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首页> 外文期刊>Malaria Journal >Optimization of mosquito egg production under mass rearing setting: effects of cage volume, blood meal source and adult population density for the malaria vector, Anopheles arabiensis
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Optimization of mosquito egg production under mass rearing setting: effects of cage volume, blood meal source and adult population density for the malaria vector, Anopheles arabiensis

机译:大规模饲养条件下蚊卵的优化生产:网箱体积,血粉来源和疟疾媒介阿拉伯按蚊成年种群密度的影响

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Background Anopheles arabiensis is one of the major malaria vectors that put millions of people in endemic countries at risk. Mass-rearing of this mosquito is crucial for strategies that use sterile insect technique to suppress vector populations. The sterile insect technique (SIT) package for this mosquito species is being developed by the Insect Pest Control Subprogramme of the Joint FAO/IAEA Division of Nuclear Techniques in Food and Agriculture. To improve mass-rearing outcomes for An. arabiensis, the question of whether the egg production by females would be affected by the size of the adult holding cages, the source of the blood meal and the total number of pupae that could be loaded into the cages was addressed and finally the impact of adding additional pupae to the cage daily to maintain adult numbers on egg productivity assessed. MethodsMass production cages of two different volumes, two different sources of blood meal (bovine and porcine) and two different population densities (cages originally loaded with either 15,000 or 20,000 pupae) were tested and evaluated on the basis of eggs produced/cage or per female. Males and females pupae with a ratio of 1:1 were added to the cages at day 1 and 2 of pupation. The emerging adults had constant access to 5% sugar solution and blood fed via the Hemotek membrane feeding system. Eggs were collected either twice a week or daily. A generalized linear model was used to identify factors which gave significantly higher egg production. ResultsNeither cage volume nor blood meal source affected egg production per cage or per female. However, increasing population density to 20,000 pupae had a negative effect on eggs produced per cage and per female. Although high density negatively impacted egg production, adding 1000 daily additional pupae compensating for daily mortality resulted in a substantial increase in egg production. Moreover, in all tests the first and the third egg batches collected were significantly higher than others eggs batches. With the equipment and protocols described here and routinely used at the Insect Pest Control Laboratory (IPCL), it was possible to produce up to 120,000?eggs/cage/day. ConclusionThese results demonstrated that 15,000 is the optimal number of pupae to be loaded into the Anopheles Mass production cages. Under this condition, an average of 40 eggs per female was obtained for five gonotrophic cycles. However, an improvement in egg production can be achieved by daily addition, to the original 15,000 pupae, of one thousand pupae a day. Interestingly, feeding females with bovine or porcine blood using both large and small versions of the mass production cage did not affect egg productivity.
机译:背景阿拉伯按蚊是疟疾的主要传播媒介之一,它使流行国家的数百万人处于危险之中。这种蚊子的大规模饲养对于使用无菌昆虫技术抑制媒介种群的策略至关重要。粮农组织/国际原子能机构粮食和农业核技术联合司的害虫控制次级计划正在开发针对这种蚊子的不育昆虫技术(SIT)软件包。为了提高An。阿拉伯的问题,解决了女性的产卵量是否会受到成年饲养笼的大小,血粉来源和可装入笼中的of总数的影响,最后增加了添加的影响每天向笼子中添加额外的p,以维持成虫卵产卵量。方法对两种不同体积,两种不同血粉来源(牛和猪)和两种不同种群密度(最初装有15,000或20,000 up的笼子)的成年笼进行了测试,并根据产卵/笼子或每个雌性进行了评估。 。在化up的第1天和第2天,将比例为1:1的雄性和雌性up添加到笼子中。新兴成年人可以不断获得5%的糖溶液和通过Hemotek膜饲喂系统饲喂的血液。每周或每天两次收集鸡蛋。使用广义线性模型来确定产生明显更高产蛋量的因素。结果笼子体积或血粉来源均不会影响每个笼子或每个雌性的产卵量。但是,将种群密度提高到20,000 up对每个笼子和每个雌性产生的卵有不利影响。尽管高密度对产蛋量有负面影响,但每天增加1000只p来补偿每日死亡率,却导致产蛋量大幅增加。此外,在所有测试中,收集的第一批和第三批鸡蛋明显高于其他批次的鸡蛋。使用这里描述的设备和协议,并在病虫害防治实验室(IPCL)常规使用,每天最多可以生产120,000个鸡蛋/笼子。结论这些结果表明,将15,000个is装到按蚊大规模生产笼中是最佳的。在这种条件下,每个女性在五个营养周期内平均获得40个卵。但是,每天向最初的15,000 p中添加每天一千个up,可以提高产蛋量。有趣的是,使用大号和小号量产笼子给雌性喂牛或猪血都不会影响蛋的生产率。

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