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有益生物

有益生物的相关文献在1979年到2021年内共计83篇,主要集中在植物保护、园艺、畜牧、动物医学、狩猎、蚕、蜂 等领域,其中期刊论文78篇、专利文献351165篇;相关期刊55种,包括农业技术与装备、湖南农业、农村新技术等; 有益生物的相关文献由127位作者贡献,包括张权炳、毛润乾、肖英方等。

有益生物—发文量

期刊论文>

论文:78 占比:0.02%

专利文献>

论文:351165 占比:99.98%

总计:351243篇

有益生物—发文趋势图

有益生物

-研究学者

  • 张权炳
  • 毛润乾
  • 肖英方
  • 曹涤环
  • Lance S.Osbome
  • 万方浩
  • 沈国清
  • H-J·施诺尔巴赫
  • H·亨格伯格
  • U·雷克曼
  • 期刊论文
  • 专利文献

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    • 韩凤; 赵龙龙
    • 摘要: 文章总结了山西省梨树产区梨园常发刺吸类害虫种类,针对其生物学和为害特点,提出了相应无公害化防治措施,并对梨树刺吸类害虫类群提出了生态调控技术为核心的治理方针,充分发挥和实现梨园生物间的制衡和抑制作用,以降低梨园刺吸类害虫发生数量并降低其成灾概率.
    • 聂佃芳
    • 摘要: 一、使用农药存在的问题1.农药选择不当。个别桃农简单追求病虫害杀伤效果,刻意选择广谱杀虫(菌)、杀伤率高的农药,在防治病虫害的同时也伤害了非标靶生物群体,影响了生物种群的平衡关系,破坏了生物的多样性,降低了有益生物自然控制作用,更容易造成虫害的发生。
    • 摘要: 根据《农药标签和说明书管理办法》规定:“对人畜、周边作物或者植物、有益生物(如蜜蜂、鸟、蚕、蚯蚓、天敌及鱼、水蚤等水生生物)和环境容易产生不利影响的,应当明确说明,并标注使用时的预防措施、施用器械的清洗要求。”下面对标签注意事项应标注的内容及标注条件进行整理汇总。
    • 摘要: 2016年,德国绿色和平组织对目前欧盟市场上获得批准的520种活性成分进行了危害性积分,并最后决定将209种农药活性成分列入黑名单,并建议分三批逐步淘汰黑名单中的农药。据悉,“农药黑名单”考虑到了额外的危害评价标准,更新了现有的数据并补充了新的材料。也将更多的标准,例如农药对水生生物和有益生物的毒性加入到了环境影响评价中。
    • 肖英方; 毛润乾; 万方浩
    • 摘要: 在现代农业,特别是有机农业的害虫防治系统中,除有益生物(主要指节肢动物)在害虫防治中发挥关键作用外,一些植物本身也发挥了重要的作用。这些植物包括抗虫植物、诱集植物、拒避植物、杀虫植物、载体植物、养虫植物以及显花(虫媒)植物等,它们是害虫生物防治的重要组成部分,并在害虫生物防治中起着越来越重要的作用。本文根据目前国内外的研究情况,提出一个害虫生物防治植物或简称生防植物(bio-control plant)新概念,并对不同生物防治植物应用及作用机理进行阐述,分析不同生物防治植物未来的发展前景和面临的挑战。%The modern organic agriculture has increasingly become a hot topic worldwide. In general, organic agriculture is complied with organic standards set by national governments and international organizations. The rule does not involve modern synthetic inputs such as synthetic pesticides and chemical fertilizers. With the growing emphasis on the environment and the food safety, the discovery and development of effective biological control approaches, especially in botanically based techniques, such as botanically derived pesticides to manage arthropod pest populations is facing a new challenge. This review is intended to discuss bio-control plants and provide insights of these plants used for potential biological control of arthropod pests in the field of crop protection. As all known, all crops or plants are always attacked by their enemies, i.e. arthropod pests. In most cases, the plant species or diversities within crop ecosystem provide an excellent opportunities for manage pests in organic agricultural production. Under certain circumstances, these crops or plants can rely on their own defense strategies, such as plant physiological and biochemical merits, against arthropod pest population. These plant defense strategies are playing key role in regulation of arthropod pest populations. Therefore, the botanically based techniques are particularly useful in pest management of the organic agriculture. Based on the studies, a new concept, bio-control plants (BCP), or bio-control plant agent, was emerging. The bio-control plants are defined as these plant species that could be used as biological control agents direct or indirectly to eliminate or manage the targeted arthropod pests, these bio-control plants include host-resistant plants, insecticidal plants, repellent plants, flowering plants, insectary plants (for natural enemies) and so on. The bio-control plants, in general, consist of three types of plant species based on plant characteristic and functional response to arthropod pest attacks. 1) The crops or plants that have specific chemical or physical characteristic which could be used to reduce, repel or kill pests, such as naturally- resistant crops, or botanical based host-resistant transgenic plants, and insecticidal plants;2) The crops or plants that could deliver specific nutrients to natural enemies for development and reproduction, e. g, specific insectary plants, banker plants, and specific flowering plants; 3) The crops or plants that could provide shelter or reproduction habitats, such field-side plants (weeds). Generally speaking, the bio-control plants have several advantages:First, as naturally or botanically based techniques, the bio-control plant agents provide new option approach for managing important arthropod pests. The plant-based agents introduced to the crop ecosystem would make growers implement easily, overall significantly reduce pesticides or other chemical inputs in the modern organ agriculture;these