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71.
从生防菌G3菌株筛选到的抗链霉素自然突变株G3^str,保持G3原有的抑菌活性,产伊枯草菌素和生物表面活性素,能抑制多种植物病原真菌.25℃下,营养添加剂对G3^str菌在不灭菌土壤中前5d有一定的增殖作用;10d后G3^str菌在土壤中主要以芽孢的形态存活;60d后,G3^str菌在土壤中仍以106cfu/g水平存活.G3^str菌在土壤中增殖时分泌少量的伊枯草菌素,但被快速分解;同时分泌较多的生物表面活性素,营养添加剂的加入明显促进其分泌.  相似文献   
72.
细辛挥发油抗植物病原真菌活性初步研究   总被引:12,自引:0,他引:12  
从天然产物包括植物中开发新的高效低毒环境友好型杀虫杀菌剂,是农药领域重要的研究内容。细辛(Asarum)为马兜铃科(Aristolochiaceae)草本植物,是我国特有的传统中药,中医用于治疗风寒头痛、痰饮咳喘、关节疼痛、鼻塞、牙痛、胃炎以及口腔糜烂等。有文献报道,细辛提取物对黄曲霉(Aspergillus sp.)、黑曲霉(Aspergillusr sp.)、人类致病菌白色念珠菌(Candida sp.)、伤寒杆菌(Salmonella sp.)有抑菌作用;对人参黑斑病菌(Alternaria panax)、人参根疫病菌(Phytophthora cactorum)、腐皮镰孢(Fusarium solani)和番茄灰霉病菌(Botrytis cinerea)等植物病原菌具有较好的抗菌效果。有关细辛抗菌机制的研究尚未见报道。本文选择9属16种植物病原真菌进行生物测定,探讨细辛挥发油抗菌的广谱性,并以Alternaria humicola为研究对象,对其抗菌机理进行初步研究,以便为开发新型植物杀菌剂提供理论依据。  相似文献   
73.
Fungal colonisation of winter wheat cv. Cadenza by Fusarium culmorum, F. graminearum and Microdochium nivale was studied under conditions designed to avoid the splash dispersal of conidia from infested compost, to evaluate the possibility that systemic growth may transfer infection from the stem-base to the head. At decimal growth stages 33, 59, 77–87 and 95 the extent of fungal growth was assessed using a sample of 72 plants, by the recovery of fungal species from the stem-base, from each node and from the ear. Each of the fungi was recovered from stem tissues above soil level in some, apparently symptomless, plants. Symptoms of Fusarium foot rot were seen in an increasing proportion of plants during grain-fill and desiccation. There was an inverse relationship between recovery and the height above stem-base from which the stem tissue was excised. F. culmorum was the most frequently isolated fungus and it was also recovered from the highest position in plants. Only 3% of plants were colonised above the second node and none of the fungal species were recovered from either the fifth node or the ear. This suggests that colonisation and systemic growth from Fusarium infested compost is unlikely to contribute to the development of ear blight symptoms in winter wheat.  相似文献   
74.
The optimal conditions required to market Trichoderma as a biocontrol agent against soilborne fungi and nematodes are discussed. These include a proper formulation, an efficient delivery system, and alternative methods for Trichoderma's application.The implementation of Trichoderma in integrated pest management (IPM) can be achieved using a soil treatment which combines reduced amounts of biocides/fungicides and the Trichoderma preparation. Biocontrol activity can be increased by combining two (or more) types of biocontrol agents. Moreover, the construction of a genetically modified Trichoderma can lead to the improvement of certain traits which are absent or not highly expressed in the native microorganism isolated from its natural habitat.Different Trichoderma harzianum and T. lignorum isolates were tested for their nematicidal activity against the root-knot nematode Meloidogyne javanica. In short-term experiments, improved growth of nematode-infected plants and decreases in the root-galling index and the number of eggs per gram of root were achieved when nematode-infested soils were pre- exposed to the T. harzianum preparations. A long-term experiment resulted in improved growth and higher yield of nematode-infected plants, but no significant change in the galling index, either by pre-exposure of the fungus to the soil or by enrichment in the root-ball.As biocontrol is an integral part of the IPM philosophy, judicious use of Trichoderma against soilborne pathogens, when demonstrated to be consistently effective, practical and economic, can serve as a model for the introduction and implementation of other biocontrol means into IPM.  相似文献   
75.
