UMR5164, University of Bordeaux, 146 Rue Léo Saignat, Bordeaux 33076, France.
Biosciences, University of Exeter, Exeter, EX4 4QD, UK.
Trends Ecol Evol. 2016 Aug;31(8):608-621. doi: 10.1016/j.tree.2016.04.004. Epub 2016 May 19.
Macroevolutionary patterns can be produced by combinations of diverse and even oppositional dynamics. A growing body of data indicates that secondary simplifications of molecular and cellular structures are common. Some major diversifications in eukaryotes have occurred because of loss and minimalisation; numerous episodes in prokaryote evolution have likewise been driven by the reduction of structure. After examining a range of examples of secondary simplification and its consequences across the tree of life, we address how macroevolutionary explanations might incorporate simplification as well as complexification, and adaptive as well as nonadaptive dynamics.
宏观进化模式可以通过多样化甚至相反的动态组合产生。越来越多的数据表明,分子和细胞结构的二次简化是常见的。真核生物的一些主要多样化是由于丧失和最小化引起的;原核生物进化中的许多事件同样是由结构减少驱动的。在考察了生命之树中二次简化及其后果的一系列例子后,我们探讨了宏观进化解释如何将简化与复杂化、适应性与非适应性动态结合起来。