特质
生态学
生态位
利基
适应(眼睛)
生物
生态系统
遗传建筑学
社区
生态网络
进化生物学
表型
计算机科学
栖息地
神经科学
生物化学
基因
程序设计语言
作者
Marilyne Laurans,François Munoz,Tristan Charles‐Dominique,Patrick Heuret,Claire Fortunel,Sandrine Isnard,Sylvie-Annabel Sabatier,Yves Caraglio,Cyrille Violle
标识
DOI:10.1016/j.tree.2023.11.011
摘要
Trait-based ecology has improved our understanding of the functioning of organisms, communities, ecosystems, and beyond. However, its predictive ability remains limited as long as phenotypic integration and temporal dynamics are not considered. We highlight how the morphogenetic processes that shape the 3D development of a plant during its lifetime affect its performance. We show that the diversity of architectural traits allows us to go beyond organ-level traits in capturing the temporal and spatial dimensions of ecological niches and informing community assembly processes. Overall, we argue that consideration of multilevel topological, geometrical, and ontogenetic features provides a dynamic view of the whole-plant phenotype and a relevant framework for investigating phenotypic integration, plant adaptation and performance, and community structure and dynamics.
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