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Modified Atmosphere Does Not Reduce the Efficacy of Phytosanitary Irradiation Doses Recommended for Tephritid Fruit Flies

机译:改性气氛不会降低推荐用于Tepharitid果蝇的植物检制剂量的疗效

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Phytosanitary irradiation (PI) has been successfully used to disinfest fresh commodities and facilitate international agricultural trade. Critical aspects that may reduce PI efficacy must be considered to ensure the consistency and effectiveness of approved treatment schedules. One factor that can potentially reduce PI efficacy is irradiation under low oxygen conditions. This factor is particularly important because storage and packaging of horticultural commodities under low oxygen levels constitute practices widely used to preserve their quality and extend their shelf life. Hence, international organizations and regulatory agencies have considered the uncertainties regarding the efficacy of PI doses for insects infesting fresh commodities stored under low oxygen levels as a rationale for restricting PI application under modified atmosphere. Our research examines the extent to which low oxygen treatments can reduce the efficacy of phytosanitary irradiation for tephritids naturally infesting fruits. The effects of normoxia (21% O 2 ), hypoxia (~5% O 2 ), and severe hypoxia ( 0.5% O 2 ) on radiation sensitivity of third instars of Anastrepha fraterculus (sensu lato), A. ludens (Loew), Bactrocera dorsalis (Hendel), and Ceratitis capitata (Wiedemann) were evaluated and compared at several gamma radiation doses. Our findings suggest that, compared to normoxia, hypoxic and severe-hypoxic conditioning before and during irradiation can increase adult emergence and contribute to advancement of larval development of tephritid fruit flies only at low radiation doses that are not used as phytosanitary treatments. With phytosanitary irradiation doses approved internationally for several tephritids, low oxygen treatments applied before and during irradiation did not increase the emergence rates of any fruit fly species evaluated, and all treated insects died as coarctate larvae. Thus, the findings of our research support a re-evaluation of restrictions related to phytosanitary irradiation application under modified atmospheres targeting tephritid fruit flies.
机译:植物检制辐照(PI)已成功用于消毒新鲜商品,促进国际农业贸易。必须考虑可能降低PI效能的关键方面,以确保批准的治疗时间表的一致性和有效性。在低氧气条件下,可以潜在地降低PI效能的一个因素是辐照。这一因素尤为重要,因为在低氧水平下的园艺商品的储存和包装构成了广泛用于保护其质量并延长保质期的习俗。因此,国际组织和监管机构已经考虑了有关PI剂量对昆虫的疗效的不确定因素,用于在低氧水平下储存的新鲜商品作为限制改性气氛下的PI应用的理由。我们的研究检查了低氧气处理的程度可以降低植物检测的Tepharitids自然侵染水果的疗效。常氧(21%O 2),缺氧(〜5%O 2)和严重缺氧(<0.5%O 2)对Anastrepha Fratsculus(Sensu Lato),A. Ludens(Loew)的第三龄辐射敏感性的影响,在几种γ辐射剂量下评估并比较了Bactrocera dorsalis(Hendel)和Caidemann)和Caidemann)。我们的研究结果表明,与常氧,辐照和辐照前后的缺氧和严重缺氧调理相比,可以增加成人的出苗,并有助于Tepharitid果蝇的幼虫发育仅在不使用作为植物检疫处理的低辐射剂量。随着植物检制剂量批准的几个Tephritids批准,辐射前和辐射前和辐射前的低氧处理并未增加任何评估的任何果蝇种类的出苗率,并且所有处理的昆虫都像仙气切入幼虫一样死亡。因此,我们的研究结果支持重新评估与靶向Tepharitid果蝇的改性环境下与植物检疫辐射应用有关的限制。

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