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Genotype-environment interactions for insect growth in constant and fluctuating temperature regimes

机译:在恒定和波动温度下昆虫生长的基因型-环境相互作用

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摘要

Experiments on life history genetics are usually performed using constant temperature environments in the laboratory. However, the dynamics of insect growth can be influenced profoundly by daily fluctuations in temperature such as those which characterize field environments. We report here on experiments using different stocks and selected lines of a tropical butterfly, Bicyclus anynana, to examine whether genotype-environment interactions occur for three traits describing pre-adult growth. These traits were measured over two pairs of environments differing in mean temperature, each of which had a constant, and a cycling temperature regime. Development time, pupal weight and growth rate show genotype-environment interactions, especially at comparatively low average temperatures. Researchers should, therefore, take care when extrapolating from the form of genetic covariance matrices and 'trade-offs' among life history traits found in constant temperature environments to those likely to occur in nature. <br>
机译:关于生命历史遗传学的实验通常是在实验室中使用恒温环境进行的。但是,昆虫的生长动态会受到日常温度波动(例如表征田间环境的温度波动)的深远影响。我们在这里报告有关使用不同种群和热带蝴蝶Bicyclus anynana的选定品系进行的实验,以检查描述成年前生长的三个性状是否发生了基因型-环境相互作用。这些特性是在两对平均温度不同的环境中测量的,每个环境均具有恒定的温度,并且具有循环温度范围。发育时间,p重量和生长速率显示出基因型与环境的相互作用,尤其是在相对较低的平均温度下。因此,研究人员在从遗传协方差矩阵的形式以及在恒温环境下发现的生活史特征之间的“权衡”推断到自然界可能存在的现象时,应格外小心。

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