Bleuven Clara, Landry Christian R
Département de Biologie, Université Laval, Québec, Québec, Canada
Institut de Biologie Intégrative et des Systèmes (IBIS), Université Laval, Québec, Québec, Canada.
Proc Biol Sci. 2016 Oct 26;283(1841). doi: 10.1098/rspb.2016.1458.
Environmental heterogeneity constitutes an evolutionary challenge for organisms. While evolutionary dynamics under variable conditions has been explored for decades, we still know relatively little about the cellular and molecular mechanisms involved. It is of paramount importance to examine these molecular bases because they may play an important role in shaping the course of evolution. In this review, we examine the diversity of adaptive mechanisms in the face of environmental changes. We exploit the recent literature on microbial systems because those have benefited the most from the recent emergence of genetic engineering and experimental evolution followed by genome sequencing. We identify four emerging trends: (i) an adaptive molecular change in a pathway often results in fitness trade-off in alternative environments but the effects are dependent on a mutation's genetic background; (ii) adaptive changes often modify transcriptional and signalling pathways; (iii) several adaptive changes may occur within the same molecular pathway but be associated with pleiotropy of different signs across environments; (iv) because of their large associated costs, macromolecular changes such as gene amplification and aneuploidy may be a rapid mechanism of adaptation in the short-term only. The course of adaptation in a variable environment, therefore, depends on the complexity of the environment but also on the molecular relationships among the genes involved and between the genes and the phenotypes under selection.
环境异质性对生物体构成了进化挑战。尽管在可变条件下的进化动力学已被研究了数十年,但我们对其中涉及的细胞和分子机制仍然知之甚少。研究这些分子基础至关重要,因为它们可能在塑造进化过程中发挥重要作用。在本综述中,我们研究了面对环境变化时适应性机制的多样性。我们利用了最近关于微生物系统的文献,因为这些系统从基因工程和实验进化的最新出现以及随后的基因组测序中受益最大。我们确定了四个新出现的趋势:(i)一条途径中的适应性分子变化通常会在替代环境中导致适应性权衡,但其影响取决于突变的遗传背景;(ii)适应性变化通常会改变转录和信号通路;(iii)同一分子途径中可能会发生几种适应性变化,但在不同环境中与不同符号的多效性相关;(iv)由于其相关成本巨大,诸如基因扩增和非整倍体等大分子变化可能只是短期内的一种快速适应机制。因此,在可变环境中的适应过程不仅取决于环境的复杂性,还取决于所涉及基因之间以及基因与选择下的表型之间的分子关系。