|Table of Contents|

Effect of Urban Pollution on the Landscape Plants and Detection of Environment(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2015年08
Page:
64-69
Research Field:
Publishing date:

Info

Title:
Effect of Urban Pollution on the Landscape Plants and Detection of Environment
Author(s):
LIU Jia-xue1ZHOU Xiang1HU Shi-fang2
(1.Institute of Environment and Plant Protection,Hainan University,Haikou,Hainan 570228;2.Chongqing Rongchang Agriculture Committee,Chongqing 402406)
Keywords:
ornamental plantsleaf areastomatal densitychlorophyll contentphotosynthetic efficiencypollution
PACS:
TU 986
DOI:
10.11937/bfyy.201508019
Abstract:
Taking six common landscape plants(Mangifera indica L.,Bauhinia blakeana,Camellia japonica,Lantana camara,Wedelia chinensis and Canna indica) as research objects,leaf area,stomatal density,chlorophyll content,photosynthesis efficiency of six landscape plants in green belt,park and mountain forest were detected,to reveal the effect of different levels of pollution to the landscape plants.The results showed that difference of leaf area and chlorophyll content of landscape plants in green belt and park,mountain forest was significant,mountain forest was more than park,but stomatal density of landacape plants in these three territorys was polar,green belt plants was the largest,following by park,finally mountain forest,photosynthesis efficiency and photosynthesis efficiency was just opposite.These physiological indexes could conform that green belts>park>mountain forest,it also suggested that larger pollution damage more plants,and the landscape plants could tolerate the larger pllution.

References:


[1]胡祯英.城市园林景观的植物配置[J].安徽农业科学,2007,5(2):23-26.
[2]王映杰.城市园林植物配置探讨[J].城市建设理论研究,2011,6(3):10-13.
[3]苏雪痕.园林植物应用的进展及存在问题[J].广东园林,2006,28(5):1-5.
[4]Wichmann H E,Spix C,Tuch T,et al.Daliy mortality and fine and ultrafine particles in erfurt[M].Part I:Role of Particle Number and Perticle Mass,Health Effects Insitute,2000.
[5]Schwartz J,Zanobrtti A,Bateton T F.Revised analyses of time-series studies of air pollution and health[C].In:Revised Analyses of Time-Series Studies of Air Pollution and Health,Health Effects Institute,2003:25-58.
[6]Schwartz J,Zanobrtti A,Bateton T F.Revised analyses of time-series studies of air pollution and health[C].In:Revised Analyses of Time-Series Studies of Air Pollution and Health,Health Effects Institute,2003:25-58.
[7]Anderson H,Atkinson R,Peacock J,et al.Meta-analysis of time-series studies and panel studies of particulate matter(PM) and ozone(O3)[M].Geneva,Switzerland:World Health Organization,2004.
[8]王宏炜,黄峰,王慧觉,等.蒙尘胁迫对植物叶片气体交换的影响[J].武汉理工大学学报,2007(4):32-37.
[9]彭珂珊.沙尘暴对西部发展的危害研究[J].地质技术经济管理,2004,26(3):19-25.
[10]杨传友,史金玉,杜欣阁,等.苹果叶片气孔的研究[J].山东农业大学学报,1998,29(1):8-14.
[11]陈防,鲁剑巍.SPAD-502叶绿素计在作物营养快速诊断上的应用初探[J].湖北农业科学,1996(2):31-34.
[12]姜丽芬,石福臣,王化田,等.叶绿素计SPAD-502在林业上应用[J].生态学杂志,2005,24(12):1543-1548.
[13]Lichhtenthaler H K,Wellburn A R.Determinations of total carotenoids and chlorophylls a and b of leaf extracts in different solvents[J].Biochemical Society Transactions,1983,11:591-592.
[14]Gray G R,Chauvin L P,Sarhan F,et al.Cold acclimation and freezing tolerance-A comple interaction of light and temperature[J].Plant Physiology,1997,114:464-474.
[15]Schreiber U,Schliwa U,Bilger W.Continuous recording of photochemical and non-photochemical quenching of chlorophyll fluorescence quenching with a new type of modulation fluorometer[J].Photosynthesis Research,1986,10:51-62.
[16]刘建利.土壤水分影响冬小麦叶冠生长的试验与模拟研究[D].北京:中国农业大学,1997.
[17]Hoogenboom G,Peterson C M,Huck M G.Shoot growth rate of soybean as affected by drought stress[J].Agronomy Journal,1987,79:598-607.
[18]赵秋玲,王军辉.梓树属植物叶片的气孔特征[J].东北林业大学学报,2011,39(8):21-24.
[19]Mae T.Physiological nitrogen efficiency in rice:Nitrogen utilization,photosynthesis and yield potential[J].Plant and Soil,1997,196:201-210.[20]Lichtenthaler H K,Babani F,Langsdorf G,et al.Measurement of differences in red chlorophyll fluorescence and photosynthetic activity between sun and shade leaves by fluorescence imaging[J].Photosynthetica,2000,38:521-529.
[21]Jakob T,Schreiber U,Kirchesch V,et al.Estimation of chlorophyll content and daily primary production of the major algal groups by means of multi wave length-excitation PAM chlorophyll fluorometry:Performance and method ological limits[J].Photosynthesis Research,2005,83:343-361.
[22]Aponasenko A D,Shchur L A,Lopatin V N.Relationship of the chlorophyll contentwith the biomass and dispersestructure of phytop lankton[J].Doklady Biological Sciences,2007,412:61-63.
[23]Datt B.A new reflectance index for remote sensing of chlorophyll content in higher plants:Tests using Eucalyptus leaves[J].Journal of Plant Physiology,1999,154:30-36.
[24]刘志梅,蒋文伟,杨广远,等.干旱胁迫对3种金银花叶绿素荧光参数的影响[J].浙江农林大学学报,2012,29(4):533-539.
[25]刘立云,李艳,杨伟波,等.不同品种油茶叶绿素荧光参数的比较研究[J].热带作物学报,2012,33(5):886-889.
[26]Hetherington A M,Woodward F I.The role of stomata in sensing and driving environmental change[J].Nature,2003,424:901-908.
[27]马正春.园林植物对城市大气环境监测的应用[J].管理科学与工程技术,2012(22):468-469.
[28]蒋跃林,张庆国,杨书运,等.28种园林植物对大气CO2浓度增加的生理生态反应[J].植物资源与环境学报,2006,15(2):56-58.
[29]黄俊华,洪渊,张东鹏.深圳7种园林植物叶绿素荧光特性及其对大气SO2浓度的响应[J].生态科学,2007,26(1):57-76.

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Last Update: 2015-07-23