Bradbury S P,Predicting Models of Toxic Action from Chemical Structure:An Overview.SAR,QSAR Environ.Res.,1994,2∶89-104
[2]
Wang W,Literature Review on Higher Plants for Toxicity Testing.Water,Air,Soil Pollut.,1991,59∶381-400
[3]
Organization for Economic Competing Interaction and Development:Terrestrial Plants:Growth Test,OECD Guidance for Testing of Chemicals,NO.208,Paris,1984
[4]
Stewart J J P,MOPAC 6.0 Frank J.Seiler Research Laboratory,U.S.Air Force Academy,Corporation 84840,U.S.A,1990
[5]
Hermens J L M,Quantitative Structure-Activity Relationships of Environment Pollutants.An Handbook of Environmental Chemistry Hutzinger,1989,Eds.,Vol.2E,Reactions and Processes.Springer-Verlag,Berlin,pp111-162
[6]
Bearden A P,Schultz T W,Structure-Activity Relationships for Pimephales and Tetrahymena:a Mechanism of Action Approach.Environ.Toxicol.Chem.,1997,16∶1311-1317
[7]
Veith G D,Mekenyan O G,A QSAR Approach for Estimating the Aquatic of Soft Electrophiles.Quant.Struct.-Act.Relat.,1993,12∶349-356
[8]
McFarland J W,On the Parabolic Relationship between Drug Potency and Hydrophobicity:J.Med.Chem.,1970,13∶1092-1196
[9]
Cronin M T D,Gregory B W,Schultz T W,Quantitiative Structure-Activity Analyses of Nitrobenzen Toxicity to Tetrahymena pyriformis.Chem.Res.Toxical.,1998,11∶902-908
[10]
Wang X D,Yin C S,Wang L S,Structure-Activity Relationships and Respones-Surface Analysis of Nitroaromatics Toxyicity to the Yeast(Saccharomyces cerevisiae).Chemosphere,2002,46∶1045-1051