Tonnabel Jeanne, Schurr Frank M, Boucher Florian, Thuiller Wilfried, Renaud Julien, Douzery Emmanuel J P, Ronce Ophélie
Am Nat. 2018 Feb;191(2):220-234. doi: 10.1086/695283. Epub 2017 Dec 5.
Organisms have evolved a diversity of life-history strategies to cope with variation in their environment. Persistence as adults and/or seeds across recruitment events allows species to dampen the effects of environmental fluctuations. The evolution of life cycles with overlapping generations should thus permit the colonization of environments with uncertain recruitment. We tested this hypothesis in Leucadendron (Proteaceae), a genus with high functional diversity native to fire-prone habitats in the South African fynbos. We analyzed the joint evolution of life-history traits (adult survival and seed-bank strategies) and ecological niches (climate and fire regime), using comparative methods and accounting for various sources of uncertainty. In the fynbos, species with canopy seed banks that are unable to survive fire as adults display nonoverlapping generations. In contrast, resprouters with an underground seed bank may be less threatened by extreme climatic events and fire intervals, given their iteroparity and long-lasting seed bank. Life cycles with nonoverlapping generations indeed jointly evolved with niches with less exposure to frost but not with those with less exposure to drought. Canopy seed banks jointly evolved with niches with more predictable fire return, compared to underground seed banks. The evolution of extraordinary functional diversity among fynbos plants thus reflects, at least in part, the diversity of both climates and fire regimes in this region.
生物已经进化出多种生活史策略来应对环境变化。成年个体和/或种子在多次更新事件中的存活,使物种能够减轻环境波动的影响。因此,具有重叠世代的生命周期的进化应该允许物种在更新不确定的环境中定殖。我们在南非开普植物区系中一个具有高功能多样性的山龙眼属(山龙眼科)中验证了这一假设。我们使用比较方法并考虑各种不确定性来源,分析了生活史特征(成年个体存活和种子库策略)和生态位(气候和火 regime)的联合进化。在开普植物区系中,具有树冠种子库且成年个体不能在火灾中存活的物种表现出非重叠世代。相比之下,具有地下种子库的再萌发生长植物可能受极端气候事件和火灾间隔的威胁较小,因为它们具有多次繁殖能力和持久的种子库。非重叠世代的生命周期确实与较少暴露于霜冻的生态位共同进化,但与较少暴露于干旱的生态位没有共同进化。与地下种子库相比,树冠种子库与火灾返回更可预测的生态位共同进化。因此,开普植物区系植物中非凡的功能多样性的进化至少部分反映了该地区气候和火 regime 的多样性。