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幼鲑在中性和弱酸性条件下对同种警报信号的检测:实验室和野外试验

Detection of conspecific alarm cues by juvenile salmonids under neutral and weakly acidic conditions: laboratory and field tests.

作者信息

Leduc Antoine O H C, Kelly Jocelyn M, E Brown Grant

机构信息

Department of Biology, Concordia University, 7141 Sherbrooke O, H4B 1R6, Montréal, Québec, Canada.

出版信息

Oecologia. 2004 Apr;139(2):318-24. doi: 10.1007/s00442-004-1492-8. Epub 2004 Jan 31.

Abstract

A variety of fishes possess damage-released chemical alarm cues, which play a critical role in the detection and avoidance of potential predation threats. Recently, we have demonstrated that the ability of fathead minnows ( Pimephales promelas) and finescale dace ( Phoxinus neogaeus) to detect and respond to conspecific alarm cues is significantly reduced under weakly acidic conditions (pH 6.0). Rainbow trout ( Oncorhynchus mykiss) and brook charr ( Salvelinus fontinalis) possess an analogous alarm cue system. However, it is unknown if the trout alarm cue system is likewise affected by relatively small changes in pH. In addition, previous studies have not verified this phenomenon under natural conditions. We conducted laboratory and field trials to examine the potential effects of acute exposure to weakly acidic (pH 6.0) conditions on the detection and response of conspecific alarm cues by juvenile trout. Our laboratory results demonstrate that while juvenile rainbow trout exhibit significant increases in antipredator behaviour under normal pH conditions (pH 7.0-7.2), they do not respond to the presence of conspecific chemical alarm cues (i.e. response is not different from controls) under weakly acidic conditions. Similarly, a wild strain of brook charr in their natural streams near Sudbury, Ontario, failed to detect conspecific alarm cues in a weakly acidic stream (mean pH 6.11) while they responded to these cues in a neutral stream (mean pH of 6.88). This is the first demonstration that relatively small changes in ambient pH can influence alarm responses under natural conditions. These data suggest significant, sub-lethal effects of acid precipitation on natural waterways.

摘要

多种鱼类拥有受损时释放的化学警报信号,这些信号在检测和躲避潜在捕食威胁方面发挥着关键作用。最近,我们已经证明,在弱酸性条件(pH 6.0)下,黑头呆鱼(Pimephales promelas)和细纹鳟(Phoxinus neogaeus)检测并响应同种警报信号的能力会显著降低。虹鳟(Oncorhynchus mykiss)和溪红点鲑(Salvelinus fontinalis)拥有类似的警报信号系统。然而,尚不清楚鳟鱼的警报信号系统是否同样会受到pH值相对较小变化的影响。此外,以往的研究尚未在自然条件下验证这一现象。我们进行了实验室和野外试验来研究急性暴露于弱酸性(pH 6.0)条件下对幼年鳟鱼检测和响应同种警报信号的潜在影响。我们的实验室结果表明,虽然幼年虹鳟在正常pH条件(pH 7.0 - 7.2)下的反捕食行为显著增加,但在弱酸性条件下它们对同种化学警报信号的存在没有反应(即反应与对照组无异)。同样,安大略省萨德伯里附近自然溪流中的一种野生溪红点鲑菌株,在弱酸性溪流(平均pH 6.11)中未能检测到同种警报信号,而在中性溪流(平均pH 6.88)中它们对这些信号有反应。这是首次证明环境pH值相对较小的变化会在自然条件下影响警报反应。这些数据表明酸雨对天然水道有显著的亚致死影响。

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