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    STATUS AND PROBLEM ON STUDYING PREY-PREDATOR RELATIONSHIPS BY SEROLOGICAL TECHNIQUES
    应用血清学技术研究捕食者与猎物关系的现状及问题
    The Structure and Dynamics of Main Arthropod Predator Community in Paddy Field
    稻田主要节肢类捕食者群落的结构和动态
    Camtylomma chinensis: a new predator of egg of main insect pests of longan
    龙眼主要害虫卵的新天敌——中华微刺盲蝽
    Evaluation on Role of Predators in Helicoverpa armigera Control
    棉铃虫捕食性天敌控制作用评价
    Control Function of Predators in Coexistent System of Three Spiders and Two Rice Insect Pests
    多物种共存系统中蜘蛛对稻虫的控制作用
    Methods for Evaluation of Predators and Parasitoids in the Control of Insect Pests and Strategy for Their Practical Application
    天敌动物对害虫控制作用的评估方法及其应用策略
    Dynamics of Cry1Ab protein from transgenic Bt rice in herbivores and their predators
    转Bt基因水稻表达的毒蛋白Cry1Ab在害虫及其捕食者体内的积累动态
    Natural predators of Thrips palmi (Karny) and their role in natural control
    节瓜蓟马的主要捕食性天敌及自然控制作用
    The Dynamic Characters of Some Spruce Aphides and Its Predator Interactional Model
    一类云杉蚜虫与其天敌相互作用模型的动态特性
    Effects of transgenic Bt plus CpTI cotton on the predating functional response of main predators in cotton field
    转双价基因(Bt+CpTI)棉对棉田主要捕食性天敌捕食功能反应的影响
    Fuzzy cluster analysis of the cotton aphid and its predators in Chinese prickly ash orchard
    花椒园棉蚜及其捕食性天敌动态的模糊聚类分析
    Cloning Cytochrome Oxidase Ⅱ Gene of Soybean Aphid (Aphis Glycines Matsumura) and Detecting of Predator
    大豆蚜(Aphis glycines Matsumura)COⅡ基因克隆及其天敌检测技术的研究
    Based on the results as above, 4B8 was chosen to study the interactions between N. lugens and their predators in the field.
    根据上述结果,初步确定4B8 用于捕食作用研究。
    2) Five McAbs, namely 1B5, 2F10, 2G12, 3D8 and 4F8, were developed against the collembola using hybridoma technique. They had high absorption values even they were diluted over 1.024×108 times. All of the McAbs only reacted with the collembola while not cross-reacted with other insect pests and predators.
    2) 应用杂交瘤技术,制备了5 株多种弹尾虫复合体的单克隆抗体细胞株,分别命名为1B5、2F10、2G12、3D8 和4F8。
    The relative abundance of pests , predators, parasitoids and neutralities were 0.6361-0.7018 ,0.1641-0.1907, 0.0418-0.0647 and 0.0923-0.1085 respectively in Spring sowing season .
    春种菜用大豆田害虫类的相对丰盛度为0.6361~0.7018,捕食类的相对丰盛度为0.1641~0.1907,寄生类和中性类的相对丰盛度分别为0.0418~0.0647和0.0923~0.1085。
    The relative abundance of pests , predators, parasitoids and neutralities were 0.9483-0.9749, 0.0097-0.0164,0.0087-0.0173 and 0.0067-0.0188 respectively in Fall sowing season.
    秋种菜用大豆田害虫类的相对丰盛度为0.9483~0.9749,捕食类的相对丰盛度为0.0097~0.0164,寄生类和中性类的相对丰盛度分别为0.0087~0.0173和0.0067~0.0188。
    When the density of the predator is lower, E will decrease quickly.
    捕食者密度低时,E下降较快,随着捕食者密度进一步增加,E下降缓慢。
    The mutual interference of female, male and female and male mixed population among individual predators and preys could described by Hassell and Vasley’s equation were E=0.9777P-2.2479, E=0.9479P-2.2403 and E=0.9786P-2.2648 respectively.
    雌、雄及雌雄混合种群干扰反应的数学模型分别为E=0.9777P-2.2479、E=0.9479P-2.2403和E=0.9786P-2.2648。
    The relative abundance of predators was 0.44234. Micryphantidae Coccinellidae Pristomyrmex pungens Mayr and spiders were dominant enemies of predators.
    捕食类害虫总群落的相对丰盛度为 0.44234,优势天敌是微蛛科 Micryphantidae 和瓢虫科 Coccinellidae。
    When phytophages(D=1.86) and predators(D=1.95) sub-communities were divided into four stages.
    D=1.86 时,植食类亚群落分为 4 类; D=1.95 时,捕食类亚群落分为 4 类。
 

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