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 从超微结构和细胞化学角度对大麦白粉病菌侵染诱导的寄主叶肉细胞变化进行了研究。结果发现,病原菌接种后12 h,叶肉细胞光合作用的标志性酶RCA和Rubisco含量发生迅速的变化,感病大麦(Ingrid)中RCA和Rubisco含量急剧减少,而抗病大麦(mlo-3)中则趋势相反。随后,不论在感病或抗病大麦中这2种蛋白的含量一直下降,但感病品种中一直维持相对较高水平。超微结构观察表明,病原菌侵染能够诱导侵染点附近叶肉细胞中叶绿体的增殖,新叶绿体的不断产生,从而延缓了叶肉细胞的衰老和死亡,增加了光合产物的形成。以上结果说明,叶肉细胞可能从养分供给上影响到了表皮细胞中病原菌吸器的发育。  相似文献   

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从小麦根部分离到6株代谢表面活性剂的菌株,比较各菌株排油性和抑菌性,结合PCR方法优选出一株具广谱抗菌性且含有srfA、fenA、ituBbacD等4个关键基因的细菌ZY-1。经BIOLOG生理生化试验测定和16S rDNA序列系统发育学分析,将其鉴定为蜡样芽孢杆菌。平板和盆栽试验结果显示,菌株ZY-1的发酵液对活体专性寄生菌小麦白粉菌的生防效果分别达到(97.94±1.25)%和(82.56±2.11)%,优于10 mg/L的三唑酮化学药剂(P<0.05)。组织学显微观察表明,菌株ZY-1发酵液对小麦白粉病菌的分生孢子萌发和吸器形成具有极显著的抑制作用。产脂肽细菌ZY-1是一株应用前景广阔的生防菌。  相似文献   

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采用离体叶段法,分别测定了从河北、河南、湖北、陕西和四川5省分离的53个小麦白粉病菌单孢菌株对苯菌酮和喹氧灵的敏感性,并分析了白粉病菌对三唑酮和苯菌酮以及喹氧灵之间的 交互抗性。结果表明:小麦白粉病菌群体对苯菌酮和喹氧灵的平均EC50值分别为(0.001 9±0.000 6) 和(0.013 1±0.002 0) mg/L,苯菌酮比喹氧灵具有更高的抑菌活性;小麦白粉病菌对三唑酮和苯菌酮与喹氧灵之间均不存在交互抗性(R2值分别为0.102 6和0.491 9);室内盆栽试验结果显示:接种前1 d和接种后1d施药,苯菌酮和喹氧灵对小麦白粉病的保护与治疗作用防效分别为92.21%、84.25%和82.43%、70.25%,表明这2种药剂不仅具有优异的保护作用,同时还具有较好的治疗作用。  相似文献   

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 20世纪70年代后期以来,小麦白粉病在我国小麦产区上升为主要病害,严重制约小麦生产。沿海北部及淮北地区,小麦白粉病常年发生4级左右。目前麦类白粉病的防治药剂主要有三唑类、嘧啶类、苯并咪唑类、甲氧基丙烯酸酯类及硫代氨基甲酸盐类等。但小麦白粉病菌变异快,繁殖迅速,以及药剂长期单一使用,造成小麦白粉病菌易产生抗药性。1995年我国小麦白粉菌对三唑酮的平均抗性水平在16.8倍以上。因而,急需寻找和开发替代三唑酮防治小麦白粉病的新型药剂。甲氧基丙烯酸酯类杀菌剂继三唑类杀菌剂后出现, 是一类内吸保护型杀菌剂,主要作用于真菌的线粒体呼吸链中细胞色素bc1复合物,阻止电子传递,抑制真菌生长。此类药剂于1996年投入德国市场,尚未在我国小麦白粉病防治上大量使用。  相似文献   

