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幼体海龟的异速生长:作为一种抗捕食者适应的可能作用。

Allometric growth in juvenile marine turtles: possible role as an antipredator adaptation.

机构信息

Department of Biological Sciences, Florida Atlantic University, 777 Glades Road, Boca Raton, FL 33431, USA.

Department of Ecology and Evolutionary Biology, University of Arizona, 1041 East Lowell Street, Tucson, AZ 85721, USA.

出版信息

Zoology (Jena). 2014 Apr;117(2):131-8. doi: 10.1016/j.zool.2013.11.004. Epub 2014 Feb 12.

Abstract

Female marine turtles produce hundreds of offspring during their lifetime but few survive because small turtles have limited defenses and are vulnerable to many predators. Little is known about how small turtles improve their survival probabilities with growth though it is assumed that they do. We reared green turtles (Chelonia mydas) and loggerheads (Caretta caretta) from hatchlings to 13 weeks of age and documented that they grew wider faster than they grew longer. This pattern of allometric growth might enable small turtles to more quickly achieve protection from gape-limited predators, such as the dolphinfish (Coryphaena hippurus). As a test of that hypothesis, we measured how dolphinfish gape increased with length, reviewed the literature to determine how dolphinfish populations were size/age structured in nearby waters, and then determined the probability that a small turtle would encounter a fish large enough to consume it if it grew by allometry vs. by isometry (in which case it retained its hatchling proportions). Allometric growth more quickly reduced the probability of a lethal encounter than did isometric growth. On that basis, we suggest that allometry during early ontogeny may have evolved because it provides a survival benefit for small turtles.

摘要

雌性海龟一生中会产下数百只后代,但很少有后代能够存活,因为小海龟的防御能力有限,容易受到许多捕食者的攻击。尽管人们认为小海龟在成长过程中会提高生存概率,但对于它们是如何做到这一点的了解甚少。我们从孵化到 13 周龄饲养绿海龟(Chelonia mydas)和红海龟(Caretta caretta),并记录到它们的宽度增长速度比长度增长速度快。这种异速生长的模式可能使小海龟能够更快地获得免受口裂限制的捕食者的保护,例如海豚鱼(Coryphaena hippurus)。为了验证这一假设,我们测量了海豚鱼口裂随长度的增长情况,查阅了文献以确定附近水域海豚鱼种群的大小/年龄结构,然后确定了如果小海龟通过异速生长而不是等速生长(在这种情况下,它保持了孵化时的比例),它遇到足以吃掉它的鱼的概率。异速生长比等速生长更能降低致命遭遇的概率。基于这一点,我们认为早期个体发育过程中的异速生长可能是因为它为小海龟提供了生存优势而进化而来的。

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