Department of Biosciences, University of Oslo, Oslo, Norway.
Department of Microbial Ecology, Lund University, Lund, Sweden.
Environ Microbiol. 2023 Oct;25(10):1875-1893. doi: 10.1111/1462-2920.16398. Epub 2023 May 15.
Traditional strict separation of fungi into ecological niches as mutualist, parasite or saprotroph is increasingly called into question. Sequences of assumed saprotrophs have been amplified from plant root interiors, and several saprotrophic genera can invade and interact with host plants in laboratory growth experiments. However, it is uncertain if root invasion by saprotrophic fungi is a widespread phenomenon and if laboratory interactions mirror field conditions. Here, we focused on the widespread and speciose saprotrophic genus Mycena and performed (1) a systematic survey of their occurrences (in ITS1/ITS2 datasets) in mycorrhizal roots of 10 plant species, and (2) an analysis of natural abundances of C/ N stable isotope signatures of Mycena basidiocarps from five field locations to examine their trophic status. We found that Mycena was the only saprotrophic genus consistently found in 9 out of 10 plant host roots, with no indication that the host roots were senescent or otherwise vulnerable. Furthermore, Mycena basidiocarps displayed isotopic signatures consistent with published C/ N profiles of both saprotrophic and mutualistic lifestyles, supporting earlier laboratory-based studies. We argue that Mycena are widespread latent invaders of healthy plant roots and that Mycena species may form a spectrum of interactions besides saprotrophy also in the field.
传统上将真菌严格划分为互惠共生、寄生或腐生等生态位的做法正受到越来越多的质疑。从植物根系内部扩增出了假定的腐生菌序列,并且一些腐生菌属可以在实验室生长实验中侵入和与宿主植物相互作用。然而,尚不确定腐生真菌是否普遍存在根系入侵现象,以及实验室中的相互作用是否能反映野外条件。在这里,我们专注于广泛存在且种类繁多的腐生菌属 Mycena,并进行了以下研究:(1)系统调查了它们在 10 种植物的菌根中的出现情况(在 ITS1/ITS2 数据集);(2)分析了来自五个野外地点的 Mycena 担子果的自然丰度 C/N 稳定同位素特征,以研究其营养状况。我们发现,Mycena 是唯一一种在 9/10 的植物宿主根中始终存在的腐生菌属,这表明宿主根并未衰老或处于其他脆弱状态。此外,Mycena 担子果的同位素特征与已发表的腐生和互惠共生生活方式的 C/N 图谱一致,这支持了早期基于实验室的研究。我们认为,Mycena 是健康植物根系中广泛存在的潜在入侵菌属,并且 Mycena 物种在野外可能除了腐生之外,还形成了一系列相互作用的光谱。