首页> 外文期刊>Biology Open >Role of water flow regime in the swimming behaviour and escape performance of a schooling fish
【24h】

Role of water flow regime in the swimming behaviour and escape performance of a schooling fish

机译:水分流向在养鱼游泳行为和逃逸性能中的作用

获取原文
       

摘要

Animals are exposed to variable and rapidly changing environmental flow conditions, such as wind in terrestrial habitats and currents in aquatic systems. For fishes, previous work suggests that individuals exhibit flow-induced changes in aerobic swimming performance. Yet, no one has examined whether similar plasticity is found in fast-start escape responses, which are modulated by anaerobic swimming performance, sensory stimuli and neural control. In this study, we used fish from wild schools of the tropical damselfishChromis viridisfrom shallow reefs surrounding Lizard Island in the Great Barrier Reef, Australia. The flow regime at each site was measured to ascertain differences in mean water flow speed and its temporal variability. Swimming and escape behaviour in fish schools were video-recorded in a laminar-flow swim tunnel. Though each school's swimming behaviour (i.e. alignment and cohesion) was not associated with local flow conditions, traits linked with fast-start performance (particularly turning rate and the distance travelled with the response) were significantly greater in individuals from high-flow habitats. This stronger performance may occur due to a number of mechanisms, such as anin situtraining effect or greater selection pressure for faster performance phenotypes in areas with high flow speed.This article has an associated First Person interview with the first author of the paper.
机译:动物要面对变化迅速的环境流动条件,例如陆地生境中的风和水生系统中的水流。对于鱼类,以前的工作表明,个体在有氧游泳性能方面表现出流量引起的变化。然而,没有人检查过是否在快速启动逃避反应中发现了类似的可塑性,而这种反应是由无氧游泳表现,感觉刺激和神经控制所调节的。在这项研究中,我们使用了来自澳大利亚大堡礁蜥蜴岛周围浅礁的热带雀鲷Chromis viridis野生学校的鱼。测量每个站点的水流状况,以确定平均水流速度及其时间变化的差异。在层流游泳隧道中记录了鱼类学校的游泳和逃生行为。尽管每所学校的游泳行为(即对齐和凝聚力)均与当地的水流状况无关,但在高流量栖息地的个体中,与快速起步成绩相关的特征(尤其是转弯速度和响应距离)明显更大。这种更强的性能可能是由于多种机制而产生的,例如在现场流速的作用或较高的选择压力,以便在流速较高的区域获得更快的性能表型。本文对第一人进行了第一人称采访。

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