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中国南方臭氧胁迫下樟树根特性和土壤性质的变化。

Changes of Cinnamomum camphora root characteristics and soil properties under ozone stress in South China.

机构信息

College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou, 510642, People's Republic of China.

Guangdong Eco-Engineering Polytechnic, Guangzhou, 510520, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2019 Oct;26(30):30684-30692. doi: 10.1007/s11356-019-05199-7. Epub 2019 May 2.

Abstract

High O exposure affects the forest growth and soil characteristics. Although there is substantial evidence that O does impose a stress on forest trees, the effects of O on roots and soil of evergreen broad-leaved tree species in South China remain unknown. The effects of ozone (O) fumigation on the root biomass, root morphology, root nutrient, soil physical, and chemical properties were examined in Cinnamomum camphora seedlings grown under four O treatments (charcoal-filtered air (CF) or O at 1×, 2× and 4× ambient concentration). O significantly decreased root biomass and root carbon (C). Regardless of O level, elevated O significantly resulted in reduced root surface area, volume, number of forks, and specific root length (SRL). The percentages of fine to total root in terms of root surface area and root volume of seedlings under the CF and 1 × O treatments were significantly higher than those of seedlings under the 4 × O treatment, indicating that high O level impaired the growth performance of fine roots. O affected root growth and structures, which increased soil bulk density and reduced soil total porosity and void ratio. The soil pH under all O fumigation treatments significantly increased compared with CF treatment, whereas the organic matter significantly decreased. In conclusion, although the increased O level enhanced root N and P under 2 and 4 × O treatments compared with 1 × O treatment as compensation mechanisms to prevent O-induced decrease in root C gain and root functions, O still decreased the root biomass and root tips, and changed the soil physical and chemical properties.

摘要

高臭氧(O)暴露会影响森林生长和土壤特性。虽然有大量证据表明 O 确实会对森林树木造成压力,但 O 对中国南方常绿阔叶树种的根和土壤的影响仍不清楚。本研究在四种臭氧(O)处理(木炭过滤空气(CF)或 O 浓度为 1×、2×和 4×环境浓度)下,研究了臭氧(O)熏蒸对樟树幼苗根生物量、根形态、根养分、土壤物理和化学性质的影响。O 显著降低了根生物量和根碳(C)。无论 O 水平如何,升高的 O 都会显著导致根表面积、体积、分叉数量和比根长(SRL)减少。CF 和 1×O 处理下的幼苗细根表面积和根体积的细根与总根的比例明显高于 4×O 处理下的幼苗,表明高 O 水平损害了细根的生长性能。O 影响根生长和结构,增加土壤容重,降低土壤总孔隙度和空隙比。与 CF 处理相比,所有 O 熏蒸处理下的土壤 pH 值均显著升高,而有机质显著降低。总之,尽管 2 和 4×O 处理下的 O 水平增加了根氮(N)和磷(P)含量,作为防止 O 引起的根 C 获得和根功能下降的补偿机制,但 O 仍降低了根生物量和根尖端,并改变了土壤物理和化学性质。

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