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首页> 外文期刊>Korean Journal of Applied Entomology >Technique to Generate Sterile Males of Striped Fruit Flies, Zeugodacusscutellata, using Electron Beam Irradiation and their Application to Genetic Control
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Technique to Generate Sterile Males of Striped Fruit Flies, Zeugodacusscutellata, using Electron Beam Irradiation and their Application to Genetic Control

机译:生成条纹果蝇的无菌雄性的技术,Zeugodacusscutellata,使用电子束照射及其在遗传控制中的应用

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摘要

The striped fruit fly, Zeugodacus scutellata, is endemic in Korea, but it has been regarded as one of the serious quarantine pests throughout the world. Sterile insect release technique (SIT) has been used to eradicate quarantine fruit flies. This study developed a technique to generate sterile males and applied SIT to control Z. scutellata. First of all, the reproductive systems of Z. scutellata adults were examined with fluorescent microscope. Polytrophic ovaries comprises of around 100 follicles with developing oocytes. Each follicle contains an oocyte with several nurse cells and are surrounded with follicular epithelium. Oocyte development began at 10 days after adult emergence (DAE) and formed chorionated oocytes after 20 DAE. On the other hand, male testes were well developed just after adult emergence. The vas deferens was filled with motile sperms. To generate sterile males, different doses (0~ 1,000 Gy) doses of electron beam were irradiated to 3-5 days old pupae of Z. scutellata. When male pupae were irradiated with electron beam at 200 Gy, they developed and mated with females without any significant difference compared to untreated males. Although the untreated females mated with the 200 Gy-irradiated males laid eggs, no eggs did nothatch. The 200 Gy-irradiated males were then applied to untreated male and female flies in a density ratio of 1:9 (untreated males: treated males). The laid eggs suffered significant infertility. These results suggest that electron beam-irradiated pupaeat 200 Gy resulted in male sterility and the resulting males would be applied to SIT.
机译:条纹果蝇Zeugodacus scutellata是韩国的地方,但它被认为是全世界的严重检疫害虫之一。无菌昆虫释放技术(SIT)已被用于根除检疫果蝇。本研究开发了一种生成无菌雄性的技术,并应用于控制Z.CoUtellata。首先,用荧光显微镜检查Z.Scutellata成人的生殖系统。多发性卵巢包含约100个卵泡,具有显影卵母细胞。每个卵泡含有具有几种护士细胞的卵母细胞,并且包围着卵泡上皮。卵母细胞发育在成人出苗(DAE)后10天开始,并在20 dae后形成绒毛膜卵母细胞。另一方面,在成人出现后,雄性睾丸均发育良好。输精管填充有动机精子。为了产生无菌雄性,将不同的剂量(0〜1000gy)的电子束辐射至3-5天的Z.CoUtellata的蛹。当用200GY的电子束照射雄性蛹时,与未经处理的雄性相比,它们与女性发育和配合而不会有任何显着差异。虽然未经治疗的女性与鸡蛋的200个Gy辐照的男性交配,但没有鸡蛋没有鸡蛋。然后将200Gy辐照的雄性施加到未处理的雄性蝇的密度比为1:9(未处理的男性:处理的雄性)。被占用的鸡蛋遭受了显着的不孕症。这些结果表明,电子束照射的蛹200Gy导致雄性不育,并且将施加所得的雄性静置。

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