首页> 外文学位 >Control of stored -product insects with protein -rich pea flour and its extract.
【24h】

Control of stored -product insects with protein -rich pea flour and its extract.

机译:用富含蛋白质的豌豆粉及其提取物控制贮藏昆虫。

获取原文
获取原文并翻译 | 示例

摘要

Stored-product insects cause billions of dollars of losses every year throughout the world. Synthetic insecticides are widely used to control stored-product insects. However, their use is decreasing, because of concerns about insecticide residues in grain, damage to the environment, worker safety, insecticide resistance and increasing costs. To reduce the use of synthetic insecticides, many natural products have been investigated for the control of stored-product insects. Laboratory studies indicated that protein-rich pea flour, a food additive, was repellant, toxic and reduced offspring of three common stored-product insects, Sitophilus oryzae (L.) (rice weevil), Cryptolestes ferrugineus (Stephens) (rusty grain beetle) and Tribolium castaneum (Herbst) (red flour beetle). Sitophilus oryzae was the most sensitive species, followed by C. ferrugineus and T. castaneum. Insects held on wheat and barley showed similar sensitivities to protein-rich pea flour. Higher doses were required to control insects held on maize. Protein-rich pea flour was more toxic at high temperature and low moisture. Although protein-rich pea flour reduced the penetration of package material by S. oryzae , it did not prevent insects from entering perforated packaging.;A granary trial conducted in six 30-tonne bins and each filled with 11 tonnes of barley showed that fewer insects moved into, and more insects moved out of the barley treated with protein-rich pea flour. Treating the entire gain mass with 0.1% protein-rich pea flour had a similar effect to treating the top-half with 0.5% protein-rich pea flour. Sitophilus oryzae populations were reduced by approximate 90%. The populations of C. ferrugineus and T. castaneum were reduced by 50--70% in both treatments. Similar reductions were seen in offspring adults.;Unlike other insecticides, protein-rich pea flour was neither repellent and nor toxic to Anisopteromalus calandrae (Howard), a parasitoid of S. oryzae, or Cephalonomia waterstoni (Gahan), a parasitoid of C. ferrugineus. Protein-rich pea flour did not increase the mortality of the two parasitic wasps. It did not reduce the searching ability of parasitoids, and nor did it reduce the production of parasitoid offspring. A large-scale trial combining 0.1% pea protein with parasitoids showed that the population of S. oryzae was reduced by 98% and that of C. ferrugineus by 75%, which is greater than treatments of parasitoids alone (46% for S. oryzae, 50% for C. ferrugineus).;Neem and protein-rich pea flour acted synergistically against T. castaneum. Malathion and protein-rich pea flour acted synergistically against S. oryzae. In contrast, combination of protein-rich pea flour with diatomaceous earth or with pyrethrum acted additively against S. oryzae. All other combinations acted antagonistically. A mixed function oxidase inhibitor, piperonyl butoxide, increased the effectiveness of a pea extract as an antifeedant, and increased the mortality of S. oryzae. However, a gluthion-S-transferase inhibitor, diethy meleate, did not enhance the antifeedant effect or toxicity of the pea extract.;A large volume of gas was observed in the midgut of S. oryzae fed on flour disks treated with protein-rich pea flour, pea extract or pea peptide. Vital staining with fluorescent dyes, calcein AM and propidium iodide, showed that the tissue of the midgut of the insects was damaged by the pea peptides.
机译:每年,全世界的储藏昆虫造成数十亿美元的损失。合成杀虫剂被广泛用于控制贮藏昆虫。然而,由于担心谷物中的杀虫剂残留,对环境的破坏,工人安全,抗杀虫剂和成本增加,它们的使用正在减少。为了减少合成杀虫剂的使用,已对许多天然产物进行了研究,以控制其储存的昆虫。实验室研究表明,富含蛋白质的豌豆粉(一种食品添加剂)对三种常见的储藏昆虫昆虫Sitophilus oryzae(L。)(大米象鼻虫),Cryptolestes ferrugineus(Stephens)(生锈的甲虫)具有驱避,毒性和减少后代的作用。和Tribolium castaneum(Herbst)(红甲虫粉)。米酒Sitophilus oryzae是最敏感的物种,其次为C. ferrugineus和T. castaneum。固定在小麦和大麦上的昆虫对富含蛋白质的豌豆粉表现出相似的敏感性。需要较高剂量以控制玉米上的昆虫。富含蛋白质的豌豆粉在高温和低水分下更具毒性。尽管富含蛋白质的豌豆粉减少了米曲霉对包装材料的渗透,但并不能阻止昆虫进入多孔包装。;在六个30吨,每个装满11吨大麦的垃圾箱中进行的粮仓试验表明,昆虫较少移入大麦,然后用富含蛋白质的豌豆粉处理的大麦移出。用0.1%的富含蛋白质的豌豆粉处理整个增益质量与用0.5%的富含蛋白质的豌豆粉处理上半部分具有相似的效果。米果嗜丝菌数量减少了约90%。在两种处理中,ferrugineus C.和Castaneum T.的种群均减少了50--70%。与其他杀虫剂不同,富含蛋白质的豌豆粉与其他杀虫剂相似,对米曲霉S.的寄生虫Anisopteromalus calandrae(霍华德)或C. ferrugineus。富含蛋白质的豌豆粉并未增加两次寄生黄蜂的死亡率。它既没有降低寄生虫的搜寻能力,也没有降低寄生虫后代的产生。一项将0.1%豌豆蛋白与拟寄生虫结合的大规模试验表明,米曲霉和麦角隐孢子虫的种群减少了98%,减少了75%,这比仅使用拟寄生虫的种群减少了(米曲霉的种群为46%)。 ,对于C. ferrugineus而言为50%。);印Ne和富含蛋白质的豌豆粉对T. castaneum具有协同作用。马拉硫磷和富含蛋白质的豌豆粉对米曲霉具有协同作用。相反,富含蛋白质的豌豆粉与硅藻土或除虫菊的组合对米曲霉具有附加作用。所有其他组合起反作用。混合功能氧化酶抑制剂胡椒基丁醇盐可增加豌豆提取物作为拒食剂的效力,并提高米曲霉的死亡率。然而,谷胱甘肽-S-转移酶抑制剂二乙二酸二乙胺并没有增强豌豆提取物的拒食作用或毒性。豌豆粉,豌豆提取物或豌豆肽。用荧光染料,钙黄绿素AM和碘化丙啶进行的活体染色表明,豌豆肽破坏了昆虫中肠的组织。

著录项

  • 作者

    Hou, Xingwei.;

  • 作者单位

    University of Manitoba (Canada).;

  • 授予单位 University of Manitoba (Canada).;
  • 学科 Entomology.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 231 p.
  • 总页数 231
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号