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Response of Insect Relative Growth Rate to Temperature and Host-Plant Phenology: Estimation and Validation from Field Data

机译:昆虫相对生长速率对温度和寄主植物物候的响应:实地数据的估计和验证

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摘要

Between 1975 to 2011, aphid Relative Growth Rates (RGR) were modelled as a function of mean outdoor temperature and host plant phenology. The model was applied to the grain aphid Sitobion avenae using data on aphid counts in winter wheat at two different climate regions in France (oceanic climate, Rennes (western France); continental climate, Paris). Mean observed aphid RGR was higher in Paris compared to the Rennes region. RGR increased with mean temperature, which is explained by aphid reproduction, growth and development being dependent on ambient temperature. From the stem extension to the heading stage in wheat, there was either a plateau in RGR values (Rennes) or an increase with a maximum at heading (Paris) due to high intrinsic rates of increase in aphids and also to aphid immigration. From the wheat flowering to the ripening stage, RGR decreased in both regions due to the low intrinsic rate of increase in aphids and high emigration rate linked to reduced nutrient quality in maturing wheat. The model validation process showed that the fitted models have more predictive power in the Paris region than in the Rennes region.
机译:在1975年至2011年之间,将蚜虫相对生长速率(RGR)建模为平均室外温度和寄主植物物候的函数。使用关于法国两个不同气候区(海洋性气候,雷恩(法国西部);大陆性气候,巴黎)的冬小麦蚜虫数量的数据,将该模型应用于谷物蚜虫Sitobion avenae。与雷恩地区相比,巴黎的平均观察到的蚜虫RGR更高。 RGR随着平均温度的升高而增加,这可以通过蚜虫繁殖,生长和发育取决于环境温度来解释。从小麦的茎延长到抽穗期,由于高内在的蚜虫增加率以及蚜虫移入,RGR值达到了稳定水平(雷恩斯),或者在抽穗期达到了最大值(巴黎)。从小麦开花到成熟阶段,这两个区域的RGR均下降,这是由于蚜虫内在的低增长率和高迁移率与成熟小麦的营养品质下降有关。模型验证过程表明,拟合模型在巴黎地区比雷恩地区具有更大的预测能力。

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