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为明确近年来陕西省小麦白粉菌Blumeria graminis f. sp. tritici群体毒性及遗传变异情况,利用32份已知抗白粉病基因小麦品种(系)对2013年和2014年陕西省小麦白粉菌群体毒性结构进行测定,并应用扩增片段长度多态性(amplified fragment length polymorphism,AFLP)标记对2014年陕西省西安市、咸阳市、渭南市、宝鸡市及陕西省毗邻的甘肃省天水市5个小麦白粉菌地理群体共118株白粉菌菌株进行遗传多样性分析。毒性监测结果显示,供试小麦白粉菌群体对Pm1c、Pm2、Pm3d、Pm4a、Pm4b、Pm5b、Pm13、Pm21、Pm24、Pm30、Pm2+6、Pm2+Mld、Pm2+6+?、Pm4b+5b、Pm4+?、Pm5+6的平均毒性频率在0~17.23%之间,表明这些基因抗性保持较好;对Pm1a、Pm3b、Pm3c、Pm3e、Pm3f、Pm7、Pm8、Pm19、Pm1+2+9的平均毒性频率介于69.17%~99.60%之间,表明这些基因抗性已丧失。用筛选出的6对AFLP标记共扩增出831个多态性位点,多态性位点百分比为94.86%;小麦白粉菌群体遗传多样性指数和香农信息指数分别为0.1151和0.2036,遗传变异主要来源于群体内变异。群体间基因流为4.7939,表明5个小麦白粉菌群体间基因交流广泛。群体间遗传距离和地理距离两者显著正相关。  相似文献   

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小麦白粉病菌有性生殖与自然群体交配型检测   总被引:1,自引:0,他引:1  
 本研究根据MAT1-1-1(GenBank登录号HQ171902)和MAT1-2-1(GenBank登录号HQ171899)的部分基因序列设计和筛选其特异性引物,使用PCR方法对2012年度采自四川、陕西、云南、贵州、河南、安徽、江苏、河北、山东和甘肃10个省30个采集地点共516个小麦白粉病菌菌株的交配型基因进行检测。结果显示30个采集地点两种交配型基因都能检测到,其中28个采集地的两种交配型菌株比例(MAT1-1-1 :MAT1-2-1)符合1:1。选择具不同交配型基因的小麦白粉病菌株配对接种,16个随机杂交组合都能产生闭囊壳。对获得的闭囊壳进行子囊孢子释放,均可获得子囊孢子。该研究结果为深入研究有性生殖对小麦白粉病菌株毒性多样性的作用奠定了基础。  相似文献   

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A field experiment with barley powdery mildew ( Blumeria graminis f.sp. hordei ) was designed in order to study how the time of arrival of inoculum in the field influenced pathotype frequencies in the resulting populations. Three isolates belonging to pathotypes that were absent or rare in the local aerial inoculum were used to inoculate field plots of winter barley cv. Plaisant. Two successive inoculations with different combinations of the three isolates were performed with an approximately two-generation delay, and frequencies of inoculated pathotypes were assessed four and nine generations after the first inoculation. Pathotypes of the first inoculated isolates generally persisted throughout the period of sampling; this is described as an 'early arrival' effect. During the epidemics the inoculated isolates were not replaced by isolates from the natural airborne inoculum. Pathotype frequencies depended mainly on the time of arrival of inoculum in the plot, but frequencies also depended on the isolate that had been inoculated. The most frequent isolate, GL1, belonged to the clonal lineage dominant in powdery mildew populations on winter barley in the north of France. These results confirmed that the composition of a powdery mildew population in a field is largely determined by the composition of the initial inoculum.  相似文献   

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新型杀菌剂苯噻菌酯的抑菌活性及生物学特性   总被引:2,自引:1,他引:1  
报道了新型Qo I类杀菌剂苯噻菌酯(试验代号Y5247)的生物学特性。在含50μg/m L水杨肟酸(SHAM)旁路氧化专化性抑制剂的AEA培养基上,该杀菌剂抑制水稻纹枯病菌、稻瘟病菌、油菜菌核病菌及草莓灰霉病菌菌丝生长的有效中浓度(EC50)分别为0.004、0.009、0.016和0.023μg/m L;其抑制辣椒炭疽病菌和草莓灰霉病菌孢子萌发的EC50值分别为0.448和0.019μg/m L。苯噻菌酯对防治小麦白粉病具有保护和治疗作用,EC50值分别为0.991和1.823μg/m L。其在小麦叶片上内吸输导性差,但具有一定的渗透性、良好的粘着性、耐雨水冲刷和较长的持效期。用有效成分为25μg/m L的苯噻菌酯药液喷雾处理的麦苗,14 d后接种小麦白粉病菌,其防效仍达72.48%。  相似文献   

