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Trichoderma Biocontrol of Colletotrichum acutatum and Botrytis cinerea and Survival in Strawberry 总被引:1,自引:2,他引:1
Stanley Freeman Dror Minz Inna Kolesnik Olga Barbul Aida Zveibil Marcel Maymon Yehuda Nitzani Benny Kirshner Dalia Rav-David Alon Bilu Arnon Dag Sharoni Shafir Yigal Elad 《European journal of plant pathology / European Foundation for Plant Pathology》2004,110(4):361-370
Trichoderma isolates are known for their ability to control plant pathogens. It has been shown that various isolates of Trichoderma, including T. harzianum isolate T-39 from the commercial biological control product TRICHODEX, were effective in controlling anthracnose (Colletotrichum acutatum) and grey mould (Botrytis cinerea) in strawberry, under controlled and greenhouse conditions. Three selected Trichoderma strains, namely T-39, T-161 and T-166, were evaluated in large-scale experiments using different timing application and dosage rates for reduction of strawberry anthracnose and grey mould. All possible combinations of single, double or triple mixtures of Trichoderma strains, applied at 0.4% and 0.8% concentrations, and at 7 or 10 day intervals, resulted in reduction of anthracnose severity; the higher concentration (0.8%) was superior in control whether used with single isolates or as a result of combined application of two isolates, each at 0.4%. Only a few treatments resulted in significant control of grey mould. Isolates T-39 applied at 0.4% at 2 day intervals, T-166 at 0.4%, or T-161 combined with T-39 at 0.4% were as effective as the chemical fungicide fenhexamide. The survival dynamics of populations of the Trichoderma isolates (T-39, T-105, T-161 and T-166) applied separately was determined by dilution plating and isolates in the mixtures calculated according to the polymerase chain reaction (PCR) using repeat motif primers. The biocontrol isolates were identified to the respective species T. harzianum (T-39), T. hamatum (T-105), T. atroviride (T-161) and T. longibrachiatum (T-166), according to internal transcribed spacer sequence analysis. 相似文献
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6种药剂对枸杞炭疽病的防治效果及其残留量的比较 总被引:1,自引:0,他引:1
为了筛选针对枸杞炭疽病的高效低残留农药,选用戊唑醇等6种药剂,就其药效及农药残留情况进行了田间比较试验。结果表明:施药后第7天,43%戊唑醇(SC)2 000倍液、40%氟硅唑(EC)6 000倍液、50%异菌脲(WP)1 000倍液、25%嘧菌酯(SC)1 000倍液、25%苯醚甲环唑(EC)1 000倍液和50%多菌灵(WP)500倍液对枸杞炭疽病的防治效果分别为97.00%、76.67%、69.33%、59.00%、56.00%和28.67%,施药后第10天的防治效果分别为92.50%、65.55%、47.41%、45.59%、45.44%和6.44%;戊唑醇的防治效果最好,氟硅唑次之。枸杞干果中戊唑醇的残留含量为2.60 mg·kg-1,低于最大残留限量;氟硅唑的残留含量为0.16 mg·kg~(-1),高于最大残留限量。6种试验药剂中只有戊唑醇符合高效低残留农药的筛选标准,可用于采果期枸杞炭疽病的防治。 相似文献
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为揭示葡萄炭疽病菌种类和遗传特征,给深入研究该病提供科学理论依据。本研究对不同地区的26株葡萄炭疽病菌通过形态学和r DNA-ITS序列分析进行鉴定及同源性研究。利用真菌通用引物ITS4、ITS5对病菌基因组进行PCR扩增,将测序结果与NCBI数据库上已知序列进行比对,同时利用Clustalx 1.83和MEGA 5.0软件进行聚类分析。结果表明:病菌菌落为白色或灰白色,菌丝呈绒状或絮状,分生孢子为圆柱形或圆筒状,单孢,无色;测得病菌ITS序列为500 bp左右,鉴定病原均为胶孢炭疽菌(Colletotrichum gloeosporioides)。不同地区葡萄炭疽菌的r DNA-ITS序列同源性高,亲缘关系比较近,但是各菌株间存在着遗传差异,并且菌株之间差异与地理来源和品种无明显的相关性。 相似文献
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草莓炭疽病是草莓定植时期最易造成死苗的真菌病害。本文研究了生物刺激素(木霉菌、海藻酸、聚谷氨酸)协同灌根对草莓炭疽病的防治以及促生作用。结果表明,与对照相比,木霉菌、海藻酸、聚谷氨酸单剂灌根和木霉菌+海藻酸、木霉菌+聚谷氨酸的协同灌根处理均能显著降低炭疽病造成的死苗率,其中木霉菌+海藻酸的防效最高,可达78.26%。相比对照,所有处理均能显著提高净光合速率、1,5-二磷酸核酮糖羧化酶活性和加氧酶活性等光合指标,以及土壤脲酶活性。协同灌根处理显著提高草莓株高、根茎粗、叶柄长、叶面积等生长指标达15.62%~47.00%。其中木霉菌+海藻酸处理的净光合速率、土壤脲酶活性最高。综合而言,木霉菌与海藻酸协同灌根在促进生长、促进光合、提高土壤供氮水平以及防控草莓炭疽病方面均表现出显著的增效作用,可作为生物防治的一种有效手段 相似文献
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栗炭疽病是陕西镇安栗树的主要病害之一。试验研究表明,根据该病发生规律,在抓好农业防治的基础上,采用农业防治与药剂防治相结合的综合防治技术,防治效果显著。 相似文献
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Ribosomal DNA Sequence Comparisons of Colletotrichum Graminicola from Turfgrasses and other Hosts 总被引:1,自引:0,他引:1
T. Hsiang P.H. Goodwin 《European journal of plant pathology / European Foundation for Plant Pathology》2001,107(6):593-599
The 5.8S ribosomal gene and the flanking internal transcribed spacers (ITS) 1 and 2 from Colletotrichum graminicola isolates causing anthracnose disease of Agrostis palustris and Poa species were sequenced. Although bootstrap support was not high, two major groups were observed with both UPGMA and parsimony algorithms, one containing isolates from A. palustris and another with isolates from Poa spp. The ITS sequences were also compared with those of isolates of C. graminicola and C. sublineolum from Sorghum spp., Zea mays and Rottboellia cochinchinesis as well as other Colletotrichum species. Except for one isolate from P. annua in Texas, the ITS1 and ITS2 sequences of turfgrass isolates always grouped separately from C. graminicola or C. sublineolum from non-turfgrass hosts with high bootstrap support. ITS sequences of the turfgrass isolates were more similar to those of other species of Colletotrichum, such as C. coccodes and C. dematium, than they were to C. graminicola isolates from other hosts. Turfgrass isolates have ITS sequences which are not identical to those of isolates from Zea mays and Sorghum species demonstrating diversity among fungi conventionally classified as C. graminicola. 相似文献