Clark A G, Keith L E
Department of Biology, Pennsylvania State University, University Park 16802.
Genetics. 1988 Jul;119(3):595-607. doi: 10.1093/genetics/119.3.595.
Whole larvae and whole adult extracts from 26 second chromosome replacement lines of Drosophila melanogaster were analyzed to determine the amounts of stored triacylglycerols and carbohydrates as well as the activities of 13 enzymes in relevant biochemical pathways. Analysis of covariance revealed significant differences among lines in stored lipids and carbohydrates, as well as in activities of most of the enzymes. Significant broad-sense genetic correlations (among adjusted line means) were detected for a number of enzyme pairs. Multiple regression techniques were applied to assess the extent to which the amounts of stored triacylglycerols and carbohydrates could be predicted from the enzyme activities. Significant regressions were found in both adults and larvae, suggesting that modulation of enzyme activities is reflected in different sizes of storage pools. The population genetic consequences of natural selection acting on a phenotype such as energy storage is considered in light of models of metabolic flux in biochemical pathways.
对黑腹果蝇26个第二染色体替代系的全幼虫和全成虫提取物进行了分析,以确定储存的三酰甘油和碳水化合物的含量,以及相关生化途径中13种酶的活性。协方差分析显示,各品系在储存的脂质和碳水化合物以及大多数酶的活性方面存在显著差异。检测到许多酶对之间存在显著的广义遗传相关性(在调整后的品系均值之间)。应用多元回归技术来评估根据酶活性预测储存的三酰甘油和碳水化合物含量的程度。在成虫和幼虫中均发现了显著的回归关系,这表明酶活性的调节反映在不同大小的储存库中。根据生化途径中代谢通量的模型,考虑了自然选择作用于能量储存等表型的群体遗传后果。