Department of Biology, Brooklyn College CUNY, Brooklyn, New York.
The Graduate Center, CUNY, New York, New York.
Evol Dev. 2020 Jan;22(1-2):35-46. doi: 10.1111/ede.12305. Epub 2019 Jul 29.
Phenotypic plasticity is a potentially definitive solution to environment heterogeneity, driving biologists to understand why it is not ubiquitous in nature. While costs and constraints may limit the success of plasticity, we are still far from a complete theory of when these limitations actually proscribe adaptive plasticity. Here I use a simple model of plasticity incorporating developmental noise to explore the competitive and evolutionary relationships of specialist and generalist genotypes spreading across a heterogeneous landscape. Results show that plasticity can arise in the context of specialism, preadapting genotypes to later evolve toward plastic generalism. Developmental noise helps a mutant with imperfect plasticity successfully compete against its ancestor, providing an evolutionary path by which subsequent mutations can refine plasticity toward its optimum. These results address how the complex selection pressures across a heterogeneous environment can help evolution find paths around constraints arising from developmental mechanisms.
表型可塑性是解决环境异质性的一种潜在决定性方法,促使生物学家去理解为什么它在自然界中并不普遍存在。虽然成本和限制可能会限制可塑性的成功,但我们仍然远未形成一个完整的理论,来说明这些限制实际上何时限制了适应性可塑性。在这里,我使用一个包含发育噪声的简单可塑性模型,来探索在异质景观中传播的特化和广化基因型的竞争和进化关系。结果表明,在特化的背景下可能会出现可塑性,使基因型预先适应,然后朝着具有可塑性的广化方向进化。发育噪声有助于具有不完善可塑性的突变体成功地与其祖先竞争,为随后的突变能够朝着最佳状态细化可塑性提供了一条进化途径。这些结果说明了在异质环境中复杂的选择压力如何帮助进化找到绕过由发育机制引起的限制的途径。