首页 | 本学科首页   官方微博 | 高级检索  
     


Defining a spectrum of integrative trait‐based vegetation canopy structural types
Authors:Robert T. Fahey,Jeff W. Atkins,Christopher M. Gough,Brady S. Hardiman,Lucas E. Nave,Jason M. Tallant,Knute J. Nadehoffer,Christoph Vogel,Cynthia M. Scheuermann,Ellen Stuart‐Haë  ntjens,Lisa T. Haber,Alexander T. Fotis,Raleigh Ricart,Peter S. Curtis
Abstract:Vegetation canopy structure is a fundamental characteristic of terrestrial ecosystems that defines vegetation types and drives ecosystem functioning. We use the multivariate structural trait composition of vegetation canopies to classify ecosystems within a global canopy structure spectrum. Across the temperate forest sub‐set of this spectrum, we assess gradients in canopy structural traits, characterise canopy structural types (CST) and evaluate drivers and functional consequences of canopy structural variation. We derive CSTs from multivariate canopy structure data, illustrating variation along three primary structural axes and resolution into six largely distinct and functionally relevant CSTs. Our results illustrate that within‐ecosystem successional processes and disturbance legacies can produce variation in canopy structure similar to that associated with sub‐continental variation in forest types and eco‐climatic zones. The potential to classify ecosystems into CSTs based on suites of structural traits represents an important advance in understanding and modelling structure–function relationships in vegetated ecosystems.
Keywords:Canopy  complexity  lidar  structure  traits
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号