidazoles, ergosterol biosynthesis inhibitors and strobilurins, suggesting that JS399-19 presumably has a new biochemical mode of action. Although the resistant mutants appeared to have comparable pathogenicity to their wild-type parental isolates, they showed decreased mycelial growth on potato-sucrose-agar plates and decreased sporulation capacity in mung bean broth. Nevertheless, most of the resistant mutants possessed fitness levels comparable to their parents and had MR or HR levels of resistance. As these studies yielded a high frequency of laboratory resistance inF. graminearum, appropriate precautions against resistance development in natural populations should be taken into account. http://www.phytoparasitica.org posting August 7, 2008.  相似文献   

14.
 研究表明,旁路氧化作用能够降低辣椒炭疽菌对嘧菌酯的敏感性。离体培养条件下,旁路氧化在辣椒炭疽菌野生菌株的孢子萌发中提供大于95倍生理功能的补偿作用;在菌丝生长中提供20~35倍的补偿作用。但在接种前用嘧菌酯处理辣椒,旁路氧化作用并不明显,嘧菌酯对辣椒炭疽病有良好的保护、治疗、铲除和抗产孢作用。用嘧菌酯处理过的病斑产生的分生孢子萌发活力和致病力下降。炭疽菌离体下的菌丝耗氧率测定表明,10μg/mL嘧菌酯处理1 h对菌丝呼吸耗氧有良好的抑制作用,其抑制效果随药剂浓度提高而略有增加。随处理时间延长,药剂对菌丝耗氧的抑制作用下降,但仍然抑制菌丝生长。研究证明:延长处理时间,呼吸作用对药剂的敏感性下降的机理不是因为旁路氧化途径增强,也不是因为基质中药剂效力的下降,而是存在其它机制。  相似文献   

15.
为明确不同发育阶段小麦赤霉病菌对甾醇生物合成抑制剂类(SBIs)杀菌剂的敏感性差异及杀菌剂的作用方式,对4种SBIs类杀菌剂进行了室内毒力测定及田间药效试验。室内毒力测定结果表明:不同发育阶段小麦赤霉病菌对4种SBIs类药剂的敏感性存在较大差异,其敏感性由高到低依次为菌丝生长阶段和产孢阶段芽管伸长阶段孢子萌发阶段;其中,戊唑醇对菌丝生长、产孢、芽管伸长和孢子萌发阶段的EC50值分别为0.686、0.191、3.532和3.825μg/m L,咪鲜胺分别为0.063、0.305、0.827和36.581μg/m L,苯醚甲环唑分别为0.873、3.659、5.687和79.465μg/m L,烯唑醇分别为1.961、33.658、41.881和54.986μg/m L。显微观察4种SBIs类杀菌剂对小麦赤霉病菌菌丝生长和孢子萌发形态的影响,发现杀菌剂处理后菌丝末端分枝增多,新生菌丝伸长受阻,菌丝体局部膨大,有时可见菌丝及芽管的消解。田间试验结果表明:用量为有效成分100 g/hm2的戊唑醇、200 g/hm2的咪鲜胺和200 g/hm2的苯醚甲环唑对小麦赤霉病的保护效果为77.15%~79.26%,治疗效果为70.64%~72.77%,于发病前后使用均可有效防治该病害。  相似文献   

16.
爵床提取物对辣椒炭疽病菌的抑制作用及其苗期防效   总被引:1,自引:0,他引:1  
爵床(J usticia procumbens L.)是一种传统的中药材.为探明爵床提取物对辣椒炭疽病菌的抑制作用,采用生长速率法和孢子萌发法分别测定了爵床提取物对辣椒炭疽病菌菌丝生长、孢子产生和孢子萌发的抑制作用,采用苗期盆栽试验观察爵床提取物对辣椒炭疽病的防治效果.结果表明,爵床甲醇提取物可抑制辣椒炭疽病菌菌丝生长、孢子产生和孢子萌发,其活性随着浓度的提高而增强,抑制中浓度分别为4.23、2.16和2.98 mg/mL.通过对爵床提取物处理后病菌孢子萌发形态显微观察,发现病菌孢子芽管长度受到明显抑制甚至不能萌发.当提取物浓度为16mg/mL时对苗期辣椒炭疽病的防效达73.08%.  相似文献   

17.
海洋细菌L1-9菌株对小麦的促生防病作用研究   总被引:3,自引:0,他引:3  
采用平板对峙法和打孔法测定了海洋细菌L1-9菌株对小麦根腐叶枯病菌Bipolaris sorokiniana和小麦赤霉病菌Fusarium graminearum的抑制作用,结果表明:L1-9菌株及其发酵液对两种病原真菌的菌丝生长和分生孢子萌发均有明显的抑制作用.种子发芽试验和盆栽试验结果表明:L1-9菌株发酵液和无菌发酵液分别处理小麦种子后,能显著提高小麦种子的发芽率、发芽势、出苗率以及小麦幼苗的株高、根长和干重,促进小麦幼苗的生长.该菌株对小麦根腐叶枯病和小麦赤霉病具有较好的防病效果,发酵液的防效分别达到82.00%和73.84%,发酵液的抑菌防病作用显著高于无菌发酵液.  相似文献   

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