温度、相对湿度和光周期对土生小茧蜂(膜翅目:小茧蜂科)生活史的影响

Wen-Qin Yang, Xian Li, Fan-Xin Meng, Tong-Xian Liu, Shi-Ze Zhang
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引用次数: 0

摘要

土生寄生蜂ruficrus (Haliday)(膜翅目:小蜂科)在防治我国秋粘虫Spodoptera frugiperda (J.E. Smith)(鳞翅目:夜蛾科)方面具有良好的应用前景。然而,环境因素对C. ruficus性能的影响仍然知之甚少。本研究旨在探讨温度、相对湿度和光周期对红僵菌生活史的影响。在5种不同温度(20、23、26、29和32±1℃)、4种相对湿度(40%、55%、70%和85±5%)和5种光周期(L:D 8:16、10:14、12:12、14:10和16:8)下测定生活史性状。在20 ~ 32℃温度范围内,随着温度的升高,未成熟期(19.8 ~ 11.0 d)、卵量(263.8 ~ 100.8)、成虫体长(雌雄分别从0.75、0.72 ~ 0.66、0.65 mm)和寿命(雌雄分别从28.43、24.98 ~ 5.03、5.3 d)显著降低,寄生率保持稳定(56.8% ~ 66.3%),但羽化率在26℃以上温度范围内下降(93% ~ 75%)。较高的相对湿度(>70%)提高了羽化率(87% ~ 93%)、性能比(0.63)、卵量(278)和寿命(雄蜂10 d以上、雌蜂14 d以上),但对寄生率(65% ~ 69%)无显著影响。在14:10光周期下,寄生蜂的寄生率(65%)、性比(0.63)和卵负荷(278)最高,羽化率(81% ~ 87%)不受光周期变化的影响。综上所述,红叶假体发育和繁殖的最佳条件为温度26±1℃,光周期14:10,相对湿度70%以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of temperature, relative humidity, and photoperiod on life history of Cotesia ruficrus (Hymenoptera: Braconidae), an indigenous parasitoid of Spodoptera frugiperda (Lepidoptera: Noctuidae).

The indigenous parasitoid Cotesia ruficrus (Haliday) (Hymenoptera: Braconidae) shows promise as a biological control agent for managing the invasive fall armyworm, Spodoptera frugiperda (J.E. Smith) (Lepidoptera: Noctuidae) in China. However, the influence of environmental factors on C. ruficrus performance remains poorly understood. This study aimed to investigate the effects of temperature, relative humidity, and photoperiod on the life history of C. ruficrus. The life-history traits were measured at 5 different temperatures (20, 23, 26, 29, and 32 ± 1 °C), 4 RH levels (40%, 55%, 70%, and 85 ± 5%), and 5 photoperiod levels (L:D 8:16, 10:14, 12:12, 14:10, and 16:8). As temperature increased from 20 to 32 °C, the immature developmental duration (from 19.8 to 11.0 d), egg load (from 263.8 to 100.8), adult size (from 0.75 and 0.72 to 0.66 and 0.65 mm for female and male, respectively), and longevity (from 28.43 and 24.98 to 5.03 and 5.3 d for female and male, respectively) significantly reduced, while parasitism rates remained stable (56.8% to 66.3%) but emergence rates decreased above 26 °C (from 93% to 75%). Higher RH (>70%) improved emergence rates (87% to 93%), sex ratios (0.63), egg load (278), and longevity (above 10 d for male and 14 d for female), with no significant effect on parasitism rates (65% to 69%). The highest parasitism rate (65%), sex ratio (0.63), and egg load (278) occurred under 14:10 photoperiod, with emergence rates (81% to 87%) unaffected by photoperiod changes. Collectively, optimal conditions for C. ruficrus development and reproduction were identified as 26 ± 1 °C temperature, 14:10 photoperiod, and above 70% RH.

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