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首页> 外文期刊>African Entomology >The effect of egg storage of laboratory reared Anopheles arabiensis (Diptera: Culicidae) on egg hatch synchronisation, pupation success and pupal production time
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The effect of egg storage of laboratory reared Anopheles arabiensis (Diptera: Culicidae) on egg hatch synchronisation, pupation success and pupal production time

机译:实验室饲料饲料alapheles arablesis(diptera:culicidae)对蛋舱面同步,蛹成功和蛹生产时间的影响

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摘要

Use of the sterile insect technique (SIT) targeting the malaria vector Anopheles arabiensis has been proposed and is currently under investigation. The SIT requires production of large numbers of sterile males and therefore mass-rearing of the target species is required. One critical factor during mass-rearing for sterile releases is the need to synchronise developmental life stages to assist in pupae and adult harvesting during production. However, by nature An. arabiensis egg hatching, and subsequent development is staggered as a survival strategy resulting in un synchronised production. This causes a loss in efficiency during mass-rearing. This study aimed to investigate the effect of egg storage on egg hatch synchronisation, survival rate of aquatic life stages and the subsequent effect on production lead-time of a laboratory-reared An. arabiensis strain. Eggs from colonised An. arabiensis were collected, drained onto a filter paper to remove excess water, and stored for an increasing number of days, up to four days. After the storage time, proportion hatching and pupating as well as the time to hatch and pupation were measured and analysed using a one-way ANOVA and a Kaplan-Meier Survival analysis, respectively. No significant difference was observed in the proportion hatching or pupating between the different storage durations. However, there was a significant reduction in time to hatch and pupate. In conclusion, egg storage is a viable method to synchronise hatching, which could, in combination with other factors, assist in synchronous production of pupae for this strain without having adverse effects on survival.
机译:已经提出了使用靶向疟疾载体的无菌昆虫技术(SIT)Arabriensis,目前正在调查中。静坐需要生产大量无菌雄性,因此需要靶物种的质量饲养。无菌释放的大规模饲养期间的一个关键因素是需要使发育寿命同步,以帮助在生产过程中有助于蛹和成人收获。但是,本质上是一个。 Arabiensis鸡蛋孵化,随后的发展被交错为造成联合国同步生产的生存战略。这在大规模饲养期间导致效率损失。本研究旨在探讨卵储存对水生寿命,生存率的影响以及随后对实验室饲养的生产延期时间的影响。 Arabiensis菌株。来自殖民的鸡蛋。收集阿拉伯人,将滤纸排出到过滤纸上以除去多余的水,并储存越来越多的天数,最长为4天。在储存时间之后,使用单向ANOVA和Kaplan-Meier存活分析测量并分析比例孵化和蛹以及孵化和蛹化的时间。在不同储存持续时间之间的比例孵化或蛹中没有观察到显着差异。然而,孵化和蛹化的时间显着减少。总之,卵子储存是一种可行的方法,可以同步孵化,这可以与其他因素组合,协助这种菌株的同步生产,而不会对存活产生不利影响。

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  • 来源
    《African Entomology》 |2019年第2期|共6页
  • 作者单位

    Univ Witwatersrand SAMRC Collaborating Ctr Multidisciplinary Res Mal Wits Res Inst Malaria Sch Pathol Fac Hlth Sci Johannesburg South Africa;

    Univ Witwatersrand SAMRC Collaborating Ctr Multidisciplinary Res Mal Wits Res Inst Malaria Sch Pathol Fac Hlth Sci Johannesburg South Africa;

    IAEA Insect Pest Control Lab Joint FAO IAEA Div Nucl Tech Food &

    Agr Wagramerstr 5 POB 100 A-1400 Vienna Austria;

    Univ Witwatersrand SAMRC Collaborating Ctr Multidisciplinary Res Mal Wits Res Inst Malaria Sch Pathol Fac Hlth Sci Johannesburg South Africa;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 昆虫学;
  • 关键词

    malaria vector; mass-rearing; mosquito; survival; sterile insect technique;

    机译:疟疾矢量;大规模饲养;蚊子;生存;无菌昆虫技术;

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