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渗透胁迫对花生幼叶细胞性氧伤害的定量分析
引用本文:朱锦懋,陈由强,叶冰莹,代容春,林荣华.渗透胁迫对花生幼叶细胞性氧伤害的定量分析[J].植物资源与环境学报,2001,10(2):14-20.
作者姓名:朱锦懋  陈由强  叶冰莹  代容春  林荣华
作者单位:福建师范大学生物工程学院,福建福州 350007
基金项目:福建省科学技术委员会科学基金资助项目(K92020)
摘    要:在渗透胁迫条件下不同花生(Arachis hypogaea Linn.)品种的水势、质膜相对透性(RPMP)、超氧离子、丙二醛(MDA)含量和超氧化物歧化酶(SOD)活性两两之间都呈显著相关。而花生各品种的过氧化氢酶活性、过氧化物酶活性、谷胱甘肽含量和抗坏血酸含量与水势、RPMP、超氧离子、MDA含量和SOD活性等指标之间相关程度波动较大。水势对RPMP、MDA含量、超氧离子和SOD活性的弹性系数处于负效应阶段。SOD活性对RPMP、MDA含量和超氧离了的弹性系数的效应处于递减阶段。超氧离了对RPMP和MDA含量的生系数的效应处于递减阶段。各指标的弹性系数和相应的边际量因花生品种的抗旱能力不同而异。

关 键 词:活性氧  渗透胁迫  花生  幼叶  细胞  自由基伤害学说  弹性系数分析  边际量分析  品种
文章编号:1004-0978(2001)02-0014-07
修稿时间:2000年10月8日

A quantitative analysis on the effects of osmotic stress on active oxygen damage in varieties of peanut
ZHU Jin\|mao,CHEN You\|qiang,YE Bing\|ying,DAI Rong\|cun,LIN Rong\|hua.A quantitative analysis on the effects of osmotic stress on active oxygen damage in varieties of peanut[J].Journal of Plant Resources and Environment,2001,10(2):14-20.
Authors:ZHU Jin\|mao  CHEN You\|qiang  YE Bing\|ying  DAI Rong\|cun  LIN Rong\|hua
Abstract:This paper dealed with a quantitative analysis of the effect of different physiological indexes on cell injury of detached leaves of peanut (\%Arachis hypogaea \%Linn.) under osmotic stress. The result showed that the correlations between water potential, relative plasma membrane permeability (RPMP), MDA, superoxides and SOD were significant. The correlations between CAT, POD, GSH, AsA and water potential, RPMP, superoxides, MDA, and SOD varied rather highly with different peanut varieties. The effects of water potential on productive elasticities of RPMP, MDA, superoxides and SOD were in negative stage. The effects of SOD on productive elasticities of RPMP, MDA and superoxides were in decreasing progressively stage. The effects of superoxides on productive elasticities of RPMP and MDA were in decreasing progressively stage. The productive elasticities and responsible marginal yields are varied with the drought resistant ability of various peanut varieties.
Keywords:mathematics method  active oxygen  osmotic stress  Arachis hypogaea Linn  
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