Department of Environmental Studies, Dartmouth College, Hanover, NH 03755, USA.
Department of Biology, University of York, York, YO10 5DD, UK.
Trends Ecol Evol. 2022 Jul;37(7):573-581. doi: 10.1016/j.tree.2022.04.003. Epub 2022 May 1.
Traits are inherent properties of organisms, but how are they defined for organismal networks such as mycorrhizal symbioses? Mycorrhizal symbioses are complex and diverse belowground symbioses between plants and fungi that have proved challenging to fit into a unified and coherent trait framework. We propose an inclusive mycorrhizal trait framework that classifies traits as morphological, physiological, and phenological features that have functional implications for the symbiosis. We further classify mycorrhizal traits by location - plant, fungus, or the symbiosis - which highlights new questions in trait-based mycorrhizal ecology designed to charge and challenge the scientific community. This new framework is an opportunity for researchers to interrogate their data to identify novel insights and gaps in our understanding of mycorrhizal symbioses.
特性是生物体固有的属性,但对于菌根共生等生物体网络,它们是如何被定义的呢?菌根共生是植物和真菌之间复杂多样的地下共生关系,很难将其纳入一个统一和连贯的特性框架中。我们提出了一个包容性的菌根特性框架,将特性分类为形态、生理和物候特征,这些特征对共生关系具有功能意义。我们进一步根据位置——植物、真菌或共生体——对菌根特性进行分类,这突出了基于特性的菌根生态学中的新问题,旨在为科学界提供新的挑战。这个新框架为研究人员提供了一个机会,可以利用他们的数据来发现我们对菌根共生体理解中的新见解和差距。