Zhu Chunchao, Wang Zihui, Deane David C, Luo Wenqi, Chen Yongfa, Cao Yongjun, Lin Yumiao, Zhang Minhua
Department of Bioengineering, Zhuhai Campus of Zunyi Medical University, Zhuhai, China.
Département des Sciences Biologiques, Université du Québec à Montréal, Montréal, QC, Canada.
Front Plant Sci. 2022 May 18;13:784778. doi: 10.3389/fpls.2022.784778. eCollection 2022.
Plant and root fungal interactions are among the most important belowground ecological interactions, however, the mechanisms underlying pairwise interactions and network patterns of rhizosphere fungi and host plants remain unknown. We tested whether neutral process or spatial constraints individually or jointly best explained quantitative plant-ectomycorrhizal fungal network assembly in a subtropical forest in southern China. Results showed that the observed plant-ectomycorrhizal fungal network had low connectivity, high interaction evenness, and an intermediate level of specialization, with nestedness and modularity both greater than random expectation. Incorporating information on the relative abundance and spatial overlap of plants and fungi well predicted network nestedness and connectance, but not necessarily explained other network metrics such as specificity. Spatial overlap better predicted pairwise species interactions of plants and ectomycorrhizal fungi than species abundance or a combination of species abundance and spatial overlap. There was a significant phylogenetic signal on species degree and interaction strength for ectomycorrhizal fungal but not for plant species. Our study suggests that neutral processes (species abundance matching) and niche/dispersal-related processes (implied by spatial overlap and phylogeny) jointly drive the shaping of a plant-ectomycorrhizal fungal network.
植物与根系真菌的相互作用是最重要的地下生态相互作用之一,然而,根际真菌与寄主植物之间成对相互作用和网络模式的潜在机制仍不清楚。我们测试了中性过程或空间限制单独或共同作用是否能最好地解释中国南方亚热带森林中植物与外生菌根真菌网络的定量组装。结果表明,观察到的植物与外生菌根真菌网络连通性低、相互作用均匀度高、专业化程度中等,嵌套性和模块性均大于随机预期。纳入植物和真菌的相对丰度及空间重叠信息能很好地预测网络嵌套性和连通性,但不一定能解释其他网络指标,如特异性。空间重叠比物种丰度或物种丰度与空间重叠的组合能更好地预测植物与外生菌根真菌的成对物种相互作用。外生菌根真菌的物种度和相互作用强度存在显著的系统发育信号,而植物物种则没有。我们的研究表明,中性过程(物种丰度匹配)和与生态位/扩散相关的过程(由空间重叠和系统发育暗示)共同驱动了植物与外生菌根真菌网络的形成。