Non-targeted metabolomics reveal the impact of phenanthrene stress on root exudates of ten urban greening tree species.

Environ Res

College of Life Science and Technology, Central South University of Forestry and Technology, Changsha, 410004, Hunan Province, PR China; National Engineering Laboratory for Applied Technology of Forestry and Ecology in South China, Changsha, 410004, Hunan Province, PR China. Electronic address:

Published: May 2021

Different root exudations can modify the bioavailability of persistent organic pollutants (POPs). Among these exudations, the low molecular weight organic acids play an imperative role in this process. The study was conducted to analyze the effect of phenanthrene (PHE) stress on root exudation variations and changes in its chemical composition in ten urban greening tree species, namely Loropetalum chinense, Gardenia ellis, Photinia fraseri, Ligustrum japonicum, Rhododendron simsii, Osmanthus fragrans, Gardenia jasminoides, Buxus sinica, Camellia sasanqua, and Euonymus japonicas. The experiment was carried out in three PHE concentration treatments (0 mg kg (CK), 200 mg kg (PHE), 2000 mg kg (PHE)). The root exudates were collected and analyzed by GC-MS method. In total, 673 compounds were identified either with high or low abundance among all species and treatments. Compounds identified in CK, PHE, and PHE were 240, 180, and 256, respectively. The results illustrated that carbohydrates, phenols, and esters were the dominant compounds, accounted for more than 92%. Principal component analysis depicted that tree species grown in PHE showed obvious alteration in compounds of root exudation, whereas little difference was noticed between PHE and CK. Phenols (80%) were the most abundant, while nitriles contributed a small portion. Moreover, among all species, R. simsii released the maximum number of compounds, and L. japonicum released the least number of compounds accounting for 89 and 46, respectively. The results achieved here to illustrate that plant type, and PHE stress can significantly change the concentrations and species of root exudates. This study provides the scientific reference for understanding the phenanthrene responsive changes in root exudates and phytoremediation of polycyclic aromatic hydrocarbons (PAHs), as well as a screening of urban greening tree species.

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http://dx.doi.org/10.1016/j.envres.2020.110370DOI Listing

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