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黑腹果蝇飞行代谢的遗传变异性。II. 功率输出与酶活性水平之间的关系。

Genetic variability of flight metabolism in Drosophila melanogaster. II. Relationship between power output and enzyme activity levels.

作者信息

Laurie-Ahlberg C C, Barnes P T, Curtsinger J W, Emigh T H, Karlin B, Morris R, Norman R A, Wilton A N

出版信息

Genetics. 1985 Dec;111(4):845-68. doi: 10.1093/genetics/111.4.845.

Abstract

The major goal of the studies reported here was to determine the extent to which genetic variation in the activities of the enzymes participating in flight metabolism contributes to variation in the mechanical power output of the flight muscles in Drosophila melanogaster. Isogenic chromosome substitution lines were used to partition the variance of both types of quantitative trait into genetic and environmental components. The mechanical power output was estimated from the wingbeat frequency, wing amplitude and wing morphology of tethered flies by applying the aerodynamic models of Weis-Fogh and Ellington. There were three major results. (1) Chromosomes sampled from natural populations provide a large and repeatable genetic component to the variation in the activities of most of the 15 flight metabolism enzymes investigated and to the variation in the mechanical power output of the flight muscles. (2) The mechanical power output is a sensitive indicator of the rate of flight metabolism (i.e., rate of oxygen consumption during tethered flight). (3) In spite of (1) and (2), no convincing cases of individual enzyme effects on power output were detected, although the number and sign of the significant enzyme-power correlations suggests that such effects are not totally lacking.

摘要

本文所报道研究的主要目标是确定参与飞行代谢的酶活性的遗传变异在多大程度上导致了黑腹果蝇飞行肌肉机械功率输出的变异。利用同基因染色体替代系将这两种数量性状的方差分解为遗传和环境成分。通过应用韦斯 - 福格(Weis-Fogh)和埃灵顿(Ellington)的空气动力学模型,根据系留果蝇的振翅频率、翅幅和翅形态来估计机械功率输出。有三个主要结果。(1)从自然种群中抽样的染色体为所研究的15种飞行代谢酶中大多数酶活性的变异以及飞行肌肉机械功率输出的变异提供了一个大的且可重复的遗传成分。(2)机械功率输出是飞行代谢速率(即系留飞行期间的耗氧速率)的一个敏感指标。(3)尽管有(1)和(2),但未检测到单个酶对功率输出有令人信服的影响案例,尽管显著的酶 - 功率相关性的数量和符号表明这种影响并非完全不存在。

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