environmental friendly approaches would increase crop yields and increasingly assure food safety. Secondly, the bio-control plants may highly effective support natural enemy without risks, e.g., the banker plants or specific flowering plants. Overall vegetation diversity within the crop ecosystem may in part offer wider range of nectar (carbohydrate) and pollen (protein) resources from flowering plants for beneficial against arthropods during growing season. Thirdly, the bio-control plants could be compatible with other biologically control methods. Without doubt, the bio-control plants put emphasis on substantial natural suppression mechanism of targeted pests either throughout natural enemies or plant self function within a crop system. This exploitation of the bio-control plants should be bright and great benefit to producer and customers in future.
    • 肖英方; 毛润乾; 万方浩
    • 摘要: 在现代农业,特别是有机农业的害虫防治系统中,除有益生物(主要指节肢动物)在害虫防治中发挥关键作用外,一些植物本身也发挥了重要的作用。这些植物包括抗虫植物、诱集植物、拒避植物、杀虫植物、载体植物、养虫植物以及显花(虫媒)植物等,它们是害虫生物防治的重要组成部分,并在害虫生物防治中起着越来越重要的作用。本文根据目前国内外的研究情况,提出一个害虫生物防治植物或简称生防植物(bio—controlplant)新概念,并对不同生物防治植物应用及作用机理进行阐述,分析不同生物防治植物未来的发展前景和面临的挑战。
    • 曹涤环
    • 摘要: 农作物的病虫杂草等有害生物的防治,是农业生产的重要环节,也是保证农业生产增产增收的关键。据资料显示我国每年使用量约30万吨,防治面积约50亿亩次,可挽回15%-30%的经济损失,总价值达500多亿元。然而,任何事物都具有两面性,绝大多数农药尤其是化学农药及其代谢物和杂质,存在着对人畜及有益生物和环境的影响问题,这些问题引起了人们对农药污染及农药残留的重视。
    • 肖英方; 毛润乾; 沈国清; Lance S.Osbome
    • 摘要: 建立一个自我维持并可有效降低害虫种群水平的系统是害虫生物防治长期追求的理想目标。载体植物系统(banker plant system)又称开放式天敌饲养系统,是近年来开发出的一种集保护利用本地天敌、人工繁殖释放天敌以及异地引进天敌等传统技术特点为一体的新型生物防治技术。载体植物(banker plants)、替代食物(alternative foods)和有益生物(beneficial)是该系统的三个基本要素。本文对载体植物和载体植物系统概念、特点以及近年来国际上的研究进展进行了综述,并结合自身的研究实践,举例介绍载体植物系统的应用,以推动国内外对载体植物系统的研究和应用。%Banker plant system(BPS) is a new concept for biological control of arthropod pests.It consists of three key elements: a banker plant,a highly specific alternative host or prey,and one or more natural enemies(predator or parasitoid).The ideal banker plant should be a non-crop plant that provides resources(alternative prey or nutrient) to sustain natural enemies of arthropod pest.The natural enemies should be specific to the alternative prey and the pest,and are able to disperse to a long distance to attack the pest.The banker plant system uniquely combines the advantages of both augmentative and conservation biological controls in greenhouse or field,it has been shown to be an effective,simple,reliable approach for control of arthropod pests.The use of banker plant system will not require the repeated release of natural enemies and also reduce the cost for purchasing commercial available biocontrol agents.The review is intended to summarize the history,development and potential application of banker plant systems.In our study,the goal is to develop long-term pest suppression of silver-leaf whitefly and two-spotted spider mite in vegetable crops,especially in greenhouse vegetables.Current,these pests have seriously threatened vegetable production.Based on University of Florida studies,the papaya and the corn banker plant system were established in greenhouses.These banker plant systems have several advantages: First,this system provided new option approach for controlling silver-leaf whitefly and two spotted spider mites.The system made growers implement easily,significantly reducing the cost,and did not rely on the availability of commercial biological control agents;Secondly,this system provided highly specific alternative host or prey for supporting natural enemy without risks.Thirdly,this system could be compatible with other pest control methods.The banker plant systems provide the food resources to sustain a reproducing population of natural enemies within a crop system that willprovide natural suppression.This system should be attractive to growers,especially greenhouse vegetable growers.
    • 肖英方; 毛润乾; 沈国清; Lance S.Osbome
    • 摘要: 建立一个自我维持并可有效降低害虫种群水平的系统是害虫生物防治长期追求的理想目标。载体植物系统(banker plant system)又称开放式天敌饲养系统,是近年来开发出的一种集保护利用本地天敌、人工繁殖释放天敌以及异地引进天敌等传统技术特点为一体的新型生物防治技术。载体植物(banker plants)、替代食物(alternative foods)和有益生物(beneficial)是该系统的三个基本要素。本文对载体植物和载体植物系统概念、特点以及近年来国际上的研究进展进行了综述,并结合自身的研究实践,举例介绍载体植物系统的应用,以推动国内外对载体植物系统的研究和应用。
    • 刘云志; 杨金生; 黄海楠
    • 摘要: 动物微生态制剂是指应用于动物体内及外界环境中正常的有益生物,经过特殊的处理和加工工艺制成的活菌制剂,又称益生素。微生态制剂作为一种新型的抗生素替代品,具有无毒副作用、无耐药性、无残留、效果显著等诸多优点,因此越来越受到世人的关注。
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