伽玛辐射作为一种潜在的植物检疫处理方法防治大灰蛾(双翅目:灰蛾科)

F. Baldo, A. Villavicencio, F. Schmidt, A. Raga
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引用次数: 1

摘要

果蝇(双翅目:蝗科)是世界范围内园艺作物的主要害虫,对水果生产造成直接和间接的危害,其中包括只寄生于葫芦科水果的大蝇(Anastrepha grandis, Macquart, 1846)。剂量-反应试验用于研究伽马辐射暴露对体外和阿特拉斯南瓜(Cucurbita moschata) 24 - 48小时卵和3龄幼虫的影响。阿特拉斯南瓜的以下物理化学性质植物学报,36(4):19-31,2021;文章no.ARRB。6717320暴露于伽马辐射评估:可滴定的总酸度,糖,pH值,外部颜色和质地。研究发现,在体外条件下,20.0 Gy剂量的γ辐射能够防止幼虫羽化,但要防止三龄幼虫暴露后羽化,则需要200 Gy剂量。在阿特拉斯南瓜中,200 Gy和250 Gy剂量的伽马射线分别能够阻止大纹田鼠成虫从卵和幼虫中羽化。Probit 9测定的防虫卵和防虫卵三龄幼虫的辐射剂量分别为257.13 Gy和270.25 Gy。伽玛辐射对阿特拉斯南瓜的理化性质没有显著影响,这表明伽玛辐射可能是一种潜在的有用的瓜类大斑蚜检疫控制技术。
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Gamma Radiation as a Potential Phytosanitary Squash Treatment for the Control of Anastrepha grandis (Macquart) (Diptera: Tephritidae)
Fruit flies (Diptera: Tephritidae) are the primary pests of horticultural crops worldwide, causing both direct and indirect damage to the fruit production, including Anastrepha grandis (Macquart, 1846), which exclusively infests Cucurbitaceae fruit. Dose-response tests were used to examine the effects of gamma radiation exposure on 24 – 48 h old eggs and third instar larvae, both in vitro and in Atlas squashes (Cucurbita moschata). The following physicochemical properties of Atlas squashes Original Research Article Baldo et al.; ARRB, 36(4): 19-31, 2021; Article no.ARRB.67173 20 exposed to gamma radiation were evaluated: titratable total acidity, sugar, pH, external colouration, and texture. It was found that under in vitro conditions, a 20.0 Gy dose of gamma radiation was able to prevent larval eclosion, but a 200 Gy dose was necessary to prevent emergence after the exposure of third instar larvae. In Atlas squashes, 200 and 250 Gy doses of gamma radiation were able to prevent the emergence of A. grandis adults from eggs and larvae, respectively. The radiation doses estimated by Probit 9 to prevent emergence from squashes infested with eggs and third instar larvae were 257.13 Gy and 270.25 Gy respectively. The use of gamma radiation did not significantly affect the physicochemical properties of Atlas squashes, which suggested that gamma radiation may represent a potentially useful technique for the quarantine control of A. grandis in cucurbits.
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