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城市土壤压实对树木叶片叶绿素及光合生理特性的影响
引用本文:刘爽,吴永波.城市土壤压实对树木叶片叶绿素及光合生理特性的影响[J].生态环境,2010(1):172-176.
作者姓名:刘爽  吴永波
作者单位:南京林业大学江苏省林业生态工程重点实验室;
基金项目:江苏省自然科学基金项目(BK2006571)
摘    要:由于机械碾压、人为践踏等原因,城市土壤压实严重。由于压实,土壤物理性状发生改变:土壤容重增大、孔隙度降低及结构性变差等。这些改变影响土壤性质的同时影响树木的生长。以乐昌含笑Micheliach apensis、深山含笑Michelia maudiae和大叶冬青llex latifola为实验材料,参照南京市土壤压实现状模拟不同程度的土壤压实环境,研究了土壤压实下乐昌含笑、深山含笑和大叶冬青3种幼树叶片叶绿素含量、光合生理特性等的变化情况。采用乙醇萃取法测定树木叶片叶绿素含量,用美国Li-coR公司生产的Li-6400光合仪测定树木叶片光合生理特性,测定参数包括净光合速率(Pn)、气孔导度(G)、蒸腾速率(Tr)、胞间cO2摩尔分数(Ci)等。并分析树木叶绿素含量在不同土壤压实环境下变化差异性,及各光合生理参数之间相关性。结果表明,随着压实强度的增强,3种树种叶绿素含量逐渐降低;与对照相比,不同压实处理下,叶片叶绿素含量均不同程度下降,且在重度压实下各树种叶片叶绿素含量降低幅度均最大,分别达到41.87%、29.36%及27.66%;方差分析表明,各土壤压实处理下叶绿素含量与对照之间存在显著性差异;在压实环境下,光合生理特性参数值净光合速率(Pn)、气孔导度(G)和蒸腾速率(珀与对照下各参数数值相比也呈下降趋势。皮尔森相关性分析发现,各光合生理特性参数之间相关性显著。但不同压实处理下,各树木胞间CO2浓度(G)变化趋势不一致。

关 键 词:城市土壤压实  幼树  叶绿素  净光合速率  气孔导度  蒸腾速率  胞间CO2摩尔分数

The impact of soil compaction on chlorophyll and photosynthetic characteristics of trees
LIU Shuang,WU Yongbo Key Laboratory of Forestry Ecological Engineering Jiangsu Provincial,Nanjing Forestry University,Nanjing ,China.The impact of soil compaction on chlorophyll and photosynthetic characteristics of trees[J].Ecology and Environmnet,2010(1):172-176.
Authors:LIU Shuang  WU Yongbo Key Laboratory of Forestry Ecological Engineering Jiangsu Provincial  Nanjing Forestry University  Nanjing  China
Affiliation:LIU Shuang,WU Yongbo Key Laboratory of Forestry Ecological Engineering Jiangsu Provincial,Nanjing Forestry University,Nanjing 210037,China
Abstract:The soil in urban area is often compacted resulted from machinery and human trampling,in which the physical characteristics of soil change remarkably with the increasing in bulk density,reducing in soil porosity as well as the damage to soil structure,and the plant growth is restricted as a result.In this paper,two months after four levels of soil compaction were simulated based on the investigation of soil compaction status in Nanjing city,the photosynthetic attributes and the chlorophyll concentrations of...
Keywords:urban soil compaction  sapling  chlorophyll  net photosynthetic rate  stomatal conductance  transpiration rate  intercellular CO2 concentration  
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