Ozone exposure alters nutrients and stoichiometric ratios in different organs of four urban tree species despite limited negative effects on leaf physiology and plant growth and biomass
作者:Kun Zhang, Shenglan Li, Shuangjiang Li, Bo Shang, Costas J. Saitanis, Yansen Xu, Chao Fang, George K. Papadopoulos, Zhaozhong Feng, Evgenios Agathokleous · 发表于:Journal of Forestry Research · 年份:2025 · DOI:10.1007/s11676-025-01823-0 · 被引用次数:6 · 研究领域:Plant responses to elevated CO2、Atmospheric chemistry and aerosols、Air Quality and Health Impacts
Abstract To better understand the effects of ground-level ozone (O 3 ) on nutrients and stoichiometry in different plant organs, urban tree species Celtis sinensis , Cyclocarya paliurus , Quercus acutissima , and Quercus nuttallii were subjected to a constant exposure to charcoal-filtered air (CF), nonfiltered air (NF), or NF + 40, 60, or 80 nmol O 3 mol –1 (NF40, NF60, and NF80) starting early in the summer of the growing season. At the end of summer, net CO 2 assimilation rate ( A ), stomatal conductance ( g s ), leaf mass per area (LMA), and/or leaf greenness (SPAD) either were not significantly affected by elevated O 3 or were even higher in some cases during the summer compared with the CF or NF controls. LMA was significantly lower in autumn only after the highest O 3 exposures. Compared to NF, NF40 caused a large increase in g s across species in late summer and more K and Mn in stems. At the end of the growing season, nutrient status and stoichiometric ratios in different organs were variously altered under O 3 stress; many changes were large and often species-specific. Across O 3 treatments, LMA was primarily associated with C and Mg levels in leaves and Ca levels in leaves and stems. NF40 enriched K, P, Fe, and Mn in stems, relative to NF, and NF60 enhanced Ca in leaves relative to CF and NF40. Moreover, NF resulted in a higher Ca/Mg ratio in leaves of Q. acutissima only, relative to the other O 3 regimes. Interestingly, across species, O 3 stress led to different n...