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Temperature-Related Divergence in Experimental Populations of DROSOPHILA MELANOGASTER. I. Genetic and Developmental Basis of Wing Size and Shape Variation

机译:果蝇的实验种群的温度相关散度。一机翼尺寸和形状变化的遗传和发展基础

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摘要

The effects of environmental temperature on wing size and shape of Drosophila melanogaster were analyzed in populations derived from an Oregon laboratory strain kept at three temperatures (18°, 25°, 28°) for 4 yr. Temperature-directed selection was identified for both wing size and shape. The length of the four longitudinal veins, used as a test for wing size variations in the different populations, appears to be affected by both genetic and maternal influences. Vein expression appears to be dependent upon developmental pattern of the wing: veins belonging to the same compartment are coordinated in their expression and relative position, whereas veins belonging to different compartments are not. Both wing and cell areas show genetic divergence, particularly in the posterior compartment. Cell number seems to compensate for cell size variations. Such compensation is carried out both at the level of single organisms and at the level of population as a whole. The two compartments behave as individual units of selection.
机译:分析了环境温度对黑腹果蝇翅膀大小和形状的影响,这些种群来自俄勒冈实验室的一种菌株,它们在三种温度(18°,25°,28°)下保持了4年。确定了机翼尺寸和形状的温度导向选择。用来测试不同种群机翼大小变化的四个纵向静脉的长度似乎受遗传和母体影响。静脉的表达似乎取决于机翼的发育模式:属于同一隔室的静脉在其表达和相对位置上是协调的,而属于不同隔室的静脉则没有。机翼和细胞区域均显示出遗传差异,特别是在后房。像元数目似乎可以补偿像元大小的变化。这种补偿既在单一生物体层面上,又在整体人口层面上进行。这两个隔离专区充当单个选择单元。

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