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green cells
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  绿色细胞
     The D1 protein repair cycle was the most important protective mechanism in H. pluvialis and its operation could alleviate the photoinhibition by 49% in green cells and 53-55% in red cells.
     在雨生红球藻中,D1蛋白周转是最主要的光保护机制,在绿色细胞中它的运转能减轻光抑制程度达49%,在红色细胞中为53~55%。
短句来源
     Studies on the control mechanisms of mitochondrial oxidative phosphorylation in green cells in light
     光下绿色细胞线粒体氧化磷酸化的调控机理
短句来源
     Discussed detailly about the progress and related problems of the oxidative and Pho- tosynthetic phosphorylations,and dealing also with the methods by which ATP、ADP and NADH are transported across the membrane in green cells.
     着重讨论了氧化磷酸化及光合磷酸化理论的发展和有关问题,以及 ATP、ADP、NADH 等高能化合物在绿色细胞中的转运方式。
短句来源
     It is acceptable that the triose phosphate (GAP & DHAP) and Ca 2+ would play important roles in regulating the mitochondrial oxidative phosphorylatory rate of green cells in light.
     磷酸丙糖( G A P 和 D H A P) 和 Ca2 + 在调节光下绿色细胞线粒体磷酸化速率中可能有重要作用
短句来源
     The xanthophyll cycle could contribute to protect green cells subjected to strong irradiance but its roles could be neglected in red cells.
     叶黄素循环在绿色细胞中可保护其免受强光伤害,在红色细胞中作用不明显。
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  “green cells”译为未确定词的双语例句
     Biomembrane and Energy Transformation in Green Cells
     绿色细胞的生物膜与能量转换
短句来源
     RNA Interference to Exogenous Green Fluorescent Protein Gene Expression in Africa Green Cells Using siRNA
     非洲绿猴肾细胞外源绿色荧光蛋白基因表达的RNA干扰
短句来源
     Results: There were many dendritic-form green cells which scattered like "sky stars" in recipient's ICB on day 21 and 35 after BMT. Most of these green cells appeared F4/80 positive staining.
     结果:异基因骨髓移植后21d和35d,宿主虹膜睫状体内可观察到大量呈树突状形态的绿色荧光细胞,呈“满天星”样散在分布于小鼠虹膜睫状体中,这些细胞F4/80抗体免疫组织化学荧光染色多为阳性。
短句来源
     4) Genetic vaccine pcDNA PI against SVD was constructed. To test the transient expression in cultured BHK-21 cells, in situ staining by the indirect immunofluorescence assay was used, and many bright green cells were observed by a fluorescence microscope.
     4)构建了猪水泡病基因疫苗pcDNA P1,将其转染的BHK-21细胞经荧光染色,可见许多特异性荧光细胞。
短句来源
     The Fv/Fo values were decreased respectively by 45% in green cells and 32-34% in red cells after 2.5 hours of photoinhibitory treatment. However, this could not necessarily indicate that the accumulated SC in red cells might play a photoprotective role.
     光抑制处理2.5小时后,绿色细胞的F_v/F_0水平下降45%,红色细胞下降32~34%,然而这并不能说明红色细胞中积累的次生类胡萝卜素可起到光保护作用。
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  相似匹配句对
     Green,O.
     Green、野桂花O.
短句来源
     Green
     绿色情思
短句来源
     U cells.
     Li/TK细胞3d,即可将其杀死.
短句来源
     Green" Cells for the Purpose of Environment Protection
     关注环保的绿色电池
短句来源
     Biomembrane and Energy Transformation in Green Cells
     绿色细胞的生物膜与能量转换
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  green cells
The number of viral particles capable of forming individual green cells per unit volume is defined as marker-forming units (MFUs).
      
Goldparm?ne cells contained eight times more (E)-2-hexenal than homogenates of non-green cells.
      
We postulate that changes in photosynthesis in the im green cells are driven by a need for photoprotection (especially early in chloroplast biogenesis) and due to source-sink interactions.
      
Consistent with this idea, the im white sectors accumulate low levels of sucrose and acid invertase activities are markedly increased in the white versus green cells.
      