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The genetics of the responses of the barley powdery mildew pathogen,Erysiphe graminis f.sp.hordei, to three morpholine-type fungicides were studied. Resistances to a phenylpropylamine fungicide, fenpropidin, and to a morpholine, fenpropimorph, co-segregated in crosses of a sensitive isolate, DH14, with each of two resistant ones, CC151 and CC152. In the cross CC151×DH14, the results were consistent with resistance to both fungicides being controlled by a single gene, at a locus namedFenl. In the other cross, CC152×DH14, the genetics of resistance were more complicated; the data were consistent with the segregation of two complementary, unlinked genes which each conferred resistance to both fungicides. Fenpropidin-resistant progeny of CC151×DH14 were significantly more resistant to fenpropimorph than were fenpropidin-resistant progeny of CCI 52×DH14, although the resistant progeny of the two crosses did not differ significantly in their level of fenpropidin resistance. Fenpropidin-resistant progeny of CC151×DH14 were significantly more resistant to another morpholine, tridemorph, than were fenpropidin-sensitive progeny, but this was not the case for CC152×DH14. Resistance to triadimenol, a C14 demethylation-inhibitor (DMI) fungicide, segregated in both crosses. Triadimenol resistance appeared to be controlled by one gene in each cross and was not associated with morpholine resistance. CC151×DH14 also segregated for eight avirulence genes. Two of these matched theMla6 resistance, while one gene matched a previously unknown resistance in a Pallas near-isogenic line, P17, which also carries a known resistance gene,Mlk. Fenl was not significantly linked to the triadimenol resistance gene,Tdl(a), or to any of the eight avirulence genes.Avr a6 1, Avr a12 ,Avr La ,Avr p17 andTdl(a) were linked, as wereAvr a 10 andAvr k .Abbreviations ED50 median effective dose - Fpd fenpropidin - Fpm fenpropimorph - PCA principal components analysis - Tdm tridemorph  相似文献   

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The influence of increasing nitrogen supply (30, 60, 120 and 240 mg N per pot) on susceptibility was studied on seedlings of six cultivars of spring barley inoculated with virulent isolates of powdery mildew. The colony density (CD) measured as colonies per cm2 was significantly increased with increasing application of nitrogen on all cultivars, and a significant interaction was found between N and cultivar. The different reactions of the cultivars could not be ascribed to lack of N uptake. In general, increasing N application enhanced the sporulation capacity of colonies (CSC) irrespective of increased CD and the cumulative production of spores per cm2 leaf (CSCM) increased strongly with N application in all cultivars. No interaction between N and cultivar was found for the latter component. The increase in CSCM closely corresponded with the increase in N content and fresh weight of uninoculated leaves. No interaction between N treatment and powdery mildew isolates was found for infection efficiency and spore production per colony, when tested on one cultivar. The N-induced changes in infection and sporulation can explain the main part of the increasing effect of N fertilization on powdery mildew development in the field. The results indicate that it may be possible to breed for or select barley cultivars with low N impact on powdery mildew development.  相似文献   

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采用全国统一的9个鉴别寄主离体叶片法鉴定侵染型和Gilmour八进制法命名小种,对2004--2008年采自东北春麦区的辽宁、黑龙江等省不同县市的298个小麦白粉病菌标样进行生理小种及毒力频率分析,并利用已知抗白粉病基因的22个小麦品种(系)对参试菌株进行毒力频率测定.结果表明:2004--2006年优势小种为生理小种15号,出现频率分别为13.7%、15.6%和20.3%;2007年优势小种为17号小种,出现频率为10.2%;2008年411号小种上升为优势小种,频率达20.6%;2004--2008年毒性基因V4b、V2+6、V4+8、V12、V16、V18、V20、V21、V22和V23毒力频率较低,在0~28.0%之间,其对应抗性基因Pm4b、Pm2+6、Pm4+8、Pm12、Pm16、Pm18、Pm20、Pm21、Pm22和Pm23抗性较强,可作为有效的抗病基因加以利用.  相似文献   

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Leaves of tomato and barley were inoculated with conidia of Blumeria graminis f. sp. hordei race 1 (R1) or Oidium neolycopersici (KTP-01) to observe cytological responses in search of resistance to powdery mildew. Both conidia formed appressoria at similar rates on tomato or barley leaves, indicating that no resistance was expressed during the prepenetration stage of these fungi. On R1-inoculated tomato leaves, appressoria penetrated the papillae, but subsequent haustorium formation was inhibited by hypersensitive necrosis in the invaded epidermal cells. On the other hand, KTP-01 (pathogenic to tomato leaves) successfully developed functional haustoria in epidermal cells to elongate secondary hyphae, although the hyphal elongation from some conidia was later suppressed by delayed hypersensitive necrosis in some haustorium-harboring epidermal cells. Thus, the present study indicated that the resistance of tomato to powdery mildew fungi was associated with a hypersensitive response in invaded epidermal cells but not the prevention of fungal penetration through host papilla.  相似文献   

