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Nitric Oxide as a Potent Fumigant for Postharvest Pest Control

机译:一氧化氮作为强力熏蒸剂,可用于有害生物防治

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There is a great demand for safe and effective alternative fumigants to replace methyl bromide and other toxic fumigants for postharvest pest control. Nitric oxide, acommonsignal molecule in biological systems, was found to be effective and safe to control insects under ultralow oxygen conditions. Four insect species including western flower thrips, Frankliniella occidentalis (Pergande) (Thysanoptera: Thripidae); aphid, Nasonovia ribisnigri (Mosley) (Homoptera: Aphididae); confused flour beetle, Tribolium confusum Jacquelin du Val (Coleoptera: Tenebrionidae); and rice weevil, Sitophilus oryzae (L.) (Coleoptera: Curculionidae), at various life stages were fumigated with 0.1-2.0% nitric oxide under ultralow oxygen levels of ≤50 ppm in 1.9-liter glass jars at 2-25°C depending on insect species. Fumigations were effective against all four insect species. Efficacy of nitric oxide fumigation increased with nitric oxide concentration, treatment time, and temperature. There were also considerable variations among insect species as well as life stages in susceptibility to nitric oxide fumigation. Complete control of thrips was achieved in 2 and 8 h with 2.0 and 0.2% nitric oxide, respectively, at 2°C. At the same temperature, complete control of the aphid was achieved in 3, 9, and 12 h with 1.0, 0.5, and 0.2% nitric oxide, respectively. Larvae, pupae, and adults of confused flour beetle were effectively controlled in 24 h with 0.5% nitric oxide at 20°C. Complete mortality of confused flour beetle eggs was achieved in 24 h with 2.0% nitric oxide at 10°C. Rice weevil adults and eggs were effectively controlled with 1.0% nitric oxide in 24 and 48 h, respectively, at 25°C. These results indicate that nitric oxide has potential as a fumigant for postharvest pest control.
机译:迫切需要安全有效的替代熏蒸剂,以替代甲基溴和其他有毒熏蒸剂,以进行收获后害虫控制。一氧化氮是生物系统中的常见信号分子,被发现在超低氧条件下能有效,安全地控制昆虫。四种昆虫种类,包括西部花蓟马,西花蓟马(Pergande)(Th翅目:蓟马);蚜虫,Nasonovia ribisnigri(Mosley)(同翅目:蚜科);混淆的甲虫面粉,Tribolium confusum雅克林·杜瓦尔(鞘​​翅目:天蛾科);和稻象鼻虫(Sitophilus oryzae(L.)(Coleoptera:Curculionidae))在0.1至2.0 ppm的超低氧气含量下,在2-25°C下,在≤50ppm的超低氧水平下,用0.1-2.0%一氧化氮熏蒸不同生命阶段的稻实蝇。在昆虫种类上。熏蒸对所有四种昆虫均有效。一氧化氮熏蒸的功效随一氧化氮浓度,处理时间和温度的增加而增加。昆虫物种之间以及生命阶段对一氧化氮熏蒸的敏感性也存在很大差异。在2°C下分别用2.0%和0.2%的一氧化氮分别在2和8小时内实现了对蓟马的完全控制。在相同温度下,分别用1.0%,0.5%和0.2%的一氧化氮分别在3、9和12小时内完全控制了蚜虫。在20°C下,用0.5%一氧化氮在24小时内有效地控制了幼虫,p和成虫的粉状甲虫。在10°C下用2.0%一氧化氮在24小时内达到了混淆的甲壳虫卵的完全死亡。在25°C下,分别在24和48小时内分别用1.0%一氧化氮有效控制稻象鼻虫成虫和卵。这些结果表明,一氧化氮具有潜在的熏蒸作用,可用于收获后害虫控制。

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