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拟态辐射中共同拟态者的生物碱防御。

Alkaloid defenses of co-mimics in a putative Müllerian mimetic radiation.

机构信息

Department of Biology, East Carolina University, 1000 E, Fifth St, Greenville, NC 27858, USA.

出版信息

BMC Evol Biol. 2014 Apr 4;14(1):76. doi: 10.1186/1471-2148-14-76.

Abstract

BACKGROUND

Polytypism in aposematic species is unlikely according to theory, but commonly seen in nature. Ranitomeya imitator is a poison frog species exhibiting polytypic mimicry of three congeneric model species (R. fantastica, R. summersi, and two morphs of R. variabilis) across four allopatric populations (a "mimetic radiation"). In order to investigate chemical defenses in this system, a key prediction of Müllerian mimicry, we analyzed the alkaloids of both models and mimics from four allopatric populations.

RESULTS

In this study we demonstrate distinct differences in alkaloid profiles between co-mimetic species within allopatric populations. We further demonstrate that R. imitator has a greater number of distinct alkaloid types than the model species and more total alkaloids in all but one population.

CONCLUSIONS

Given that R. imitator is the more abundant species in these populations, R. imitator is likely driving the majority of predator-learned avoidance in these complexes. The success of Ranitomeya imitator as a putative advergent mimic may be a direct result of differences in alkaloid sequestration. Furthermore, we propose that automimicry within co-mimetic species is an important avenue of research.

摘要

背景

根据理论,警戒物种的多态性不太可能,但在自然界中很常见。模仿蟾属的是一种毒蛙物种,在四个地理隔离种群(“模仿辐射”)中表现出对三种同属模式种(R. fantastica、R. summersi 和两种 R. variabilis 形态)的多态拟态。为了研究该系统中的化学防御——缪勒拟态的一个关键预测,我们分析了来自四个地理隔离种群的两种模型和模仿者的生物碱。

结果

在这项研究中,我们证明了在地理隔离种群中共同拟态物种之间的生物碱图谱存在明显差异。我们进一步证明,在除了一个种群之外的所有种群中,模仿蟾属具有比模型物种更多的不同生物碱类型和更多的总生物碱。

结论

鉴于 R. imitator 在这些种群中更为丰富,因此它很可能在这些复合体中主导了大多数由捕食者学习引起的回避行为。Ranitomeya imitator 作为一种假定的趋同模仿者的成功可能是生物碱隔离差异的直接结果。此外,我们提出同种内的自动拟态是一个重要的研究途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d05/4101839/eef92e709216/1471-2148-14-76-1.jpg

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