低温贮藏对 Eocanthecona furcellata(半翅目:五蠹科)体质的影响。

Chun-Ni Pan, Wei Zhou, Chang-Hao Lu, Ying-Na Pan, Ling-Yi Liu, Wen-Long Chen
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摘要

探索低温贮藏对天敌昆虫适应性的影响对实际田间应用至关重要,因为这一参数直接影响其种群增长和有效控制害虫的潜力。Eocanthecona furcellata (Wolff) (Hemiptera: Pentatomidae) 被广泛应用于生物害虫控制。本研究旨在确定毛鳞菊的最佳储存阶段、温度和持续时间,以产生高质量的个体供实际使用。通过评估捕食能力和繁殖力等参数,以及年龄阶段和双性生命表,对储存后的 E. furcellata 的质量进行了评估。研究结果表明,成虫阶段是毛鳞鱼的最佳贮藏形态,最适宜的贮藏温度为 12 °C。成年雌虫在 12 °C储存 15 天后捕食能力最强。虽然存活率随着储存时间的延长而下降,但30天后仍保持在50%以上,存活个体的寿命、繁殖力和捕食能力与对照组(在26 °C恒温条件下饲养,无低温储存)的个体相当。低温贮藏的影响延伸到毛鳞鱼的 F1 代,在 12 °C贮藏 30 天后,毛鳞鱼的平均寿命、繁殖力、净生殖率和平均世代时间均达到最大值,种群增长速度也最快。这些结果可用于实现毛鳞鱼生产的最佳低温贮藏条件,特别是延长其保质期。
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Fitness implications of low-temperature storage for Eocanthecona furcellata (Hemiptera: Pentatomidae).

Exploring the impact of low-temperature storage on the fitness of natural enemy insects is crucial for practical field applications because this parameter directly influences their potential for population growth and effective pest control. Eocanthecona furcellata (Wolff) (Hemiptera: Pentatomidae) is widely used in biological pest control. This study aimed to identify optimal storage stages, temperatures, and durations for E. furcellata to produce high-quality individuals for practical use. The quality of E. furcellata after storage was evaluated by assessing parameters such as predatory capacity and fecundity, along with age-stage, two-sex life table. The findings revealed that the adult stage was the optimal storage form for E. furcellata, and the most favorable temperature for storage was 12 °C. Adult females had the highest predatory ability after 15 days of storage at 12 °C. Although survival rates declined with prolonged storage, they remained above 50% after 30 days, and longevity, fecundity, and predatory capacity of surviving individuals remained comparable to those of individuals in the control group (rearing at a constant temperature of 26 °C without low-temperature storage). The effects of low-temperature storage extended to the F1 generation of E. furcellata, which exhibited maximum mean longevity, fecundity, net reproductive rate, and mean generation time as well as fastest population growth after 30 days of storage at 12 °C. These results can be used to achieve optimal low-temperature storage conditions for E. furcellata production, particularly for extending its shelf life.

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