Curtis Daniel L, Jensen Erin K, McGaw Iain J
School of Life Sciences, University of Nevada, Las Vegas, 4505 Maryland Parkway, Las Vegas, Nevada 89154-4004, USA.
Biol Bull. 2007 Jun;212(3):222-31. doi: 10.2307/25066604.
The relationship between the behavioral and physiological responses to hyposaline exposure was investigated in Cancer gracilis, the graceful crab. The status of C. gracilis as an osmoconformer was confirmed. Survival decreased with salinity: the LT(50) in 50% seawater (a practical salinity of 16, or 16 per thousand) was 31.5 +/- 22.7 h and in 25% seawater (a salinity of 8) was 8.0 +/- 0.7 h. When exposed to a salinity gradient, most crabs moved towards the highest salinity. However, in the salinity range of 55% to 65% seawater, they became quiescent. This "closure response" was also evident at low salinities: the mouthparts were tightly closed and animals remained motionless for 2 to 2.5 h. During closure, crabs were able to maintain the salinity of water within the branchial chambers at a level that was about 30% higher than that of the surrounding medium. The closure response was closely linked to a short-term decrease in oxygen uptake. During closure, oxygen within the branchial chamber was rapidly depleted, with oxygen uptake returning to pretreatment levels upon the resumption of activity. In addition to the short-term decrease in oxygen uptake, there was a longer-term bradycardia, which may serve to further reduce diffusive ion loss across the gills. By exhibiting a closure response during acute hyposaline exposure and an avoidance reaction during prolonged or severe hyposaline exposure, C. gracilis is able to use behavior to exploit areas prone to frequent episodes of low salinity.
在优美黄道蟹(Cancer gracilis)中研究了对低盐度暴露的行为和生理反应之间的关系。确认了优美黄道蟹作为渗透顺应者的状态。存活率随盐度降低:在50%海水(实际盐度为16,即千分之十六)中的半数致死时间(LT(50))为31.5±22.7小时,在25%海水(盐度为8)中为8.0±0.7小时。当暴露于盐度梯度时,大多数螃蟹会向最高盐度移动。然而,在55%至65%海水的盐度范围内,它们会变得静止不动。这种“闭合反应”在低盐度时也很明显:口器紧闭,动物静止不动2至2.5小时。在闭合期间,螃蟹能够将鳃腔内的水盐度维持在比周围介质高约30%的水平。闭合反应与氧气摄取的短期减少密切相关。在闭合期间,鳃腔内的氧气迅速耗尽,恢复活动后氧气摄取恢复到预处理水平。除了氧气摄取的短期减少外,还有长期的心动过缓,这可能有助于进一步减少鳃上扩散性离子损失。通过在急性低盐度暴露期间表现出闭合反应以及在长期或严重低盐度暴露期间表现出回避反应,优美黄道蟹能够利用行为来开拓容易频繁出现低盐度情况的区域。