Kokkoris Vasilis, Lekberg Ylva, Antunes Pedro M, Fahey Catherine, Fordyce James A, Kivlin Stephanie N, Hart Miranda M
Department of Biology, University of Ottawa, Ottawa, ON, K1N 6N5, Canada.
MPG Ranch and University of Montana, Missoula, MT, 59833, USA.
New Phytol. 2020 Nov;228(3):828-838. doi: 10.1111/nph.16676. Epub 2020 Jun 27.
That arbuscular mycorrhizal (AM) fungi covary with plant communities is clear, and many papers report nonrandom associations between symbiotic partners. However, these studies do not test the causal relationship, or 'codependency', whereby the composition of one guild affects the composition of the other. Here we outline underlying requirements for codependency, compare important drivers for both plant and AM fungal communities, and assess how host preference - a pre-requisite for codependency - changes across spatiotemporal scales and taxonomic resolution for both plants and AM fungi. We find few examples in the literature designed to test for codependency and those that do have been conducted within plots or mesocosms. Also, while plants and AM fungi respond similarly to coarse environmental filters, most variation remains unexplained, with host identity explaining less than 30% of the variation in AM fungal communities. These results combined question the likelihood of predictable co-occurrence, and therefore evolution of codependency, between plant and AM fungal taxa across locations. We argue that codependency is most likely to occur in homogeneous environments where specific plant - AM fungal pairings have functional consequences for the symbiosis. We end by outlining critical aspects to consider moving forward.
丛枝菌根(AM)真菌与植物群落共同变化是明确的,许多论文报道了共生伙伴之间的非随机关联。然而,这些研究并未检验因果关系,即一个群落的组成如何影响另一个群落的组成,也就是“相互依存关系”。在这里,我们概述了相互依存关系的基本要求,比较了植物和AM真菌群落的重要驱动因素,并评估了宿主偏好(相互依存关系的一个先决条件)如何在时空尺度以及植物和AM真菌的分类分辨率上发生变化。我们发现文献中很少有旨在检验相互依存关系的例子,而且那些已进行的研究都是在地块或中型生态系统内开展的。此外,虽然植物和AM真菌对粗略的环境过滤因素反应相似,但大部分变异仍无法解释,宿主身份对AM真菌群落变异的解释不到30%。这些结果共同质疑了植物和AM真菌类群在不同地点之间可预测共生以及相互依存关系进化的可能性。我们认为,相互依存关系最有可能发生在特定植物 - AM真菌配对对共生具有功能影响的同质环境中。最后,我们概述了未来需要考虑的关键方面。