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11.
采用体表接菌法测定了商品生物农药金龟子绿僵菌油悬浮剂PD20080671在15、20、25、30、35和40℃等6个不同温度条件下对东亚飞蝗3龄蝗蝻的致病力的影响。结果表明:东亚飞蝗3龄蝗蝻的累积死亡率在接菌后19 d内均随天数的增加而升高。35℃的累积死亡率最高(82.50%),显著高于其他处理;40℃的累积死亡率最低,为55.00%。死亡个体的湿度培养结果显示绿僵菌在高温条件下萌发的时间较短,40℃为4.26 d,15℃为19.36 d。结果表明环境温度低于15℃或高于35℃都不利于绿僵菌杀死蝗虫。因此,在田间施用金龟子绿僵菌防治东亚飞蝗时应尽量避免高温天气,建议在上午低温时进行防治。  相似文献   
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黄脊竹蝗为重大林业害虫,多在竹林造成为害。2020年黄脊竹蝗从老挝、越南等地跨境进入中国云南省并在农区造成了严重为害。本文主要综述了黄脊竹蝗在我国发生的历史与现状、暴发的原因以及主要的防治措施,归纳了黄脊竹蝗不同发育阶段的有效防治措施,重点总结了利用生防天敌和生物农药防治黄脊竹蝗的研究进展,为黄脊竹蝗综合防控提供参考依据。  相似文献   
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J.  R.  Qasem 《农业科学与技术》2010,(6):104-120
Allelopathy importance and its application under field conditions are reviewed. Recent achievements in the field of plant protection are mainly considered and presented. Natural chemicals of potential use as pesticides, commercialized natural products of pesticidal properties are included. Reported plants of pest control properties, their targeted agricultural pests, formulations, methods of application and activity under field conditions are presented. Allelopathic plant species and implications on their use in the field, positive and negative impacts on cultivated crop species and agricultural pests are discussed. Some research difficulties and experimental methodology problems are mentioned. Prospects of allelopathy as a future strategy for pest management, development of eco-friendly biopesticides and importance for sustainable agriculture and recent developments in allelopathy research are discussed.  相似文献   
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Products containing microorganisms (bacteria, fungi and viruses) can be used in plant production as an intervention as well as a prevention method for pest control. Their utilisation is strictly in line with the principles of integrated pest management, provided that they are effective and safe. The rules of registration of microorganisms for crop production in the European Union differ, depending on whether they are placed on the market as plant protection products or not. For over 20 years, uniform rules for registration of plant protection products have been in force. Currently, 36 microorganisms marked up to the strain are approved for use in pest control in the Community. The decision concerning market placement of plant protection products containing approved microorganisms is issued for each member state separately. The approaches to market placement of other products with microorganisms differ within the EU, ranging from a complete lack of requirements to long and costly registration procedures. © 2015 Society of Chemical Industry  相似文献   
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美国登记注册的生物农药主要分为生物化学农药和微生物类农药,其中生物化学农药包括引诱剂、驱避剂、天然昆虫/植物生长调节剂及除草剂、信息素、其他生化农药等;微生物类农药包括细菌、真菌、病毒、酵母、原生动物、工程菌、转基因植物等。  相似文献   
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采用室内毒力试验和田间防效试验的方法,测试了3种不同配方的烟碱生物农药杀虫剂对石榴蚜虫的毒力强度和田间的防治效果,从而筛选出对石榴蚜虫防治效果最好的药剂配方.毒力强度测定结果表明,1号、2号、3号药剂对石榴蚜虫的半致死浓度LC50分别为10 270、12 810、13 040 mg/L.田间防效试验结果表明,1号、2号、3号药剂防效分别为60.52%、34.60%、46.99%.综上,第1种药剂(配方为:93%烟叶超微粒粉,硅油3%,茶枯2%,乳化剂2%,抗坏血酸2%)对石榴蚜虫的防治效果最好,可进一步研究推广.  相似文献   
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Scientists have made significant progress in understanding and unraveling several aspects of double‐stranded RNA (dsRNA)‐mediated gene silencing during the last two decades. Now that the RNA interference (RNAi) mechanism is well understood, it is time to consider how to apply the acquired knowledge to agriculture and crop protection. Some RNAi‐based products are already available for farmers and more are expected to reach the market soon. Tailor‐made dsRNA as an active ingredient for biopesticide formulations is considered a raw material that can be used for diverse purposes, from pest control and bee protection against viruses to pesticide resistance management. The RNAi mechanism works at the messenger RNA (mRNA) level, exploiting a sequence‐dependent mode of action, which makes it unique in potency and selectivity compared with conventional agrochemicals. Furthermore, the use of RNAi in crop protection can be achieved by employing plant‐incorporated protectants through plant transformation, but also by non‐transformative strategies such as the use of formulations of sprayable RNAs as direct control agents, resistance factor repressors or developmental disruptors. In this review, RNAi is presented in an agricultural context (discussing products that have been launched on the market or will soon be available), and we go beyond the classical presentation of successful examples of RNAi in pest‐insect control and comprehensively explore its potential for the control of plant pathogens, nematodes and mites, and to fight against diseases and parasites in beneficial insects. Moreover, we also discuss its use as a repressor for the management of pesticide‐resistant weeds and insects. Finally, this review reports on the advances in non‐transformative dsRNA delivery and the production costs of dsRNA, and discusses environmental considerations. © 2017 Society of Chemical Industry  相似文献   
20.
Excessive application of mineral fertilizers and synthetic pesticides poses a substantial threat to the soil and water environment and food security.Organic fertilizer and biopesticides have gradually become essential technology for reducing mineral fertilizer and pesticide inputs. In the process,the technical environment is critical for promoting farmer behavior related to the adoption of organic fertilizer and biopesticides. This paper analyzes the influence of the technical environment on far...  相似文献   
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