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Laboratory studies on control of the maize weevil Sitophilus zeamais by the parasitoid Anisopteromalus calandrae

机译:拟寄生蜂Anisopteromalus calandrae控制玉米象鼻虫Sitophilus zeamais的室内研究

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摘要

Anisopteromalus calandrae (Howard), a cosmopolitan parasitoid, attacks several beetle pests of stored products, including the maize weevil, Sitophilus zeamais (Motschulsky). Two laboratory experiments were conducted at ambient conditions (25-29 °C, 60-70% RH, natural photoperiod). A short-term experiment evaluated the density of A. calandrae (0, 4, 8, 12, 16, or 20 per box) for the optimal production of parasitoids in 3825-cm ~3 boxes containing milled rice. The percentage of parasitoid emergence was highest and the percentages of weevil emergence and parasitoid-induced mortality i.e., parasitoid mortality resulting from superparasitism were relatively low with 16 females per box rather than with smaller (0 to 12) or larger (20) numbers of females added per box. The decline in parasitoid emergence at the highest parasitoid density tested (20 females per box) was probably due to superparasitism. A long-term experiment was conducted to determine the parasitoid densities (0, 2, 4, 6, 8, or 10 per bottle) that most effectively suppress weevils in milled rice during 6 months of storage in 1-1 bottles. To simulate repetitive release of parasitoid, the same number of parasitoids was introduced after each monthly sampling. The number of maize weevils decreased as parasitoid density increased. The best control was obtained with 10 female parasitoids per bottle. At this density, the number of emerged weevil remained stable from the third to the sixth month. Based on the short-term experiment, a parasitoid-host ratio of 1:47 will produce the largest number of parasitoids. Based on the long-term experiment, a parasitoid-host ratio of 1:30 will provide the best control of maize weevils in a monthly release program. The current results indicate that large-scale experiments on biological control of the maize weevil with A. calandrae are now needed.
机译:世界性的寄生蜂(Anisopteromalus calandrae)(霍华德)攻击存储产品的几种甲虫害虫,包括玉米象鼻虫(Sitophilus zeamais)(Motschulsky)。在环境条件下(25-29°C,相对湿度60-70%,自然光周期)进行了两次实验室实验。一项短期实验评估了A. calandrae的密度(每箱0、4、8、12、16或20),以便在装有碾米的3825-cm〜3箱中最佳生产拟寄生物。寄生虫的出现百分比最高,象鼻虫出现和由寄生虫引起的死亡率所占的百分比最高,即,超寄生虫引起的寄生虫死亡率相对较低,每箱有16名女性,而不是女性人数较少(0至12)或较大(20)每盒添加。在最高的寄生虫密度下(每箱20雌性),寄生虫出现的减少可能是由于超寄生虫引起的。进行了一项长期实验,以确定在1-1瓶中储存6个月内最有效地抑制碾米中的象鼻虫的寄生虫密度(每瓶0、2、4、6、8或10)。为了模拟寄生虫的重复释放,在每个月采样后引入相同数量的寄生虫。玉米象鼻虫的数量随寄生虫密度的增加而减少。每瓶含10只雌性寄生虫,可获得最佳对照。在这种密度下,从第三个月到第六个月出现的象鼻虫数量保持稳定。根据短期实验,1:47的拟寄生虫宿主比将产生最大数量的拟寄生虫。根据长期实验,在月度释放计划中,1:30的拟寄生虫寄主比将提供最佳的玉米象鼻控制。目前的结果表明,现在需要大规模的实验来对玉米象鼻虫进行生物防治。

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