植物-传粉者相互作用的生态位视角。
Niche Perspectives on Plant-Pollinator Interactions.
机构信息
Department of Ecology, Environment, and Evolution, La Trobe University, VIC 3086, Australia; Kings Park Science, Department of Biodiversity, Conservation, and Attractions, WA 6005, Australia; Ecology and Evolution, Research School of Biology, The Australian National University, Canberra, ACT 2600, Australia.
Ecology and Evolution, Research School of Biology, The Australian National University, Canberra, ACT 2600, Australia.
出版信息
Trends Plant Sci. 2020 Aug;25(8):779-793. doi: 10.1016/j.tplants.2020.03.009. Epub 2020 May 5.
Ecological niches are crucial for species coexistence and diversification, but the niche concept has been underutilized in studying the roles of pollinators in plant evolution and reproduction. Pollination niches can be objectively characterized using pollinator traits, abundance, and distributions, as well as network topology. We review evidence that floral traits represent adaptations to pollination niches, where tradeoffs in trait deployment reinforce niche specialization. In turn, specialized pollination niches potentially increase speciation rates, foster species coexistence, and constrain species range limits. By linking studies of adaptation with those on speciation and coexistence, the pollination niche provides an organizing principle for research on plant reproduction, and conceptually unites these studies with fields of biology where the niche perspective is already firmly established.
生态位对于物种共存和多样化至关重要,但在研究传粉者在植物进化和繁殖中的作用时,对生态位概念的利用还不够充分。可以使用传粉者的特征、丰度和分布以及网络拓扑结构来客观地描述传粉者的生态位。我们回顾了这样的证据,即花的特征代表了对传粉者生态位的适应,在特征配置中的权衡加强了生态位的专门化。反过来,专门的传粉生态位可能会增加物种形成率,促进物种共存,并限制物种的分布范围。通过将适应性研究与物种形成和共存研究联系起来,传粉者生态位为植物繁殖的研究提供了一个组织原则,并从概念上将这些研究与已经确立了生态位观点的生物学领域联系起来。