首页> 外文期刊>Physiological Entomology >Increased temperature causes protein limitation by reducing the efficiency of nitrogen digestion in the ectothermic herbivore Spodoptera exigua
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Increased temperature causes protein limitation by reducing the efficiency of nitrogen digestion in the ectothermic herbivore Spodoptera exigua

机译:温度升高通过降低放热食草动物斜纹夜蛾的氮消化效率而导致蛋白质限制。

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For insect herbivores, rising temperatures lead to exponentially higher metabolic rates, As a result, basic nutritional demands for protein and carbohydrates can be altered at high temperatures. It is hypothesized that temperature-driven increases in metabolic nitrogen turnover will exacerbate protein limitation by increasing metabolic nitrogen demand, To test this hypothesis, the present study examines whether metabolic nitrogen turnover at higher temperatures causes protein limitation of a generalist herbivore, the beet armyworm Spodoptera exigua Hubner (Lepidoptera Noctuidae). Third-instar S. exigua larvae were reared at 25 and 30 degrees C on three artificial diets of varying protein : carbohydrate ratios (23 : 26, 17 : 26 and 6 : 26 %P : %C, respectively) and their growth rates, metabolic nitrogen demand and consumption rates were measured. Warming was found to lead to temperature-induced protein limitation of the S. exigua larvae by increasing metabolic nitrogen demand at the same time as reducing nitrogen digestion efficiency, Because climate change is increasing atmospheric temperatures rapidly worldwide, it is suggested that a better understanding of how temperature change can influence metabolic demands will provide key information for predicting herbivore growth rates and foraging strategies in the future.
机译:对于昆虫食草动物,温度升高导致新陈代谢速率成倍增加。结果,在高温下可以改变对蛋白质和碳水化合物的基本营养需求。假设温度驱动的代谢氮转换的增加会通过增加代谢氮的需求而加剧蛋白质的限制。为验证这一假设,本研究研究了高温下的代谢氮转换是否会导致通配草食动物甜菜夜蛾夜蛾的蛋白质限制。 exigua Hubner(鳞翅目夜蛾科)。在25和30摄氏度下,分别以三种不同的蛋白质:碳水化合物比率(分别为23:26、17:26和6:26%P:%C)及其生长速率的人工饮食饲养三龄S. exigua幼虫。测量代谢氮需求和消耗率。人们发现变暖通过增加代谢氮的需求同时降低氮的消化效率,从而导致温度升高限制了墨西哥沙门氏菌幼虫的蛋白质。由于气候变化正在全球范围内迅速升高大气温度,因此建议人们更好地了解温度变化如何影响代谢需求将为预测未来草食动物的生长速率和觅食策略提供关键信息。

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