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1)  Anoxia stress
厌氧胁迫
1.
) under simjulative anoxia stress were studied.
研究了模拟厌氧胁迫下薏苡(CoixlacrymajobiL。
2)  oxidative stress
氧化胁迫
1.
Responses of Arabidopsis thaliana to oxidative stress induced by polycyclic aromatic hydrocarbon fluoranthene;
多环芳烃荧蒽诱导拟南芥氧化胁迫
2.
Effects of Cadmium on oxidative stress and antioxidative ability in the Frog Rana nigromaculata under a long-term exposure;
镉长期暴露对黑斑蛙的氧化胁迫和抗氧化能力的影响
3.
Progress in the studies of the oxidative stress and mitochondrial DNA mutations with aging;
氧化胁迫及线粒体DNA突变与衰老的研究进展
3)  oxidation stress
氧化胁迫
1.
Anti-oxidation stress of the desert plant Prunus mongolica Maxim.;
荒漠植物蒙古扁桃的抗氧化胁迫性研究
2.
The mechanism of plant oxidation stress induced by Cd and corresponding plant defensive reaction against Cd oxidation stress were summarized,such as antioxidant substance and antioxidant enzyme system,and mechanism and approach to mitigate the oxidation stress induced by Cd were introduced.
镉对植物引起的氧化胁迫是Cd毒害的重要原因之一。
3.
The oxidation stress in the fruit of thorn pear(Rosa roxburghii Tratt) caused by mechanical wounding and the responses of its main antioxidant systems were investigated with the variety \'Guinong 5\'.
以‘贵农五号’刺梨为材料,研究了刺梨果实对机械伤处理造成的氧化胁迫及其主要抗氧化系统的响应情况。
4)  Oxidative stress
氧胁迫
1.
During long period infection of HIV,plenty of reactive oxygen species are accumulatedin patients, and then oxidative stress forms.
HIV的长期感染,使得患者体内活性氧大量积累,形成了氧胁迫。
2.
In order to study the effects of antioxidants on growth and metabolism under oxidative stress, different types and doses of antioxidants were added in the fermentation medium of Zymomonas mobilis strain ATCC31821.
mobilis抗氧胁迫性和生长代谢的影响。
5)  hypoxia stress
缺氧胁迫
1.
Research on the small cell groups with hypoxia stress to select suspension cell line of higher productivity of flavonol glycoside;
缺氧胁迫小细胞团法选育高产黄酮苷悬浮细胞系
2.
6 suspension cell lines which ability of ginkgolides synthesis has been improved obviously were selected by hypoxia stress,The best one MH 3 which growth index was 3 71 and ginkgolide B content was 0 048% in dried cell after 18 days culture,which was enhanced 182 4% compared with callus.
采用缺氧胁迫小细胞团法从愈伤组织中共选育出 7个高产悬浮细胞系 ,其合成银杏内酯的能力比选育前的愈伤组织有了显著提高 ,其中细胞系MH 3培养周期 18d ,细胞生物量增加 3 71倍 ,银杏内酯含量达到细胞干重的 0 0 48% ,比选育前提高了 182 4% ,为国内领先水平。
6)  oxidative stress resistance system
抗氧胁迫
补充资料:病厌厌
1.见"病恹恹"。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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