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pod相关的网络例句
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The results showed that the POD activity was higher in the sporophyll than that in the stems and leaves in which the POD activities were weak from bottom to top in native plant. For the Japanese plant, the POD activities of the stems and leaves were the same in all positions. However, the activity was slightly higher in mid-portion of a leaf than that in stems. The high enzyme activities were observed in mid-bottom stems in the half-bred plant, and the activity was higher in bottom leaf than that in mid-top leaf.

结果表明:3个裙带菜群体的POD同工酶其孢子叶活力都相对强于其它部位;日本裙带菜茎和叶的各部位POD酶活力相同,但叶中部的酶活力稍强于茎;自育裙带菜茎底部和茎中部的POD酶活力较强些,而叶底部的酶活力较叶中部和顶部的强;本地裙带菜的茎和叶由底部到顶部POD酶活力逐渐变弱。

The results showed that POD activity increased at first and then decreased in the skin and flesh of root. The peak occurred at 40 d and 60 d in the skin and flesh, respectively. POD activity in the skin was higher than that in the flesh at 30 d and then contrary results were observed. The higher POD activity was, the more POD isoenzyme was. The pattern of POD isoenzymes was different between skin and flesh at different vegetative growth stages. POD isoenzymes in the skin were composed of five monomers and four dimers while five dimers or two monomers, two dimers and one tetramer in the flesh. POD isoenzymes in the root were mainly acidic. POD localized mainly in the cell walls of periderm, cambium, xylem ray, xylem vessels and primary xylem.

结果显示,心里美萝卜营养生长期肉质根的皮和肉中POD活性均先升高后降低,分别在播种后第40 d和60 d出现峰值,30 d时皮中POD活性高于肉,之后则相反,酶活性最高时同工酶数目也最多,不同时期,皮和肉中同工酶种类不同;皮中POD同工酶由5个单体和4个二聚体组成,而肉中由5个二聚体或2个单体、2个二聚体和1个四聚体组成,均以酸性同工酶为主;组化定位显示POD主要分布在肉质根的周皮、形成层、木射线、木质部导管和肉的初生木质部等的细胞壁附近。

In the latter generations of rice suspension cell, the activity of extracellular POD and the cell suspensibility curve raises at first and then declines. The activities of extracellular POD induced by exogenous H_2O_2, CaCl_2 and VK3 are different and the same concentration of VK3, CaCl_2, H_2O_2 can all inhibit extracellular POD activities, especially to the callus tissue subculturing for six times.

外源H_2O_2,CaCl_2与VK3诱导悬浮细胞所产生的胞外POD活性并不相同,相同浓度的VK3、CaCl_2和H_2O_2都抑制胞外POD活性,对继代六次的愈伤组织的悬浮细胞胞外POD活性影响最大,H_2O_2对POD的抑制作用更为强烈。H_2O_2随浓度和处理时间的增加,使胞外POD的活性减弱;处理6h、12h,胞外POD活性随着VK3和CaCl_2浓度的增加而增强,但处理48h胞外POD活性随浓度的增加而减弱。

The above facts indicated that silicon accumulation in the rice leaf sheath inside, the leaf surface and the sclerenchymatous cell, played the physical barrier role, delayed the hypha of sheath blight expansion.5、Analysing the physiological and biochemical mechanism of the resistance to rice sheath blight improved by silicon application in several respects.(1) After being inoculated with R.solani, O2 and POD activities disordered, CAT activities obviously declined. O2 producingvelocity in 91SP\'s leaves and leaf sheaths of Si+ rice plants were lower than those of Siriceplants, MDA content in leaves and leaf sheaths of Si+ rice plants were lower thanthose of Si- rice plants significantly in three days after inoculating, SOD、POD、CATactivities in leaf sheaths of Si+ rice plants were higher than those of Si- rice plantssignificantly in one day after inoculating, SOD、POD、CAT activities in leaves ofSi-treatment were higher than those of Si- rice plants significantly in three days afterinoculating. O2 producing velocity and MDA content in Lemont\'s leaves and leafsheaths of Si+ rice plants were lower than those of Si- rice plants significantly afterinoculating, and SOD、POD、CAT activities of Si+ rice plants were higher than those ofSi- rice plants significantly.

说明硅在水稻叶鞘内侧、叶表和厚壁细胞积累,起到了物理屏障的作用,延缓了纹枯病菌的扩展。5、阐明了施硅增强水稻抗纹枯病的生理生化机制(1)接种纹枯病菌后,两个水稻品种91SP和Lemont的叶鞘和叶片超氧阴离子自由基O2性紊乱,CAT活性明显下降;抗病品种91SP叶鞘和叶片施硅处理的O2产生速率小于缺硅处理,叶鞘和叶片MDA含量在接种第3 d后显著低于缺硅处理,叶鞘SOD、POD、CAT活性在接种1 d后一直显著高于缺硅处理,叶片SOD、POD、CAT活性在接种3 d后显著高于缺硅处理;感病品种Lemont叶鞘和叶片施硅处理的O2产生速率、MDA含量始终显著小于缺硅处理,SOD、POD、CAT活性始终显著大于缺硅处理。

Under the 6 h stress, SOD activity had been to maintain a high level, POD activity showed a greater change. When the stress lasted until 24 h, POD activity decreased and almost flatted compared with the control, this showed that POD activity was sensitive under the low temperature stress. Changes of CAT and SOD activity were in the line, the results indicated that activity of two enzymes coordinated the regulation of low-temperature adaptation.

