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变态的进化生态学

The Evolutionary Ecology of Metamorphosis.

出版信息

Am Nat. 2019 May;193(5):E116-E131. doi: 10.1086/701779. Epub 2019 Mar 8.

Abstract

Almost all animal species undergo metamorphosis, even though empirical data show that this life-history strategy evolved only a few times. Why is metamorphosis so widespread, and why has it evolved? Here we study the evolution of metamorphosis by using a fully size-structured population model in conjunction with the adaptive-dynamics approach. We assume that individuals compete for two food sources; one of these, the primary food source, is available to individuals of all sizes. The secondary food source is available only to large individuals. Without metamorphosis, unresolvable tensions arise for species faced with the opportunity of specializing on such a secondary food source. We show that metamorphosis can evolve as a way to resolve these tensions, such that small individuals specialize on the primary food source while large individuals specialize on the secondary food source. We find, however, that metamorphosis evolves only when the supply rate of the secondary food source exceeds a high threshold. Individuals postpone metamorphosis when the ecological conditions under which metamorphosis originally evolved deteriorate but will often not abandon this life-history strategy, even if it causes population extinction through evolutionary trapping. In summary, our results show that metamorphosis is not easy to evolve but that, once evolved, it is hard to lose. These findings can explain the widespread occurrence of metamorphosis in the animal kingdom despite its few evolutionary origins.

摘要

几乎所有动物物种都经历变态,尽管经验数据表明这种生活史策略只进化了几次。为什么变态如此普遍,它是如何进化的?在这里,我们通过使用完全大小结构的种群模型结合适应动态方法来研究变态的进化。我们假设个体为两种食物源而竞争;其中一种,主要食物源,可供所有大小的个体使用。次要食物源仅对大个体可用。如果没有变态,对于有机会专门研究这种次要食物源的物种来说,就会出现不可调和的紧张局面。我们表明,变态可以作为一种解决这些紧张局势的方法而进化,使得小个体专门从事主要食物源,而大个体专门从事次要食物源。然而,我们发现,只有当次要食物源的供应率超过一个高阈值时,变态才会进化。当最初进化出变态的生态条件恶化时,个体将推迟变态,但即使这会导致种群灭绝的进化陷阱,它们通常也不会放弃这种生活史策略。总之,我们的研究结果表明,变态不容易进化,但一旦进化,就很难失去。这些发现可以解释为什么尽管变态的进化起源很少,但它在动物界仍然广泛存在。

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