首页> 外文期刊>Journal of Insect Physiology >Transitions in the heartbeat pattern during pupal diapause and adult development in the flesh fly, Sarcophaga crassipalpis
【24h】

Transitions in the heartbeat pattern during pupal diapause and adult development in the flesh fly, Sarcophaga crassipalpis

机译:di滞育和果蝇成虫发育过程中心跳模式的转变

获取原文
获取原文并翻译 | 示例
           

摘要

The heartbeat of diapausing pupae of the flesh fly Sarcophaga crassipalpis was investigated using electrocardiographic methods including gravimetry, thermography, and optocardiography. During deep diapause, characterized by minimum metabolic activity, the heart exhibited discontinuous bouts of exclusively unidirectional, anterograde pulsations (40-60 contractions/min) that lasted only a few seconds. These bouts of cardiac pulsations were separated by periods of rest lasting 5-30 min. During infradian peaks of metabolic activity (4-day cycles) that occur throughout diapause, periods of rest were shortened and frequency of the anterograde heartbeat increased more than two-fold. Throughout diapause, the heart consistently exhibited a simple, bi-phasic pattern of pulsations generated by bouts of anterograde heartbeats interspersed with periods of cardiac rest. When the fly broke diapause and initiated pharate adult development, a new tri-phasic pattern was observed: the new pattern incorporated heartbeat reversal, as noted by the appearance of retrograde pulsations that directed hemolymph in a posterior direction. These retrograde heartbeats occurred exclusively in the abdominal portion of the dorsal vessel and were not observed in the head or thorax. The transition to pharate adult development was also accompanied by the appearance of extremely strong extracardiac pulsations that served a respiratory function. Although these pulsations made it more challenging to record heartbeat patterns in pharate adults, we observed progressive shortening of the resting periods and a continual increase in the rate of both anterograde and retrograde pulsations, a trend that was further magnified in the adult fly (anterograde contractions up to 300/min and retrograde contractions approximately 125/min). These results imply that the circulatory function of the heart is homeostatically regulated and is responsive to developmental changes and the diverse metabolic rate demands of larvae, diapausing pupae, pharate adults and adult flies
机译:使用心电图方法(包括重量分析法,热成像法和心电图法)研究了果蝇Sarcophaga crassipalpis滞育p的心跳。在以最大程度的新陈代谢活动为特征的深度滞育期间,心脏表现出仅持续几秒钟的不连续搏动,完全是单向的顺行性搏动(40-60次收缩/分钟)。这些持续的心脏搏动被持续5-30分钟的休息时间隔开。在整个滞育期间发生的代谢活动的红外线高峰期(4天周期)期间,休息时间缩短了,顺行性心跳频率增加了两倍以上。在整个滞育过程中,心脏始终表现出简单的双相搏动模式,该搏动是由顺行性心跳发作与心脏休息周期之间散布的。当苍蝇打破滞育并开始成年成年发育时,观察到一种新的三相模式:这种新模式结合了心跳逆转,这是由逆向搏动的出现所引起的,该逆行搏动将血淋巴指向后方。这些逆行性心跳仅发生在背血管的腹部,而在头部或胸部未观察到。向成年成年发育的过渡还伴随着极强的心外搏动的出现,可起到呼吸作用。尽管这些脉动使在成年的成年rate鼠中记录心跳模式更具挑战性,但我们观察到静息期的逐渐缩短以及顺行和逆行脉动的速率持续增加,这种趋势在成年蝇中进一步放大(顺行收缩)。最高300 / min,逆行收缩约125 / min)。这些结果表明心脏的循环功能是稳态调节的,并且对幼虫,滞育using,成年rate和成年果蝇的发育变化和新陈代谢的不同需求作出响应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号