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sod同工酶酶谱
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  sod isoenzyme pattern
     Identification of Cell Line of Coenurus cerebralis by Analysing SOD Isoenzyme Pattern
     用SOD同工酶酶谱鉴定脑多头蚴细胞系
短句来源
  “sod同工酶酶谱”译为未确定词的双语例句
     Isozyme spectra of LDH and SOD in Erythrocytes of Three Species of Deers
     三种鹿红细胞LDH和SOD同工酶酶谱
短句来源
     Amylase (AMY) and Superoxide dismutase (SOD) isozymes of different tissues of some stone fruit trees were analysed using polyacrylamide gel plate method.
     采用聚丙烯酰胺垂直平板凝胶电泳,分析了核果类果树不同器官AMY、SOD同工酶酶谱,结果表明:同一品种不同器官AMY同工酶表现,在不同树种上差异较大;
短句来源
     SOD isoemzymes of 17 crosses of soybeans were analyzed by polyacrylamide gel electrophoresis.
     17个杂交组合41个品种大豆SOD同工酶酶谱,分全酶谱类型和残酶谱类型。
短句来源
     The SOD isoenzyme graphes of the tested materials were the same in the main.
     供试材料的SOD同工酶酶谱类型基本相同。
短句来源
     The results showed that there were certain differences in zymograms phenotypes of POD, EST and SOD among 5 parents and their own f\ hybrids, this can be used as the basic to identify parents and their hybrids in protein level;
     结果表明:供试亲本披碱草与其各自的杂交组合F1的POD、EST和SOD同工酶酶谱表型均存在一定差异,在蛋白质分子水平上为亲本及其杂种识别提供了依据;
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  相似匹配句对
     sojae and seven other Phytophthora species~ so they can抰be used to identify P sojae. SOD, CAT and DIA isozyme zymograms of?
     sojae的SOD、CAT和DIA同工酶酶谱
短句来源
     SOD Zymogram and Its Variation in Seeds of Corylus heterophylla Fisch.
     榛子种实SOD同工酶酶谱及变异
短句来源
     Isozyme-spectra of Lactate Dehydrogenase and Superoxide Dismutase of Blood in Qinghai Camelus Bactrianus
     青海双峰驼血液LDH和SOD同工酶酶谱
短句来源
     Isozyme spectra of LDH and SOD in Erythrocytes of Three Species of Deers
     三种鹿红细胞LDH和SOD同工酶酶谱
短句来源
     A Analysis for SOD Isozyme Pattern of the Pteriduim excelsum(Bl.)ching
     蕨菜SOD同工酶分析
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  sod isoenzyme pattern
ME, G6PD, and LDH isoenzyme patterns indicated the presence of three phenotypes, whereas the SOD isoenzyme pattern showed only one phenotype characterized by the existence of two (anodic and cathodic) bands.
      


The localization and isoenzyme pattern of superoxide dismutase(SOD) in various organelles of cotyledons of etiolated cucumber seedlings were characterized. The changes in electrolyte leakage, SOD activity and electropherogram in cotyledons of cucumber seedlings with different cold tolerance during cold treatment were also studied, The experimental results are as follows:

黄瓜幼苗子叶SOD活性在细胞内的分布是细胞溶质部份最高(占总活性的85%左右),其次是线粒体(占10%)和叶绿体(约4%)。各细胞器的SOD同工酶酶谱均为三条同工酶活性带,迁移率较慢的一条是Mn-SOD同工酶,迁移率较快的二条为CuZn-SOD同工酶。各细胞器的SOD对低温的敏感程度不同,依次为:叶绿体>线粒体>细胞溶质部份。叶绿体和线粒体周工酶酶谱的CuZn-SOD活性带,随着处理温度的降低而减弱或接近消失。随着温度的降低,黄瓜幼苗子叶SOD活性的下降和电解质泄漏增加,幼苗逐渐呈现出伤害症状,而SOD活性的显著下降却比细胞电解质大量泄漏的出现要早。耐寒力不同的两个品种在SOD活性及电解质泄漏的变化上有差异。

A horizontal polyacrylamide slab gel electrophoresis analysis on the superoxide dismutase (SOD) isozymes in the different parts of the fruit- body during egg stage up to mature stage.The results showed that there were 1-2 SOD isozyme bands in the egg stage,2-4 bands in the elon- gating and mature stages.The SOD isozymes of the stipe seem to be the most sensitive among the changeable ones in the senescence process of fruitbodies. Changes of SOD isozymes were observed during storage.Determinati- ons of the fruitbodies...

A horizontal polyacrylamide slab gel electrophoresis analysis on the superoxide dismutase (SOD) isozymes in the different parts of the fruit- body during egg stage up to mature stage.The results showed that there were 1-2 SOD isozyme bands in the egg stage,2-4 bands in the elon- gating and mature stages.The SOD isozymes of the stipe seem to be the most sensitive among the changeable ones in the senescence process of fruitbodies. Changes of SOD isozymes were observed during storage.Determinati- ons of the fruitbodies at different stage and their extracted solutions of the enzyme at 4℃ for 4 dayswere made.The possible machanism of senescence and its relationship to the SOD isozyme changes during storage were discussed. It is speculated that this work may be of value in the selection of sto- table straw mushrooms and their cultivaton

采用聚丙烯酰胺垂直平板凝胶电泳法测定草菇蛋期至成熟期子实体不同部位超氧化物歧化酶(SOD)。结果表明蛋期子实体有1~2条酶带,伸长期和成熟期有2~4条酶带。菌柄是子实体衰老历程中 SOD 同工酶酶谱变化最敏感的部位。还观察了不同期子实体及其提取液于4℃低温贮藏4天后 SOD 同工酶的变化,并对草菇衰老机制及其与贮藏过程中 SOD 同工酶变化的关系进行了探讨。

There were no different SOD zymogra ms among soybean leaves and seeds of different nodes,but the activity was significantly different,higher in middle leaves than in up and low ones.The percent of Mn-SODa in middle and low leaves was higher than in up ones.The percent of Cu-Zn-SODb in leaves was increased as the position of node rose,and the percent of Cu-Zn-SODc in leaves of branch was higher than in leaves of main stem.Distribution of SOD in soydean seeds of different nodes was different,the activity of SOD...

There were no different SOD zymogra ms among soybean leaves and seeds of different nodes,but the activity was significantly different,higher in middle leaves than in up and low ones.The percent of Mn-SODa in middle and low leaves was higher than in up ones.The percent of Cu-Zn-SODb in leaves was increased as the position of node rose,and the percent of Cu-Zn-SODc in leaves of branch was higher than in leaves of main stem.Distribution of SOD in soydean seeds of different nodes was different,the activity of SOD in low seeds was the highest,and,the activity in soybean seeds decreased as the position of node rose,then increased.

大豆不同节位叶片中的超氧物歧化酶(SOD)、同工酶酶谱相同,但活性差异明显,中部叶片的酶活性高于上部和下部的叶片.SOD同工酶在不同节位叶片中的分布有差异,SODa(Mn—SOD)在中下部叶片中占的比例较大,SODb_1b_2b_3(Cu—Zn—SODb)随着叶片节位的升高而增加,SODc_1c_2c_3(Cu-Zn-SODc)在分枝叶片中活性较高.SOD在不同节位种子中的分布不同,下部种子SOD活性最高,随着结荚部位升高SOD活性降低,至植株顶端又有所增加.

 
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