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Effects of Diet Quality and Temperature on Stable Fly (Diptera: Muscidae) Development

机译:饮食质量和温度对稳定蝇(双翅目:蝇科)发育的影响

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摘要

The effects of diet quality and temperature on the development time and size of stable flies, Stomoxys calcitrans (L.), was evaluated. Both development time and size varied relative to diet quality and temperature, and their effects were additive. Diet quality and temperature made similar contributions to the variance in size whereas temperature was responsible for >97% of the variance in development time. Regression analysis predicted the shortest development time, egg to adult, to be 12.7 days at 32 °C and 70% nutrients. Egg to adult development varied curvilinearly relative to diet quality and temperature on the degree day 10 (DD10) scale taking 261 DD10 at 30 °C and 50% nutrients. The thermal threshold was 11.5 °C with a thermal constant of 248. Very few stable flies developed to adult on the poorest diet (12.5% nutrients) and adults emerged from fewer than 1% of the puparia at 35 °C. The heaviest pupae (15.4 mg) were produced with the 100% diet at 15 °C and adults had a higher probability of emerging successfully from heavier puparia. The length of the discal-medial cell of adult wings had a cubic relationship with puparia weight and peaked at 21 °C. Egg to pupariation survival was predicted to peak at 27 °C and 71% diet whereas puparia to adult survival peaked at 24 °C and 100% diet. Diet quality and temperature had no effect on sex ratio and the rate of development did not differ between the sexes. Female stable flies were ≈5% larger than males. Composite metrics for egg to pupariation and egg to adult fitness were developed. The optimum for puparia fitness was 29 °C and 78% diet quality and for adult fitness 25 °C and 83% diet quality. Diet accounted for 31% of the variance in pupal fitness and 24% of the variance in adult fitness whereas temperature accounted for 17% and 20%, respectively.
机译:评估了日粮质量和温度对稳定蝇(Stomoxys calcitrans(L.))的发育时间和大小的影响。发育时间和大小都相对于饮食质量和温度而变化,它们的作用是累加的。饮食质量和温度对大小差异的贡献相似,而温度占发育时间差异的97%以上。回归分析预测,在32°C和70%养分的条件下,卵到成年的最短发育时间为12.7天。在第10天(DD10)规模上,卵到成年发育的曲线相对于饮食质量和温度呈曲线变化,在30°C和50%养分的情况下摄入261 DD10。热阈值为11.5°C,热常数为248。在最差的饮食(营养成分为12.5%)下,成年的成年苍蝇很少,而在35°C时,成年幼虫从不到1%的p中出来。体重最重的diet(15.4 mg)是在15°C时以100%的饮食产生的,成年人从重的up中成功出现的可能性更高。成年翅的椎间盘内侧细胞的长度与p的重量有立方关系,并在21℃达到峰值。预计到卵的成虫存活率将在27°C和71%的日粮中达到峰值,而p到成年的存活率则在24°C和100%的日粮中达到峰值。饮食质量和温度对性别比例没有影响,性别之间的发育速度没有差异。雌性苍蝇比雄性约大5%。制定了鸡蛋与小儿和鸡蛋与成人的综合指标。 p健康的最佳选择是29°C和78%的饮食质量,成人健康的最佳选择是25°C和83%的饮食质量。饮食占小学生适应性差异的31%和成人适应性差异的24%,而温度分别占17%和20%。

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