期刊文献+

西苕溪中上游流域水生甲虫分布与环境的关系 被引量:11

Relationship Between Aquatic Beetle Community Structure and Environmental Variables in the Xitiao Stream,Zhejiang,China
在线阅读 下载PDF
导出
摘要 水生甲虫(昆虫纲,鞘翅目)群落结构受多种环境因素的制约.西苕溪中上游流域38个样点共发现水生甲虫12科36个分类单元.优势属是长角泥甲科的Stenelmis属和扁泥甲科的Psephenoides属,出现频度分别为30和22,但有29属的出现频率不大于5.典范对应分析(CCA)表明,鞘翅目群落组成受荫蔽度、总氮、电导率和栖境质量影响最大.样点环境指标聚类结果与CCA结果一致,样点被分为3组.从第1组至第3组,水体中的总氮(2.80→3.52mg/L)和化学需氧量(14.5→20.29mg/L)明显上升,荫蔽度(18→6)明显降低.第1组(18个分类单元)和第3组(16个分类单元)的水生甲虫种类组成差异极显著(P<0.01),第2组水生甲虫多样性最高(26个分类单元).Macronychus,Zaitzevia,Scirtes,Stenocolus,Berosus,Laccobius和Ectopria属可作为清洁水体指示生物,Hydrocassis和Ancyronyx属是重污染水体指示生物. 36 taxa in 12 families of aquatic beetles were collected from 38 sampling sites in the upper reaches of the Xitiao Stream. Stenelmis and Psephenoides were dominant genera with their occurrence frequencies of 30 and 22 times, respectively, but other 29 genera appeared less than 5 times. Canonical correspondence analysis (CCA) between aquatic beetles and environmental factors showed that canopy was the main factor affecting beetle community distribution, and other factors were total nitrogen ( TN), water conductivity and habitat quality. The sampling sites were classified into three groups through clustering analysis using 17 environmental factors. From group 1 to group 3 of the sampling sites, TN and chemical oxygen demand (COD) increased from 2. 80 to 3.52 mg/L and 14. 5 to 20. 29 mg/L, respectively, but the canopy decreased from 18 to 6. Aquatic beetle community in group 2 (26 taxa) was found with the highest richness. However, the composition in group 1 ( 18 taxa) and group 3 (16 taxa) was significantly different (P 〈0. 05). Macronychus, Zaitzevia, Scirtes, Stenocolus, Berosus, Laccobius and Ectopria mainly occurred in clean water, but Hydrocassis and Ancyronyx were found only occurring in heavy polluted water. Fig 3, Tab 4, Ref 16
出处 《应用与环境生物学报》 CAS CSCD 北大核心 2008年第1期64-68,共5页 Chinese Journal of Applied and Environmental Biology
基金 国家自然科学基金项目资助项目(Nos40301047 30370252)~~
关键词 水生鞘翅目 群落结构 典范对应分析 指示生物 aquatic beetle community structure canonical correspondence analysis (CCA) indicator
  • 相关文献

参考文献16

  • 1Allan JD. Landscapes and riverscapes: The influence of land use on stream ecosystems. Ann Rev Ecol, Evol & Syst, 2004, 35:257 -284
  • 2Barbour MT, Gerritsen J, Snyder BD eds. Rapid Bioassessment for Use in Streams and Wadeable Rivers: Periphyton, Bethic Macroinvertebrates and Fish. 2nd ed. EPA 841-0B-88-002. U.S. Environment Protection Agency, Office of Water, Washigton DC, 1999
  • 3Eyre MD, Ball SG, Foster GN. An initial classification of the habitats of aquatic Coleoptera in North - East England. J Appl Ecol, 1986, 23: 841 - 852
  • 4Francisco GC, Camino FA, Margarita FA. Environmental variables influencing the distribution of Hydraenidae and Ehnidae assemblages ( Coleoptera) in a moderately-polluted river basin in north - western Spain. Eur J Entomol, 1999, 96:37-44
  • 5Foster GN, Nelson BH, Lott DA, Merritt R, Weyl RS, Eyre MD. A classification and evaluation of Irish water beetle assemblages. Aquatic Conserv Mar Freshwater Ecosyst, 1992, 2 : 185 - 208
  • 6Garcia C, Fernandez alaez M. Aquatic Coleoptera (Hydraenidae and Elmidae) as indicators of the chemical characteristics of water in the Orbigo River basin (N-W Spain). Ann Limnol, 1995, 31 : 185 - 199
  • 7Nelli H, Satish C, Jonathan M, Friedrich R. Response of stream macroinvertebrates to changes in salinity and the development of a salinity index. Mar & Freshwater Res, 2005, 56:825 -833
  • 8Stevenson AC, Juggins S, Birks HJB, Anderson DS, Anderson NJ. The surface waters acidification project palaeolimnology programme: Modern diatom/lake-water chemistry data-set. ENSIS, London, 1991
  • 9Scott AL, Dieter FH, Gerasimos C, Chris AMR. Effects of habitat complexity on forest beetle diversity : Do functional groups respond consistently? Div & Distrib, 2005, 11 : 73 - 82
  • 10Ter Braak CJF. Canonical correspondence analysis: A new eigenvector technique for multivariate direct gradient analysis. Ecology, 1986, 67: 1167- 1179

二级参考文献16

  • 1彭少麟,周厚诚,陈天杏,郭少聪.广东森林群落的组成结构数量特征[J].植物生态学与地植物学学报,1989,13(1):10-17. 被引量:191
  • 2徐文铎 林长清.-[J].森林生态系统研究,1981,(2):88-95.
  • 3陈德牛,生物多样性,1997年,5卷,11期,5页
  • 4马克平,生物多样性,1995年,2卷,4期,231页
  • 5Jch M A,Water deetles of China.1,1995年
  • 6彭少麟,生态学报,1983年,3卷,1期,11页
  • 7Mackey AP,Cooling DA,Berrie AD.An evaluation of sampling strategies for qualitative surveys of macro-invertebrates in rivers,using pond nets.J Appl Ecol,1984,21:515 ~534
  • 8Barbour MT,Gerritsen J,Snyder BD,Stribling JB.Rapid Bioassessment Protocols for Use in Streams and Wadeable Rivers:Periphyton,Benthic Macroinvertebrates and Fish.2nd ed.EPA 841-0B-99-002.Washington,DC:U.S.Environmental Protection Agency,Office of Water,1999
  • 9Barbour MT,Gerritsen J,Griffith GE,Frydenbory R,McCarron E,White JS,Bastain ML.A framework for biological criteria for Florida streams using benthic macroinvertebrates.J N Am Benthol Soc,1996,15 (2):185~211
  • 10Morse JC,Yang LF,Tian LX.Aquatic Insects of China Useful for Monitoring Water Quality.Nanjing:HoHai University Press,1994.1 ~570

共引文献33

同被引文献148

引证文献11

二级引证文献160

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部