生态学
特质
生态系统
生物
生物圈
生态生理学
生态系统生态学
词根(语言学)
植物生态学
功能生态学
陆地生态系统
植物
计算机科学
哲学
语言学
光合作用
程序设计语言
作者
Grégoire T. Freschet,Catherine Roumet,Louise H. Comas,Monique Weemstra,A. Glyn Bengough,Boris Rewald,Richard D. Bardgett,Gerlinde B. De Deyn,David Johnson,Jitka Klimešová,Martin Lukáč,Michael McCormack,Ina C. Meier,Loïc Pagès,Hendrik Poorter,Iván Prieto,Nina Wurzburger,Marcin Zadworny,Agnieszka Bagniewska‐Zadworna,Elison B. Blancaflor
摘要
The effects of plants on the biosphere, atmosphere and geosphere are key determinants of terrestrial ecosystem functioning. However, despite substantial progress made regarding plant belowground components, we are still only beginning to explore the complex relationships between root traits and functions. Drawing on the literature in plant physiology, ecophysiology, ecology, agronomy and soil science, we reviewed 24 aspects of plant and ecosystem functioning and their relationships with a number of root system traits, including aspects of architecture, physiology, morphology, anatomy, chemistry, biomechanics and biotic interactions. Based on this assessment, we critically evaluated the current strengths and gaps in our knowledge, and identify future research challenges in the field of root ecology. Most importantly, we found that belowground traits with the broadest importance in plant and ecosystem functioning are not those most commonly measured. Also, the estimation of trait relative importance for functioning requires us to consider a more comprehensive range of functionally relevant traits from a diverse range of species, across environments and over time series. We also advocate that establishing causal hierarchical links among root traits will provide a hypothesis-based framework to identify the most parsimonious sets of traits with the strongest links on functions, and to link genotypes to plant and ecosystem functioning.
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