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The disease development and population structure of Puccinia graminis f. sp. avenae, which causes stem rust on oats, were studied to investigate if sexual reproduction plays an important role in the epidemiology of the disease. The genetic population structure of P. graminis f. sp. avenae in Sweden was investigated by sampling 10 oat fields in July and August 2008 and seven fields during the same period in 2009. Nine single‐pustule isolates were first used to test simple sequence repeat (SSR) markers developed for P. graminis f. sp. tritici. Eleven of the 68 tested SSR markers were useful for genotyping P. graminis f. sp. avenae. For the main study, DNA from single uredinia was extracted and the SSR markers were used to genotype 472 samples. Both allelic and genotypic diversity were high in all fields, indicating that P. graminis f. sp. avenae undergoes regular sexual reproduction in Sweden. No significant relationship between genetic and geographic distances was found. Disease development was studied on two farms during 2008 and 2009. The apparent infection rates ranged between 0·17 and 0·55, indicating the potential for rapid disease development within fields. The incidence of oat stem rust has increased recently in Sweden. One possible explanation is a resurgence of its alternate host, barberry (Berberis spp.), after the repeal of the barberry eradication law in 1994. Barberry is present in several grain‐producing areas in Sweden, which supports the conclusion that P. graminis f. sp. avenae undergoes regular sexual reproduction there.  相似文献   

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Rust fungi like Puccinia graminis f. sp. tritici are known to change their cell wall properties upon entering the plant tissue. Immunohistochemistry revealed the cellular localization of two class III chitin synthase isoforms in rust mycelia developing on and in the host plant. Isoform IIIa is restricted to fungal infection structures growing on the surface of the plant, such as germ tubes and, predominantly, appressoria. Isoform IIIb is found exclusively in haustoria developed inside the plant. Thus, the rust fungus uses at least two chitin synthase isoforms with specialized functions in the differentiation of infection structures during the biotrophic plant-pathogen-interaction.  相似文献   

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2007-2009年,在甘肃天水对不同生态条件及海拔高度的小麦白粉病菌进行了闭囊壳形成率观察、模拟病圃试验及越夏调查,结果表明: 小麦白粉病菌有性时期最早在扬花期开始出现,不同抗性类型品种、不同生态条件下出现的迟早和形成量的多少有较大差异。小麦白粉病菌主要以分生孢子在天水市不同海拔高度的自生麦苗上越夏,是当地秋苗发病的初侵染源。二阴山区高海拔地区病叶率高于川道及低海拔地区。闭囊壳在正常年份只侵染自生麦苗,在整个侵染循环中仅起着间接作用。  相似文献   

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不同提取条件对葡萄叶提取物抑制两种病原菌活性的影响   总被引:1,自引:0,他引:1  
袁茜  周宝利  李之璞 《植物保护》2009,35(2):125-127
以黄瓜枯萎病菌和辣椒枯萎病菌作为供试菌种,采用生长速率法对葡萄叶不同溶剂提取物和不同提取方法提取物的抑菌活性进行测定。结果表明,葡萄叶不同溶剂提取物对供试菌种均表现出抗菌效果,并筛选出最佳提取溶剂是95%的乙醇,而最佳提取条件是提取温度40 ℃、提取时间和方式是超声波提取30 min,提取料液比1∶8(g/mL)。  相似文献   

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 小麦白粉病(Wheat Powdery Mildew)是我国小麦生产上常发性病害之一[1]。小麦白粉病的防治主要采用抗病品种和化学药剂,辅之以栽培措施的综合防治技术。由于目前生产上抗病品种相对缺乏,药剂防治成为我国小麦白粉病防治的主要措施之一[2]。自20世纪80年代以来三唑类杀菌剂一直是我国防治小麦白粉病的主要药剂,由于长期、大范围、单一的使用导致小麦白粉病菌对三唑类杀菌剂的抗药性大大提高。监测结果表明,2009年我国小麦白粉病菌群体对三唑酮的平均抗性水平已经达到56.58倍,抗性频率达到99.09%,其中高抗菌株占49.09%[3]。目前小麦白粉病菌对三唑酮的抗性形势十分严峻,寻找三唑类杀菌剂的替代药剂成为控制该病害的迫切需求。  相似文献   

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