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高浓度O3对银杏凋落叶化学组成的影响

苏丽丽1,付伟1,2,徐胜1,何兴元1**,陈玮1,赵诣1,黄彦青1   

  1. (1 森林与土壤生态国家重点实验室, 中国科学院沈阳应用生态研究所, 沈阳 110016; 2西南林业大学园林学院, 云南昆明 650224)
  • 出版日期:2015-10-10 发布日期:2015-10-10

Effects of elevated O3 concentration on chemical composition of leaf litter of Ginkgo biloba.

SU Li-li1, FU Wei1,2, XU Sheng1, HE Xing-yuan1**, CHEN Wei1, ZHAO Yi1, HUANG Yan-qing1   

  1. (1State Key Laboratory of Forest and Soil Ecology, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China; 2Faculty of Landscape Architecture, Southwest Forestry University, Kunming 650224, China)
  • Online:2015-10-10 Published:2015-10-10

摘要:

北半球近地大气O3浓度在最近几十年里持续升高,对陆地生态系统产生深远的影响。本文选取5年生银杏(Ginkgo biloba)为研究对象,利用开顶式气室(OTCs)开展了3个不同浓度的O3(自然对照浓度约40 nmol·mol-1、处理浓度80和120 nmol·mol-1)熏蒸试验,持续熏蒸2个生长季(2012—2013年)后,于2013年11年月初收集其凋落叶,测定并分析不同处理下银杏凋落叶化学成分的变化。结果表明:与对照相比,高浓度O3处理组银杏凋落叶的N、K含量均显著升高,总酚含量以及C/N、木质素/N降低;而C、P、木质素含量以及C/P并未呈现出显著差异。可溶性糖、缩合单宁含量在两高浓度O3处理下变化趋势并不一致:与对照相比,可溶性糖含量仅在120 nmol·mol-1处理下表现出显著差异,降低38%;缩合单宁含量在80 nmol·mol-1处理下显著升高(343%),而在120 nmol·mol-1处理下无显著变化。木本植物凋落物的化学组成在O3熏蒸下会发生一定变化,这种变化可能会对树木凋落物在O3污染地区的分解及区域气候变化下森林生态系统的物质循环,特别是碳循环产生重要影响。
 

关键词: 乡土植物群落, 功能结构, 刺槐群落, 黄土丘陵区

Abstract: Concentrations of ozone (O3) near ground level in the northern hemisphere have increased substantially in the past few decades. Currently, the effects of elevated O3 concentration on the litter of woody plants were poorly investigated, particularly in China. In order to reveal the effects of elevated O3 concentration on the chemical composition of leaf litter of G. biloba and forecast subsequent decomposition, an experiment was conducted to study the variations of the chemical composition in leaf litter of G. biloba exposed to elevated O3 concentrations (80 and 120 nmol·mol-1) during two successive growing seasons (2012-2013) in open top chambers (OTCs). The results showed that elevated O3 significantly increased N and K contents, while significantly reduced the content of total phenolics and the ratios of C/N and lignin/N. The contents of C, P, and lignin and the ratio of C/P of leaf litter from the elevated O3 treatments were not significantly different from those of the control. Elevated O3  (120 nmol·mol-1) significantly decreased the content of soluble sugar by 38%. The content of condensed tannins significantly increased by 343% under 80 nmol·mol-1 O3, while no significant change was found under 120 nmol·mol-1 O3 compared to the control. Different O3 concentrations caused different changes in chemical composition of leaf litter of G. biloba. We inferred that such variations of litter chemical composition might affect the decomposition of leaf litter and material cycling (especially C) in forest ecosystems in O3polluted areas.

Key words: Robinia pseudoacacia community, functional structure., hilly-gully region of Loess Plateau, native plant community