Ghose Kaushik, Triblehorn Jeffrey D, Bohn Kari, Yager David D, Moss Cynthia F
Department of Psychology, University of Maryland, College Park, MD 20742, USA.
J Exp Biol. 2009 Mar;212(Pt 5):693-703. doi: 10.1242/jeb.019380.
Insectivorous echolocating bats face a formidable array of defenses employed by their airborne prey. One such insect defense is the ultrasound-triggered dive, which is a sudden, rapid drop in altitude, sometimes all the way to the ground. Although many previous studies have investigated the dynamics of such dives and their effect on insect survival rate, there has been little work on how bats may adapt to such an insect defense employed in the middle of pursuit. In this study we investigated how big brown bats (Eptesicus fuscus) adjust their pursuit strategy when flying praying mantises (Parasphendale agrionina) execute evasive, ultrasound-triggered dives. Although the mantis dive occasionally forced the bat to completely abort its chase (25% trials), in a number of cases (75% trials) the bat followed the mantis into the dive. In such cases the bat kept its sonar beam locked onto the target and maneuvered to maintain the same time efficient strategy it adopted during level flight pursuit, though it was ultimately defeated by the dive. This study suggests that although the mantis dive can be effective in evading the bat, it does not always deter the bat from continuing pursuit and, given enough altitude, the bat can potentially capture diving prey using the same flight strategy it employs to intercept prey in level flight.
食虫性回声定位蝙蝠面临着其空中猎物所采用的一系列 formidable 防御手段。其中一种昆虫防御方式是超声触发俯冲,即突然、快速地降低高度,有时甚至一直落到地面。尽管之前有许多研究调查了这种俯冲的动态过程及其对昆虫存活率的影响,但对于蝙蝠在追捕过程中如何适应这种昆虫防御方式的研究却很少。在本研究中,我们调查了大棕蝠(Eptesicus fuscus)在飞行的螳螂(Parasphendale agrionina)执行躲避性超声触发俯冲时如何调整其追捕策略。尽管螳螂的俯冲偶尔会迫使蝙蝠完全放弃追捕(25%的试验),但在许多情况下(75%的试验),蝙蝠会跟随螳螂进入俯冲。在这种情况下,蝙蝠会将其声纳波束锁定在目标上,并进行 maneuvered 以维持其在水平飞行追捕时所采用的相同的高效时间策略,尽管它最终会被俯冲击败。这项研究表明,尽管螳螂的俯冲在躲避蝙蝠方面可能有效,但它并不总是能阻止蝙蝠继续追捕,并且在有足够高度的情况下,蝙蝠有可能使用其在水平飞行中拦截猎物时所采用的相同飞行策略捕获正在俯冲的猎物。