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APPLICATION OF GAMMA RADIATION ON LONGEVITY OF SOME MITES SPECIES (ACARI: TETRANYCHIDADE)

机译:γ辐射对一些螨型物种寿命的应用(Acari:Tetrychadade)

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Mites are pests agricultural found in various environments accessible to animal life: soil, aerial parts of the plants, host insects. In this research the effects of gamma irradiation on longevity of mite pests of the tetranychidae family have been studied. The mites were irradiated in a source of Cobalt-60, Gammacell-220 type, at a dose rate of 0.486 kGy located in the CENA/USP, in the doses of 0 (control), 100, 200, 300, and 400 Gy with sixteen replicates per dose. After the irradiation, the mites were placed in petri dishes totalizing 5 treatments in 32 repetitions. The analysis of variance design with completely randomized design using the Statistical Analysis System (SAS) and the Tukey test, the verification of means. Were evaluated daily the adult mortality and longevity of irradiated mites. After 25 days was observed a mean longevity of mites, for O.ilicis, 100 Gy was equal the control dose (18.3 days), but to T. desertorum and T. urticae the larger longevity was observed in the dose of 200 Gy (19.0 days) being that this dose, obtained the larger longevity in comparison to control dose (18.5 days), in general the longevity decreased in relation to increased doses. Thus, only the dose of 100 Gy and 200 Gy stimulated an increased the longevity in O. ilicis and T. desertorum and T. urticae respectively. The exact mechanism by which the mites are tolerant to avoid damage caused by radicals when exposed to ionizing radiation is not fully understood.
机译:螨虫是在动物生活中可达的各种环境中发现的害虫农业:土壤,植物的空中部位,宿主昆虫。在这项研究中,已经研究了γ辐射对四乡族家族螨虫长寿的影响。螨虫在钴-60,γ-60,γ/ USP中的剂量率下照射在Cena / USP中的剂量率(对照),100,200,300和400 Gy的剂量率16个每剂重复。照射后,将螨虫置于32次重复中的5种治疗。使用统计分析系统(SAS)和Tukey Test的完全随机设计方差设计分析,验证手段。每天评估成年死亡率和辐照螨虫的寿命。在25天后观察到螨虫的平均寿命,对于O.ilicis,100 Gy等于对照剂量(18.3天),但对于T. desertorum和T. urticae在200 Gy的剂量中观察到较大的寿命(19.0作为这种剂量,与对照剂量(18.5天)相比,获得更大的寿命,一般来说,寿命与增加剂量增加。因此,只有100 GY和200GY的剂量刺激了O.Ilicis和T.Faserorum和T.Irticae的寿命增加。螨虫可容忍的确切机制,以避免在暴露于电离辐射时由自由基引起的损坏。

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