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采用诱捕率指标,评价了田间不同成虫密度下,性诱剂诱捕器不同放置密度对小菜蛾种群的诱捕效果.结果表明.在放置性诱剂后的前6 d内诱捕作用较小,其后诱蛾效果不断增强,第10-15 d出现诱蛾高峰,20 d后显著下降.在田间小菜蛾成虫不同密度下,诱蛾效果随诱捕器数量的增加而加强.当诱捕器放置密度相同时,诱蛾量随菜蛾密度的升高而增加,诱蛾率在高密度下反而下降.同时,性诱剂可有效地减少小菜蛾的田间落卵量,第6-12 d开始卵量下降.15~21 d后落卵量降至最低.与对照菜田相比,其落卵量可减少17.85%~72.19%. 相似文献
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在白菜、甘蓝、花椰菜3种寄主田块中,比较不同放置高度性诱捕器对小菜蛾的引诱效果。结果表明,寄主为白菜和甘蓝时,性诱捕器距离叶面顶部15 cm处放置的诱蛾量高于30 cm和5 cm处理;寄主为花椰菜时,性诱捕器距离叶面顶部30 cm处的诱蛾量高于15 cm和5 cm的处理,且诱蛾量呈现随放置高度增加而增加的趋势。差异显著性分析表明,寄主为花椰菜和白菜时,性诱捕器不同放置高度对小菜蛾诱蛾量的影响不显著;寄主为甘蓝时,性诱捕器距离叶面顶部15 cm的诱蛾效果显著优于30 cm处理。 相似文献
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为了探索亚洲玉米螟性诱剂在哈尔滨地区的诱捕效果, 于2019年和2020年在黑龙江哈尔滨地区开展不同品牌诱芯、不同类型诱捕器及不同诱芯悬挂高度处理的亚洲玉米螟田间诱捕试验。结果表明, 3种诱芯处理对田间亚洲玉米螟雄蛾表现出不同的诱虫活性, 诱芯A诱捕到的玉米螟雄蛾数量显著高于诱芯B和诱芯C, 是诱芯B诱蛾量的1.38倍, 诱芯C诱蛾量的1.62倍; 水盆式诱捕器对玉米螟雄蛾诱捕效率明显高于倒漏斗式诱捕器, 诱捕到玉米螟雄蛾数量是倒漏斗式诱捕器的1.94倍。2019年和2020年诱芯不同悬挂高度处理诱捕到玉米螟雄蛾的数量由多到少的顺序为0.8、0.4、1.3、1.8 m和0 m, 悬挂高度0.8 m处理诱捕到的玉米螟雄蛾数量显著高于其他处理。综合以上结果, 使用水盆式诱捕器, 将诱芯A悬挂至0.8 m高度更适合哈尔滨地区田间玉米螟的防治和种群监测。 相似文献
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试验表明,以每667m2设置4个诱捕器,并沿蔬菜种植行呈直线排列诱蛾量最多,22d内共诱得雄蛾453头,诱捕器数量每667m2设置5、6个的效果与4个的诱蛾量差别不大,但都高于设置3个诱捕器.通过性诱成虫,田间落卵量明显少于常规化防区50%以上.并讨论了小菜蛾性诱捕器在田间的设置与诱蛾效果的关系. 相似文献
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在陆地种植的番茄的结果期,使用船型粘胶诱捕器配合13种性引诱剂诱芯进行番茄潜叶蛾诱捕试验,筛选最佳诱捕器悬挂高度和诱捕效果最佳诱芯。试验结果表明:船型诱捕器悬挂于离地面约0.8~1.2 m处,诱蛾效果最好;配合船型诱捕器的13种不同诱芯对番茄潜叶蛾均有一定诱集效果;以TA20188C诱芯为对照,TA20207D1、TA20207D2两个诱芯综合诱集效果较佳,日均诱蛾量最高可达126.00头、114.00头,诱捕器连续放置4周,平均诱蛾总量可达2 167.00头、1 804.33头;TA2021885E和作为对照的TA20188C在试验中也具有良好的诱捕效果,日均诱蛾量最高可达87.33头、84.33头,连续放置4周,平均诱蛾总量可达1 606.67头、1 593.67头。综合分析,在番茄结果期,在离地面约0.8~1.2 m处悬挂船型诱捕器配合TA20207D1、TA20207D2、TA2021885E、TA20188C 4种番茄潜叶蛾性诱芯在田间中对番茄潜叶蛾诱捕效果较好,建议在番茄潜叶蛾的监测和防治中推广使用。 相似文献
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福寿螺配偶个体大小选择性初步观察 总被引:7,自引:0,他引:7
通过野外观察与实验研究,掌握了福寿螺的婚配体制及其配偶选择性规律。福寿螺与多数低等动物一样,其婚配属于乱交制,无固定配偶;雌螺对与其交配的雄螺个体大小没有选择性,而雄螺对雌螺的个体大小有选择性,倾向于与较大个的雌螺交配。 相似文献
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Christopher D. Keating Lindy M. Holden-Dye Robert J. Walker 《Pest management science》1996,46(3):263-266
The neuropeptide AF2 has a complex set of actions on the dorsal muscle strip of Ascaris suum, including a potentiation of the acetylcholine-stimulated muscle contraction. Caffeine at 100 μm and 5 mm inhibited this potentiation, as did 100 μm theophylline in two out of six studies. The cyclic-AMP-potentiating compounds IBMX, dibutyryl cAMP and forskolin had no effect on the AF2-induced potentiation of the acetylcholine-stimulated muscle contraction. These preliminary data suggest that the potentiating action of AF2 is not mediated by a cAMP pathway. 相似文献
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E. LIMPERT B. C. CLIFFORD A. DREISEITL R. JOHNSON K. MÜLLER A. ROELFS C. WELLINGS 《EPPO Bulletin》1994,24(1):109-112
A variety of systems of designation has evolved to name pathotypes of plant pathogens. The systems were evaluated to determine those best suited for particular purposes. Virulence and avirulence/virulence formulae of pathotypes have advantage over the use of consecutive numbers or letters given in chronological order of pathotype discovery. As soon as pathotype information exceeds a certain level of complexity, mathematical codes are most advantageous, in particular two codes, octal notation and coded triplets. A more universal adoption of the most appropriate codes is recommended to ease communication and comparisons of results. 相似文献
