Ragland Gregory J, Fuller John, Feder Jeffrey L, Hahn Daniel A
Department of Entomology and Nematology, University of Florida, USA.
J Insect Physiol. 2009 Apr;55(4):344-50. doi: 10.1016/j.jinsphys.2008.12.013. Epub 2009 Feb 4.
Metabolic depression is a highly conserved feature of insect diapause, and an increase in metabolism is a reliable indicator of diapause termination and the initiation of post-diapause development. The trajectory of metabolic rate following diapause termination can guide the identification of important physiological and developmental landmarks during this developmental transition, yet quantitative descriptions of these trajectories are relatively rare. Here we track changes in metabolic rate from diapause through diapause termination and pharate adult development in Rhagoletis pomonella (Diptera: Tephritidae), a univoltine tephritid fly that diapauses in the pupal stage. Using respirometric monitoring we show that diapause termination and subsequent pharate adult development is characterized by a biphasic increase in metabolic rate. Respiration rate initially increases logistically, reaching a plateau that is followed by a final, exponential increase terminating in adult eclosion. We develop a non-linear model describing this pattern with easily interpretable landmarks, and we map visible landmarks of morphogenesis onto the trajectory. The bulk of visible morphogenesis in pharate adult development occurs relatively late in the trajectory during the final, exponential phase, that matches the U-shaped trajectory of non-diapause individuals. These results mirror a qualitative description of the same trajectories of diapause and non-diapause flesh flies (Sarcophaga). Overall, our results suggest that (1) the course of diapause breakage and post-diapause development may be evolutionarily conserved in higher flies with pupal diapause, and (2) the biphasic trajectory is distinct from a more continuous trajectory observed during direct development.
代谢抑制是昆虫滞育的一个高度保守的特征,而代谢增加是滞育终止和滞育后发育开始的可靠指标。滞育终止后代谢率的变化轨迹可以指导识别这一发育转变过程中重要的生理和发育里程碑,但对这些轨迹的定量描述相对较少。在这里,我们追踪了苹果实蝇(双翅目:实蝇科)从滞育到滞育终止以及蛹期成虫发育过程中的代谢率变化。苹果实蝇是一种单化性实蝇,在蛹期滞育。通过呼吸测量监测,我们发现滞育终止和随后的蛹期成虫发育的特征是代谢率呈双相增加。呼吸率最初呈逻辑增长,达到一个平稳期,随后是最终的指数增长,直至成虫羽化。我们开发了一个非线性模型来描述这种模式,并带有易于解释的里程碑,我们将形态发生的可见里程碑映射到该轨迹上。蛹期成虫发育过程中大部分可见的形态发生发生在轨迹的相对后期,即在最终的指数阶段,这与非滞育个体的U形轨迹相匹配。这些结果与对滞育和非滞育麻蝇(麻蝇属)相同轨迹的定性描述相呼应。总体而言,我们的结果表明:(1)滞育解除和滞育后发育过程在具有蛹期滞育的高等果蝇中可能在进化上是保守的;(2)双相轨迹不同于直接发育过程中观察到的更连续的轨迹。