Radiation Disinfestation of Honeybee Combs Infested with Greater Wax Moth Eggs

IF 0.7 4区 农林科学 Q4 ENTOMOLOGY
M. Mansour
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引用次数: 2

Abstract

Abstract The sensitivity of different developmental stages of greater wax moth (Galleria mellonella L.) eggs to gamma irradiation was examined. Eggs, 25 to 144 h-old, were exposed at 48 h intervals to gamma radiation dosages (50 to 400 Gy), and the effects on egg hatch, pupation and adult emergence were investigated. The developmental rate of irradiated-egg larvae and pupae to adult stage was also studied. Results showed that the irradiation sensitivity of G. mellonella eggs decreased with increased age of the eggs when irradiated. In 25–48 h-old eggs, 50 Gy dose significantly reduced egg hatch and at 200 Gy dose no egg hatch was observed. Eggs 73–96 h-old were slightly more tolerant to irradiation treatment; hatching completely ceased at 250 Gy dose. Sensitivity to gamma irradiation reached its lowest level however when 121–144 h-old eggs (few h. before egg hatch) were irradiated. 350 Gy dose reduced egg hatch to about 3%, and at 400 Gy no egg hatch was noted. Survival to the adult stage was also negatively affected. At the most radio-tolerant stage (121–144 h-old), 100 Gy dose significantly reduced larval survival to the adult stage and 300 Gy completely prevented it. The development rate of larvae and pupae resulting from irradiated eggs was also negatively affected.
大蜡蛾卵感染蜂窝的辐射消毒
摘要研究了不同发育阶段大蜡蛾(Galleria mellonella L.)卵对γ辐射的敏感性。用50 ~ 400 Gy的γ辐射剂量,每隔48 h照射25 ~ 144 h的卵,观察其对卵孵化、化蛹和成虫羽化的影响。研究了辐照卵幼虫和蛹到成虫期的发育速率。结果表明,随着卵龄的增加,黄颡鱼卵的辐照敏感性降低。在25 ~ 48 h龄的卵中,50 Gy剂量显著降低了卵的孵化率,200 Gy剂量下未观察到卵的孵化。73 ~ 96 h龄的卵对辐照的耐受性稍强;在250 Gy剂量时完全停止孵化。而在121 ~ 144 h龄的卵(卵孵化前几h)辐照时,对γ辐射的敏感性最低。350 Gy剂量使卵孵化率降低到3%左右,400 Gy剂量则没有卵孵化。成虫期的存活率也受到负面影响。在最耐受期(121 ~ 144 h), 100 Gy剂量显著降低了幼虫到成虫期的存活率,300 Gy剂量完全阻止了成虫期的存活率。受辐照卵对幼虫和蛹的发育速度也有不利影响。
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
9
审稿时长
>12 weeks
期刊介绍: The Journal of Apicultural Science is a scientific, English-language journal that publishes both original research articles and review papers covering all aspects of the life of bees (superfamily Apoidea) and broadly defined apiculture. The main subject areas include: -bee biology- bee genetics- bee breeding- pathology and toxicology- pollination and bee botany- bee products- management, technologies, and economy- solitary bees and bumblebees
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