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F.M. Ashton O.T. de Villiers R.K. Glenn W.B. Duke 《Pesticide biochemistry and physiology》1977,7(2):122-141
Time- and concentration-course studies were conducted to determine the effect of thirteen herbicides on photosynthesis, respiration, RNA synthesis, protein synthesis, and lipid synthesis using isolated single leaf cells. Each herbicide was from a different chemical class. Appropriate 14C-substrates and product purification procedures were used for each process prior to liquid scintillation counting. The most sensitive metabolic site of inhibition was photosynthesis for atrazine, bromacil, dichlobenil, monuron, and paraquat; RNA synthesis for dalapon and dinoseb; protein synthesis for chlorpropham; and lipid synthesis for CDAA, chloramben, 2,4-D, EPTC, and trifluralin. However, with several herbicides, one or more process was almost as sensitive as the one mentioned above. All herbicides inhibited more than one process, and the most sensitive site of inhibition may not be the same process that was inhibited the greatest at the maximum concentration and maximum exposure time used. Therefore, a concept of metabolic sites of action, rather than a primary site of action, appears to be more meaningful for herbicides. 相似文献
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Effects of timing and method of application of Penicillium oxalicum on efficacy and duration of control of Fusarium wilt of tomato 总被引:3,自引:0,他引:3
The effects of timing and method of application of Penicillium oxalicum on the control of fusarium wilt of tomato were investigated. Application of P. oxalicum to tomato seedlings in seedbeds reduced disease caused by Fusarium oxysporum f.sp. lycopersici in a growth chamber by 45–49% and in glasshouse experiments by 22–69%. Disease suppression was maintained for 60–100 days after inoculation with the pathogen in the glasshouse. No disease reduction was observed in tomato plants where P. oxalicum was applied to seeds. Treatment with P. oxalicum did not affect the population of F. oxysporum f.sp. lycopersici in the rhizosphere. 相似文献
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为了研究青稞种子外部和内部携带真菌情况,比较不同杀菌剂对青稞种子的带菌消毒效果和对幼苗生长的影响,为青稞种子播前包衣处理和种传真菌病害防控提供依据,采用离体平皿法对云南迪庆‘云青1号’、‘云青2号’和‘短白青稞’3个主栽品种进行带菌检测,并对种子进行拌种或浸种处理测定6种杀菌剂对种子消毒效果,分析杀菌剂对种子发芽和幼苗生长的影响。结果表明:供试青稞种子表面携带的优势菌群为青霉(Penicilliumspp.)、镰刀菌(Fusariumspp.);种子内部寄藏的真菌主要为镰刀菌、核腔菌(Pyrenophoraspp.)、附球菌(Epicoccumspp.)、丝核菌(Rhizoctoniaspp.)、链格孢(Alternariaspp.)和木霉(Trichoderma spp.)。青稞不同品种的种子表面及内部携带的真菌种类差异较大。致病性测定表明,镰刀菌对种子萌发和幼苗生长影响最大,后期出现幼苗坏死现象。45%咪鲜胺EW、75%百菌清WP、50%福美双WP对青稞种子携带真菌均有显著抑制作用和消毒效果,50%福美双WP消毒效果最优,达100%;45%咪鲜胺EW、75%百菌清WP、50%福美双WP处理对青稞种子发芽和幼苗生长均无显著影响。 相似文献
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棉花黄萎病菌致病型的AFLP分析 总被引:16,自引:0,他引:16
选用41个棉花黄萎病菌(Verticillium dahliae)代表菌系,在温室条件下,对4个棉花品种鄂荆1号(感)、中棉所12(耐)、文-5(抗)和唐棉2号(抗)进行致病性测定,结果可将供试菌系分为落叶型与非落叶型2类。选取8对AFLP引物PCR扩增的结果中,统计带型稳定、清晰且有多态性的条带,共169条作系统聚类分析,将上述菌系分为2大类,第一类为非落叶型菌系,包括10个非落叶型菌系和1个过渡菌系;第二类为30个落叶型菌系。根据聚类分析建立树状图,发现菌系与地理来源存在一定的相关性,而依据菌系致病力强弱分类则相关关系不大。选用25对EcoRⅠ和MseⅠ引物组合,对供试的41个V.dahliae进行AFLP扩增,筛选到2对引物E64(GACTGCGTACCAATTCGAC)、M53(GATGAGTCCTGAGTAACCG)和E49(GACTGCGTACCAATTCCAG)、M65(GAT-GAGTCCTGAGTAAGAG),能分别扩增出433bp和110bp2条仅为V.dahliae非落叶型菌系独有的特异片段,可将落叶型与非落叶型菌系分开,这2条特异片段被命名为EM433和EM110。 相似文献