采用生长速率法测定采自黑龙江省部分稻区的稻瘟病菌菌株对多菌灵的敏感性。试验结果表明,供试稻瘟病菌菌株抑制中浓度(EC50)大多数分布在200~300mg/kg之间,最高为405mg/kg,最低为158mg/kg,其EC50值相差2倍以上,说明供试稻瘟病菌对多菌灵的敏感性均较差,且供试菌株对多菌灵已产生不同程度的敏感性差异。  相似文献   
76.
《Plant Production Science》2013,16(1):122-128
Abstract

To Quantify The Effects of Arbuscular Mycorrhizal Fungi (Am Fungi) On The Growth of Upland Field Crops Cultivated in Japan, We Analyzed Soil Samples From 124 Sites in 18 Japanese Prefectures For Available P Content, Ph and Am Fungal Spore Density. The Am Fungal Spore Density in The 124 Soil Samples Was 1.7 Per G Dw On The Average, and Lower Than 1.0 Per G Dry Soil (Dw) in About Half of The Soil Samples. The Maximum Spore Density Was 20.6 Spores Per G Dw. The Density of Am Fungal Spore Did Not Vary Significantly With The Sampling Site and The Kind of Cultivated Crop in The Sampling Field. The Ph of The Soil With A High Spore Density Ranged From 6 To 8, and in The Soil Samples With A Ph Lower Than 6 and Higher Than 8, TheSpore Density Was Lower Than 5 Spores Per G Dw. Thus, in The Acid Or Alkaline Soil, The Sporogenesis of Am Fungi Is Suppressed. Because Available P Content Was Consistently Low in The Soil Samples With A High Spore Density, P Content Was Considered To Correlate With The Am Fungal Spore Density. Therefore, Crop Cultivation With Limited P Fertilizer Application and Reduced Available P Content May Be Important To increase Am Fungal Spore Density in Upland Field Soil.  相似文献   
77.
白色念珠菌等真菌是能够引起人类及动物患病的重要致病菌。本实验测定了白鲜碱对临床22株临床分离氟康唑耐药白色念珠菌的最小抑菌浓度(MIC),采用棋盘式微量稀释实验测定了两药联合应药的分级抑制浓度指数(ractional inhibitory concentration index,FICI)值。结果表明,白鲜碱有较好的抗白色念珠菌活性且与氟康唑有协同作用。  相似文献   
78.
江苏小麦全蚀病菌生物学特性的初步研究   总被引:1,自引:0,他引:1  
对江苏滨海、响水、灌云和盱眙等县5个菌株研究结果表明,小麦全蚀病菌(Gaeumannomycesgraminis)生长适温在20~25℃之间,30℃生长受到明显抑制,35℃停止生长;适宜生长的pH范围较广,在pH5~9的范围内生长良好,以pH7~8最适宜;淹水条件下对全蚀病菌生长有较强的抑制作用,当平均气温28℃以上(日最高温达37.5℃),受淹病菌即死亡;全蚀病菌对有机氮利用较铵态氮和硝态氮好;硫酸铵对全蚀病菌的抑制作用是由于高浓度和改变基质pH两方面的因素。不同来源菌株间在生长适温、pH及对淹水的反应存在明显差异  相似文献   
79.
The aim of this work is to review current knowledge on inputs, sources and regulation of protease activities in soils from different ecosystems, while exploring limitations to proteolysis and N mineralisation. Extracellular proteases enter the soil via microbial production and other sources, including plant root exudates, animal excrements, decomposition processes and leaching from agro-industrial fertilisers. The synthesis and activities of proteases in soil are regulated by many factors, including climate, soil properties and the presence of organic compounds of plant and microbial origin. Two particularly important areas for future research are the regulation of proteolysis by low-molecular-weight organic compounds, including amino acids, sugars, flavonoids, plant hormones and siderophores, as well as the identification and characterisation of proteinaceous protease inhibitors of plant and microbial origin in the soil. Despite all the work that has been performed on soil proteases, our understanding of the roles of extracellular plant root proteases in N nutrition is weak. Furthermore, the regulation of soil proteolytic activities of different ecosystems, especially in terms of pollutant inputs and the impact of climate change, requires investigation. Other areas that pose important questions for the future include assessments of protease inhibitor inputs to the soil, regulation of these inhibitors via naturally occurring soil organic compounds and the interactions between soil organisms.  相似文献   
80.
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