Ulanovsky Nachum, Fenton M Brock, Tsoar Asaf, Korine Carmi
The Interdisciplinary Centre for Neural Computation and Department of Neurobiology, Hebrew University, Jerusalem 91904, Israel.
Proc Biol Sci. 2004 Jul 22;271(1547):1467-75. doi: 10.1098/rspb.2004.2750.
Animals using active sensing systems such as echolocation or electrolocation may experience interference from the signals of neighbouring conspecifics, which can be offset by a jamming avoidance response (JAR). Here, we report JAR in one echolocating bat (Tadarida teniotis: Molossidae) but not in another (Taphozous perforatus: Emballonuridae) when both flew and foraged with conspecifics. In T. teniotis, JAR consisted of shifts in the dominant frequencies of echolocation calls, enhancing differences among individuals. Larger spectral overlap of signals elicited stronger JAR. Tadarida teniotis showed two types of JAR: (i) for distant conspecifics: a symmetric JAR, with lower- and higher-frequency bats shifting their frequencies downwards and upwards, respectively, on average by the same amount; and (ii) for closer conspecifics: an asymmetric JAR, with only the upper-frequency bat shifting its frequency upwards. In comparison, 'wave-type' weakly electric fishes also shift frequencies of discharges in a JAR, but unlike T. teniotis, the shifts are either symmetric in some species or asymmetric in others. We hypothesize that symmetric JAR in T. teniotis serves to avoid jamming and improve echolocation, whereas asymmetric JAR may aid communication by helping to identify and locate conspecifics, thus minimizing chances of mid-air collisions.
使用诸如回声定位或电定位等主动传感系统的动物可能会受到来自邻近同种个体信号的干扰,而这种干扰可以通过干扰避免反应(JAR)来抵消。在此,我们报告了一种食虫蝙蝠(大棕蝠:犬吻蝠科)存在干扰避免反应,但另一种蝙蝠(鞘尾蝠:鞘尾蝠科)在与同种个体一起飞行和觅食时却没有。在大棕蝠中,干扰避免反应表现为回声定位叫声的主频发生变化,从而增强个体之间的差异。信号的频谱重叠越大,引发的干扰避免反应越强。大棕蝠表现出两种类型的干扰避免反应:(i)对于远距离的同种个体:一种对称的干扰避免反应,低频和高频蝙蝠的频率分别平均向下和向上移动相同的幅度;(ii)对于较近距离的同种个体:一种不对称的干扰避免反应,只有高频蝙蝠的频率向上移动。相比之下,“波型”弱电鱼在干扰避免反应中也会改变放电频率,但与大棕蝠不同的是,在某些物种中频率变化是对称的,而在其他物种中是不对称的。我们推测,大棕蝠中的对称干扰避免反应有助于避免干扰并改善回声定位,而不对称干扰避免反应可能通过帮助识别和定位同种个体来辅助交流,从而将空中碰撞的可能性降至最低。