一种低成本、低劳动效率的饲养入侵甲虫——截蝽(鞘翅目:黑蝽科)的方法。

Raman Bansal, Jhalendra Rijal, David Haviland, Sudan Gyawaly, Houston Wilson
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摘要

carpophilus truncatus Murray, 1864(鞘翅目:Nitidulidae)是最近在美国加州果树果园发现的一种入侵害虫。在这里,我们报告了一种简单、省力、成本效益高的香蕉和工业砂成分的育苗系统。香蕉片既可以作为幼虫和成虫的食物来源,也可以作为水分来源,促进在下面的沙子中化蛹。香蕉和沙子在一个容器内的组合成功地支持了所有生命阶段的多代发展。在26°C、60%相对湿度、16:8 h(光暗)光照条件下,饲养单元记录的平均发育时间为:卵到游离期幼虫,7.54 d;徘徊期至成虫期,11.08天;成人寿命为94.33天。这些香蕉沙饲养单元有助于收集除卵外所有发育阶段的香蕉。为了解决这一挑战,利用利马豆为基础的琼脂饲料的独立产卵室进行了评估。这些室有效地收集和跟踪卵子,用于不同的研究目的。卵的平均发育时间为3.20天,从最初的产卵到雏鸟孵化。这些饲养和卵收集方法为研究这种入侵害虫的生物学、生活史特征和生态学以及评估控制方法提供了具有成本效益的工具。
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A low cost and labor-efficient method for rearing an invasive beetle, Carpophilus truncatus (Coleoptera: Nitidulidae).

The carpophilus beetle, Carpophilus truncatus Murray, 1864 (Coleoptera: Nitidulidae) is an invasive pest recently detected in California's tree nut crop orchards. Here we report a simple, labor-saving, and cost-effective rearing system for C. truncatus utilizing banana and industrial sand components. Banana slices served as both a larval and adult diet source as well as a moisture source to facilitate pupation within the underlying sand. The combination of banana and sand within a single container successfully supported the development of all C. truncatus life stages over multiple generations. The average developmental times recorded in rearing units placed under environmental conditions of 26°C, 60% relative humidity, and 16:8 h (light:dark) photoperiod were: egg to wandering stage larva, 7.54 days; wandering stage to adult, 11.08 days; and adult longevity, 94.33 days. These banana-sand rearing units facilitated the easy collection of all C. truncatus developmental stages, except for eggs. To address this challenge, standalone oviposition chambers utilizing a lima bean-based agar diet were evaluated. These chambers effectively enabled the collection as well as tracking of eggs for different research purposes. The average developmental time recorded for eggs, from initial oviposition to neonate hatching, was 3.20 days. These rearing as well as egg collection approaches provide cost-effective tool to investigate biology, life-history traits and ecology, as well as evaluate approaches to control this invasive pest.

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