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Effect of different light regimes on esterase isozyme profiles of three species of Drosophila

机译:不同光照方式对三种果蝇酯酶同工酶谱的影响

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Circadian rhythm has been identified in every organism studied, from unicellular marine algae to man, and in virtually all physiological and biochemical functions. The endogenous circadian system functions to organize behaviour and physiology to adapt to and anticipate environment changes in light and temperature. The present study is an attempt to understand enzyme profiles (alpha and beta esterases) of Drosophila melanogaster (Oregon-K strain), Drosophila gangotrii and Drosophila jambulina under light/dark (LD), continuous light (LL) and continuous dark (DD) conditions over 30 generations. A polyacrylamide gel electrophoresis (7.5% - native gel) was used to study the esterase isozyme banding patterns in three species of Drosophila. It has been noticed that there were three alpha esterase loci in Drosophila species which were designated as alpha-est 1, alpha-est 2 and alpha-est 3. Similarly there were three beta esterase loci which were designated as beta-est 1, beta-est 2 and beta-est 3. Flies maintained in different light regimes showed differences in their allelic patterns with respect to alpha and beta esterases. It was observed that there was expression of some bands at a given light regime and the absence of the same in another regime. This shows that the different light regimes affect the expression of esterase isozymes.
机译:从单细胞海藻到人,几乎所有生理和生化功能都在研究的每个生物体中发现了昼夜节律。内源性昼夜节律系统的功能是组织行为和生理,以适应和预期光和温度的环境变化。本研究试图了解在黑暗/黑暗(LD),连续光照(LL)和连续黑暗(DD)下果蝇(Oregon-K),果蝇果蝇和果蝇的酶谱(α和β酯酶)。条件超过30代。聚丙烯酰胺凝胶电泳(7.5%天然凝胶)用于研究三种果蝇中的酯酶同工酶谱带模式。已经注意到,果蝇中有三个α酯酶基因座,分别被命名为α-est1,α-est2和α-est3。类似地,存在三个β-酯酶基因座,分别被称为β-est1,β。 -est 2和beta-est3。保持在不同光照条件下的果蝇在等位基因模式方面与α和β酯酶有关。观察到在给定的光照条件下存在某些条带的表达,而在另一种光照条件下则不存在。这表明不同的光照方案会影响酯酶同工酶的表达。

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