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Using laboratory selection for desiccation resistance to examine the relationship between respiratory pattern and water loss in insects

机译:使用实验室选择的抗干燥性检查昆虫的呼吸模式与水分流失之间的关系

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摘要

We conducted concurrent measurements of rates of CO2 and H2O release from individual fruit flies Drosophila melanogaster taken from populations subjected to three different selective regimes: (1) populations selected for resistance to desiccation (D flies); (2) populations maintained as their controls (C flies); and (3) the ancestral populations of the D and C populations (O flies). In the D flies, water loss rates were significantly reduced, the standard error of the regression (SER) of the CO2 release pattern measured over the survival period of the flies was increased, and the ratio of CO2 loss to H2O loss ((V) over dot (CO2)/(V) over dot (H2O))) was increased. Correlations across all 15 populations from the three selection treatments indicate that survival time was negatively correlated with water loss rate, positively correlated with the SER of CO2 release and positively correlated with the (V) over dot (CO2)/(V) over dot (H2O) ratio. We did not, however find a significant correlation between the SER of CO2 release and rates of water loss or the (V) over dot (CO2)/(V) over dot (H2O) ratio. [References: 19]
机译:我们同时进行了果蝇果蝇的CO2和H2O释放速率的同时测量,这些果蝇来自经历了三种不同选择制度的种群:(1)被选择为具有抗干燥性的种群(D蝇); (2)维持种群为对照(C蝇); (3)D和C种群的祖先种群(O蝇)。在D蝇中,失水率显着降低,在蝇的生存期内测得的CO2释放模式回归的标准误差(SER)增加,并且CO2损失与H2O损失的比率((V)点(CO2)/(V)(点(H2O)))增大。三种选择处理的所有15个种群之间的相关性表明,存活时间与失水率呈负相关,与CO2释放的SER呈正相关,并且与点上的(V)(CO2)/(V)上的(V)正相关( H2O)比。但是,我们没有发现CO2释放的SER与失水率或点(CO2)上方的(V)/点(H2O)上方的(V)比率之间存在显着相关性。 [参考:19]

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