本实验中,SOD活性一直保持较高的水平;POD活性表现为波动较大,当胁迫持续到24 h时,POD活性明显降低几乎与对照持平,说明POD受低温影响更敏感;CAT活性与SOD活性变化保持一致,表现出这两种酶在低温适应性调节过程中的协同作用。

The results showed that as to resistant material (R15), the activities of POD, CAT, SOD, APX increased and PAL kept stable in sheaths, in leaves the activity of POD、CAT and APX increased, SOD、PAL decreased; as to high susceptible material (478), the activities of POD and CAT increased in both sheaths and leaves, SOD increased in leaves but decreased in sheathes, both PAL and APX had no striking change.

其结果显示高耐材料R15的叶鞘中除PAL变动不大外,POD、CAT、SOD和APX活性都有不同程度的增加,其中POD活性变化最为剧烈,叶片中POD、CAT和APX表现上升,SOD、PAL表现下降;高感材料478的POD、CAT在叶片与叶鞘中均表现上升,SOD在叶片中上升、叶鞘中下降,PAL和APX均无明显变化。

The results showed that five bands including POD-1, POD-2, POD-3, POD-4 and POD-5 were detected in the gel of POD as well as EST-1, EST-2, EST-3, EST4 and EST-5 for EST. POD-3 and POD-4 were common in all the tissues, but most intensive in F. tartaricum. POD-2 was only discovered in the leaves of F. cymosum and caudex of F. cymosum 1. Although there was some difference between the location, POD-2 appeared in the caudexes of three buckwheat and root of F. tartaricum. POD-5 was detected in all leaves and caudx of F.

结果显示,POD和EST都检测到5条谱带,包括POD-1,POD-2,POD-3,POD-4及POD-5,其中POD-3及POD-4在所有组织中都存在,但在苦荞麦1号中的带最强;POD-1只在金荞麦叶片及金荞麦1号茎中出现;POD-2在茎组织及苦荞麦1号根中存在,但在金荞麦及苦荞麦中的位置不同;POD-5存在于叶片及苦荞麦1号茎中,在苦荞麦的带较强。

The results showed that the varieties and activity of POD isoenzyme expression exist in difference in anther of male sterility line and maintainer in different development stage in sweet pepper and hot pepper. POD isozyme activity of anther was very low in meiosis stage in male sterility line of sweet pepper. There is a POD special band in meiosis and pollen mature stage in male sterility line of pepper respectively.

结果表明不育系与保持系,在花药发育的不同时期POD同工酶表达种类及表达活性之间存在差异,其中甜椒不育系在减数分裂期POD同工酶的活性非常低,辣椒雄性不育系在减数分裂期及花粉成熟期分别多一条POD特征带。

Let me start by saying I currently own a POD 2.0 and the Vamp 2, and I have to say the sound quality on the Vamp is superior in every way to the POD. The sounds are much cleaner, and distortions are much more tube sounding and sponge-like than the POD.

让我从我现有的pod 2和vamp2说起,我必须说vamp2的音色比pod优越。vamp2音色比pod更干净,失真更有管味,更绵一点。

The results showed that the POD existed in the tentacles, respiratory tree and digestive system of Apostichopus japonicus. The activity of POD in epidermic layer of body wall and the outer layer of alimentary canal were weakly positive. POD in epidermis of tentacles were positive.

研究表明,刺参触手、体壁、呼吸树和消化系统中均有POD的存在,但体壁上皮层和消化道外膜中的POD呈弱阳性;触手表皮层内的POD为阳性;呼吸树的粘膜层和粘膜下层,呈强阳性。

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相关中文对照歌词
Death Pod
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This is not an ordinary box, which is used as a background picture of the dialog box, very pretty.

详细说明:这可不是一个一般的对话框,它是用图片作为背景的对话框,非常好看。

Conceal me what I am,and be my aid for such disguise as haply shall become the form of my intent.

遮掩我的身份,帮助我,我的面具将成为我的目的。

Now, there is no effective methods for this disease, chemotheraphty and hemapoietic stem cell transplantion are often used, but complete remisson rate is not very high.

目前还没有良好的治疗方法,常采用化疗和造血干细胞移植的治疗手段,但完全缓解率并不高,而且在治疗过程中容易诱发肿瘤溶解综合征。