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可诱导形态可塑性的灵活架构

Flexible architecture of inducible morphological plasticity.

作者信息

Kishida Osamu, Nishimura Kinya

机构信息

Graduate School of Fisheries Sciences, Hokkaido University, Hakodate 041-8611, Hokkaido, Japan.

出版信息

J Anim Ecol. 2006 May;75(3):705-12. doi: 10.1111/j.1365-2656.2006.01091.x.

Abstract
  1. Predator-induced morphological defences are produced in response to an emergent predator regime. In natural systems, prey organisms usually experience temporal shifting of the composition of the predator assemblage and of the intensity of predation risk from each predator species. Although, a repetitive morphological change in response to a sequential shift of the predator regime such as alteration of the predator species or diminution of the predation risk may be adaptive, such flexible inducible morphological defences are not ubiquitous. 2. We experimentally addressed whether a flexible inducible morphological defence is accomplished in response to serial changes in the predation regime, using a model prey species which adopt different defensive morphological phenotypes in response to different predator species. Rana pirica (Matsui) tadpoles increased body depth and tail depth against the predatory larval salamander Hynobius retardatus (Dunn); on the other hand, they only increased tail depth against the predatory larval dragonfly Aeshna nigroflava (Martin). 3. Rana pirica tadpoles with the predator-specific phenotypes were subjected to removal or exchange of the predator species. After removal of the predator species, tadpoles with each predator-specific phenotype changed their phenotype to the nondefensive basic one, suggesting that both predator-specific phenotypes are costly to maintain. After an exchange of the predator species, tadpoles with each predator-specific phenotype reciprocally, flexibly shifted their phenotype to the now more suitable predator-specific one only by modifying their body part. The partial modification can effectively reduce time and energy expenditures involved in repetitive morphological changes, and therefore suggest that the costs of the flexible morphological changes are reduced.
摘要
  1. 捕食者诱导的形态防御是对一种新出现的捕食者模式做出的反应。在自然系统中,猎物通常会经历捕食者组合的组成以及每种捕食者物种的捕食风险强度随时间的变化。虽然,对捕食者模式的顺序变化(如捕食者物种的改变或捕食风险的降低)做出的重复性形态变化可能具有适应性,但这种灵活的可诱导形态防御并非普遍存在。2. 我们通过实验研究了一种灵活的可诱导形态防御是否会对捕食模式的连续变化做出反应,使用了一种模型猎物物种,该物种会根据不同的捕食者物种采用不同的防御形态表型。日本林蛙(松井)蝌蚪针对捕食性蝾螈幼体钝口螈(邓恩)增加了身体深度和尾巴深度;另一方面,它们仅针对捕食性蜻蜓幼体黑纹伟蜓(马丁)增加了尾巴深度。3. 具有特定捕食者表型的日本林蛙蝌蚪经历了捕食者物种的移除或交换。在移除捕食者物种后,具有每种特定捕食者表型的蝌蚪将其表型转变为无防御的基本表型,这表明维持这两种特定捕食者表型的成本都很高。在捕食者物种交换后,具有每种特定捕食者表型的蝌蚪相互灵活地将其表型仅通过改变身体部位转变为现在更合适的特定捕食者表型。这种部分改变可以有效减少重复性形态变化所涉及的时间和能量消耗,因此表明灵活形态变化的成本降低了。

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