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臭氧对两种鞘翅目害虫的防治效果及其对大麦品质和发芽率的影响

Ozone Efficiency on Two Coleopteran Insect Pests and Its Effect on Quality and Germination of Barley.

作者信息

Dong Xue, Agarwal Manjree, Xiao Yu, Ren Yonglin, Maker Garth, Yu Xiangyang

机构信息

Institute of Agricultural Resources and Environment, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.

College of Science, Health, Engineering and Education, Murdoch University, Perth 6150, Australia.

出版信息

Insects. 2022 Mar 24;13(4):318. doi: 10.3390/insects13040318.

Abstract

Ozone (O) is a potential fumigant to control pests in stored grain since it can safely and rapidly auto-decompose without leaving residues. In this study, the efficacy of O on all life stages of (Fabricius) and (Herbst) in barley and the physiological effects on barley and its quality were investigated. Complete control of all life stages of pests was obtained at 700 ppm for 1440 min of ozone exposure without negatively impacting the contents of soluble protein, moisture content, seed colour, hardness, and the weight of thousand barley seeds. The eggs and pupae of these two insects were the more tolerant stages than their larvae and adults. Prolonged exposure times (40 to 1440 min) and mortality assessment intervals (1, 2, and 7 days) increased O efficacy due to the reaction characteristics and delayed toxicity. Aging barley seeds appeared to be more sensitive to prolonged ozone duration than new seeds. A total of 20 and 40 min could promote germination rate, and longer O exposure (1440 min) was unfavourable for germination and seedling growth. Thus, it is imperative to select an optimal O exposure time to transfer ozone into quality contributors of final products and achieve the desired functional outcomes.

摘要

臭氧(O₃)是一种潜在的熏蒸剂,可用于控制储存谷物中的害虫,因为它能够安全、快速地自动分解且不留下残留物。在本研究中,研究了臭氧对大麦中赤拟谷盗(Fabricius)和杂拟谷盗(Herbst)所有虫态的防治效果以及对大麦及其品质的生理影响。在700 ppm的臭氧暴露1440分钟的条件下,能完全控制害虫的所有虫态,且不会对可溶性蛋白含量、水分含量、种子颜色、硬度和千粒大麦种子重量产生负面影响。这两种昆虫的卵和蛹比其幼虫和成虫更耐受。由于反应特性和延迟毒性,延长暴露时间(40至1440分钟)和死亡率评估间隔(1、2和7天)提高了臭氧的防治效果。老化的大麦种子似乎比新种子对延长的臭氧处理时间更敏感。总共20分钟和40分钟的臭氧处理可提高发芽率,而较长时间的臭氧暴露(1440分钟)不利于发芽和幼苗生长。因此,必须选择最佳的臭氧暴露时间,以使臭氧成为最终产品品质的贡献因素并实现预期的功能效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6784/9027898/0f8305559ca5/insects-13-00318-g001.jpg

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