Effects of temperature and storage duration on quality of an insect artificial diet.

IF 2.4 Q1 ENTOMOLOGY Frontiers in insect science Pub Date : 2024-09-18 eCollection Date: 2024-01-01 DOI:10.3389/finsc.2024.1475411
Khanh-Van Ho, Bruce E Hibbard, Michael G Vella, Kent S Shelby, Man P Huynh
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Abstract

Artificial diets are widely used to produce insects for research and education programs. Completed diets, in which the diets are fully made from individual ingredients and ready to use, often have high water activity, making them vulnerable to degradation. Proper storage is critical to maintaining diet quality, yet the storage conditions are not well investigated. In this study, we characterized the effects of storage conditions (temperatures and storage duration) on the quality of a diet capable of rearing both specialist and generalist insect species. The completed diet, produced by both private industry and a USDA-Agricultural Research Service laboratory, was exposed to varying temperatures during a 24-hour transit over 1600 km. After transit, it was stored at 4°C for a total storage period of 28 days. In a separate experiment, the completed diet was stored immediately after diet production at five fixed temperatures (-20, 4, 22, 25, and 33°C) for up to 28 days. For both experiments, at 5 intervals after storage (1, 7, 14, 21, and 28 days), diet quality was accessed by life history parameters (survival, molting, and weight) of western corn rootworm (Diabrotica virgifera virgifera LeConte) larvae, the most serious maize pest in the United States. Our results showed that exposure to varying temperatures between -2°C and 27°C for 24 hours had no significant impact on diet quality. However, extended storage (beyond 24 hours) at any of the fixed temperatures negatively affected diet quality. Insects reared on diets stored for over 24 hours at fixed temperatures ranging from -20°C to 33°C had significant declines in performance. Among the tested temperatures, -20°C and 4°C were found to be the most effective for preserving diet quality. At these low temperatures, there were no significant changes in insect weight and survival for diets stored within 21 and 28 days, respectively, though molting was significantly reduced within 7 days of storage. These findings provide the base of information on the storage conditions for completed diets, supporting the production of healthy insects.

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温度和储存时间对昆虫人工饲料质量的影响
人工日粮被广泛用于为研究和教育项目生产昆虫。已完成的日粮由各种成分制成,可以随时使用,但通常水分活性较高,容易降解。适当的储藏对保持日粮质量至关重要,但对储藏条件的研究并不深入。在这项研究中,我们研究了贮藏条件(温度和贮藏时间)对既能饲养专性昆虫又能饲养通性昆虫的日粮质量的影响。由私营企业和美国农业部农业研究服务实验室生产的完整日粮在 1600 公里的 24 小时运输过程中暴露在不同的温度下。转运后,在 4°C 下存放 28 天。在另一项实验中,日粮生产完成后立即在五个固定温度(-20、4、22、25 和 33°C)下贮存 28 天。在这两项实验中,在储存后的 5 个间隔期(1、7、14、21 和 28 天),通过美国最严重的玉米害虫--西部玉米根虫(Diabrotica virgifera virgifera LeConte)幼虫的生活史参数(存活率、蜕皮率和体重)来检测日粮质量。我们的研究结果表明,在 -2°C 至 27°C 的不同温度下暴露 24 小时对食物质量没有显著影响。然而,在任何固定温度下延长储存时间(超过 24 小时)都会对日粮质量产生负面影响。在-20°C至33°C的固定温度下储存超过24小时的日粮饲养的昆虫,其表现明显下降。在测试的温度中,-20°C 和 4°C 对保持日粮质量最有效。在这些低温条件下,贮藏 21 天和 28 天内的日粮在昆虫体重和存活率方面没有明显变化,但贮藏 7 天内的蜕皮率明显下降。这些发现为完整日粮的储存条件提供了信息基础,有助于生产健康的昆虫。
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