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首页> 外文期刊>Ecology and Evolution >An age–size reaction norm yields insight into environmental interactions affecting life‐history traits: a factorial study of larval development in the malaria mosquito Anopheles gambiae sensu stricto
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An age–size reaction norm yields insight into environmental interactions affecting life‐history traits: a factorial study of larval development in the malaria mosquito Anopheles gambiae sensu stricto

机译:年龄大小的反应规范产生影响影响寿命性状的环境相互作用的洞察力:玛拉米蚊子幼稚野生群岛幼虫发育的因子研究

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AbstractEnvironmental factors frequently act nonindependently to determine growth and development of insects. Because age and size at maturity strongly influence population dynamics, interaction effects among environmental variables complicate the task of predicting dynamics of insect populations under novel conditions. We reared larvae of the African malaria mosquito Anopheles gambiae sensu stricto (s.s.) under three factors relevant to changes in climate and land use: food level, water depth, and temperature. Each factor was held at two levels in a fully crossed design, for eight experimental treatments. Larval survival, larval development time, and adult size (wing length) were measured to indicate the importance of interaction effects upon population-level processes. For age and size at emergence, but not survival, significant interaction effects were detected for all three factors, in addition to sex. Some of these interaction effects can be understood as consequences of how the different factors influence energy usage in the context of a nonindependent relationship between age and size. Experimentally assessing interaction effects for all potential future sets of conditions is intractable. However, considering how different factors affect energy usage within the context of an insect's evolved developmental program can provide insight into the causes of complex environmental effects on populations.
机译:抽象环境因素经常非依赖,以确定昆虫的生长和发展。由于成熟时的年龄和大小强烈影响人口动态,环境变量之间的相互作用影响使新的条件下预测昆虫群体的动态的任务。我们在与气候和土地利用变化有关的三个因素下饲养了非洲疟疾蚊子的幼虫冈比亚Sensu Sticalo(S.):食品水平,水深和温度。每个因素以完全交叉的设计持有两个水平,用于八个实验治疗方法。测量幼虫生存,幼虫发育时间和成人尺寸(机翼长度),以表明互动影响对人口级过程的重要性。对于出现的年龄和大小,除了性别之外,所有三个因素都没有生存,而不是生存,检测到所有三个因素的显着相互作用。这些相互作用效应中的一些可以被理解为不同因素在年龄和大小之间非依赖关系的背景下影响能源使用的后果。通过实验评估所有潜在未来的条件集的互动效应是棘手的。然而,考虑到不同因素在昆虫演进的发展方案的背景下影响能源使用情况可以深入了解复杂环境影响对人群的影响。

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