Ethylene production is more important in young, mobile, green cells in active growth phase than in old, encysted and red cells in stationary growth phase.
      
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By means of cell separation,the leaf-blade's cells at different leafpositions and other organ's cells of two barley varieties were investigated.Simple mesophyll cells(or no-linked cell)and complex mesophyll cellswere found in barley leaves.The complex mesophyll cells may be dividedinto two types,one is termed regular linked cell,another is termed irreg-ular lobed cell.The structure of the mesophyll cell shows gradual changesfrom simple to complex in morphology with leaf order from the first leaftoward the flag-leaf(the...

By means of cell separation,the leaf-blade's cells at different leafpositions and other organ's cells of two barley varieties were investigated.Simple mesophyll cells(or no-linked cell)and complex mesophyll cellswere found in barley leaves.The complex mesophyll cells may be dividedinto two types,one is termed regular linked cell,another is termed irreg-ular lobed cell.The structure of the mesophyll cell shows gradual changesfrom simple to complex in morphology with leaf order from the first leaftoward the flag-leaf(the ninth).The percentage of simple cells is higherin the lower leaves than that in the upper leaves,but there are morecomplex cells in the upper leaves than in the lower ones.Meanwhile thesize of mesophyll cell decreased with leaf position from the lower leaveetoward the upper ones.The green cells of flag-leaf sheath,the internodebelow the spike and awn have same structure as that of the upper leaves.The epidermis of leaf-blade,flag-leaf sheath,the internode below thespike and awn were also observed.

运用细胞离析法对田间种植的大麦(Hordeum Vulgare L.)不同叶位叶片叶肉细胞形态进行了初步观察,发现各叶位叶片的叶肉细胞形态各有不同,低位叶中非环状细胞占有较大的比例,高位叶中则以规则的多环状细胞以及不规则的多分枝状细胞为主。随叶位上升逐渐趋于复杂化。同时,还对旗叶叶鞘、穗下节间、芒的同化细胞作了观察,并发现它们与叶片中的叶肉细胞具有相似的形态。此外还对叶片、旗叶叶鞘、穗下节间、芒的表皮细胞作了观察。

We used the method of integrating hCG secreted by the trophocyte as antigen with therelevant specific antiboy of the labelling fluorescein, to identify trophocyte and decidual cell.The result showed that the trophocyte dyed the relevant specific fluorescein antibody. Wecould see the cell was surrounded by a green fluorescein ring in the fluorescein microscope.On the control decidual cell, there appeared a lot of dark green cells, but no bright ring wasseen. Therefore, we think the cell of hCG fluorescein...

We used the method of integrating hCG secreted by the trophocyte as antigen with therelevant specific antiboy of the labelling fluorescein, to identify trophocyte and decidual cell.The result showed that the trophocyte dyed the relevant specific fluorescein antibody. Wecould see the cell was surrounded by a green fluorescein ring in the fluorescein microscope.On the control decidual cell, there appeared a lot of dark green cells, but no bright ring wasseen. Therefore, we think the cell of hCG fluorescein antibody dye observed by the fluores-cein microscope gave the bright ring. And we are sure that it is the trophocyte.

本方法采用合体滋胚层细胞分泌的hCG与标记荧光的特异抗体相结合的方法来鉴别滋胚层细胞与蜕膜细胞。结果表明,滋胚层细胞与蜕膜细胞经与相应的特异荧光抗体染色后,在荧光显微镜下,滋胚层细胞周围可见荧光亮绿圈,而蜕膜细胞周围无荧光亮绿圈,仅呈暗绿色,以资区别。

This paper reviewed the ultrastructures of mitochondria and thylakoids,their important roles in energy metabolism in green cells.Discussed detailly about the progress and related problems of the oxidative and Pho- tosynthetic phosphorylations,and dealing also with the methods by which ATP、ADP and NADH are transported across the membrane in green cells.

本文评述了线粒体及类襄体的膜结构在绿色细胞能量代谢中的重要功能。着重讨论了氧化磷酸化及光合磷酸化理论的发展和有关问题,以及 ATP、ADP、NADH 等高能化合物在绿色细胞中的转运方式。

 
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