Laboratory of Nematology, Wageningen University, PO Box 8123, Droevendaalsesteeg, 16700 ES, Wageningen, The Netherlands.
Department of Microbial Ecology, Netherlands Institute of Ecology, PO Box 50, Droevendaalsesteeg, 106700 AB, Wageningen, The Netherlands.
Nat Commun. 2019 Apr 5;10(1):1564. doi: 10.1038/s41467-019-09615-x.
Plant-soil feedbacks contribute to vegetation dynamics by species-specific interactions between plants and soil biota. Variation in plant-soil feedbacks can be predicted by root traits, successional position, and plant nativeness. However, it is unknown whether closely related plant species develop more similar plant-soil feedbacks than more distantly related species. Where previous comparisons included plant species from distant phylogenetic positions, we studied plant-soil feedbacks of congeneric species. Using eight intra-continentally range-expanding and native Geranium species, we tested relations between phylogenetic distances, chemical and structural root traits, root microbiomes, and plant-soil feedbacks. We show that root chemistry and specific root length better predict bacterial and fungal community composition than phylogenetic distance. Negative plant-soil feedback strength correlates with root-feeding nematode numbers, whereas microbiome dissimilarity, nativeness, or phylogeny does not predict plant-soil feedbacks. We conclude that root microbiome variation among congeners is best explained by root traits, and that root-feeding nematode abundances predict plant-soil feedbacks.
植物-土壤反馈通过植物与土壤生物区系之间的特定物种相互作用来促进植被动态。植物-土壤反馈的变化可以通过根系特征、演替位置和植物的本土性来预测。然而,目前还不清楚亲缘关系较近的植物物种是否比亲缘关系较远的物种形成更相似的植物-土壤反馈。在以前的比较中包括了来自遥远系统发育位置的植物物种,我们研究了同属植物物种的植物-土壤反馈。使用 8 种在大陆范围内分布范围扩大的本地天竺葵属植物,我们测试了系统发育距离、化学和结构根系特征、根微生物组与植物-土壤反馈之间的关系。我们表明,根化学和比根长更能预测细菌和真菌群落组成,而系统发育距离则不能。负的植物-土壤反馈强度与食根线虫数量相关,而微生物组的差异、本土性或系统发育并不能预测植物-土壤反馈。我们得出结论,同属植物之间的根微生物组变异最好用根特征来解释,而食根线虫的丰度可以预测植物-土壤反馈。