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分裂生长

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Cell theory The theory that all organisms are composed of CELLS and cell products and that growth and development results from the division and differentiation of cells.

细胞学说:所有的生物体都是由细胞及细胞产物构成的。细胞的分裂和分化导致细胞的生长和发育。

At the same time,there were not marked difference in the numbers of biastomere and mitotic index of control group and all treatment groups, suggesting that 2 -celt embryos were not only most sensitive to exogenous H2O2 but also rasiest to occur to development block.

但是经H2O2处理之后,度过2-细胞期发育阻滞的胚胎能在以后的发育中发生补偿性生长,其胚细胞数和分裂指数都和体外正常发育的胚胎没有差异。

We also discovered that selenium can decrease hematolysis and effects function of vacuole toxin of HP. morphological conversion from spiralto coccoid forms occurredwhen HP was caltured with selenium and most of coccoid forms had fragmentary flagella and pilus; the effection of selenium to activity of urease, catalase, alkaline phosphatase is not exist or not evidence; selenium enable pET32a-vacA-E. coli BL21 which can express VacA produce yellow lipochrome, and the color become deeper with increasing of concentration of selenium; selenium can decrease expression of recombined VacA by restrain the growth of pET32a-vacA-E. coli, but can not influence activity and gene equence of VacA; selenium can enhance the suppression effect of recombined VacA for gastric cancer cell, depress the index of cell multiplication and the forming rate of colony, decrease the number of cell in S period, increase total of cell in G period; After purified, the recombined VacA can be identified by VacA antibody.

结果:体外实验结果表明:一定浓度的硒作用HP后,HP菌落数量随着硒浓度的增加而减少,菌落颜色由灰白色变为砖红色,溶血现象随硒浓度的增加和作用时间的延长而逐渐消失,HP的形态由弯曲形变为球形或椭圆形,鞭毛及菌毛出现脱落现象;硒对尿素酶、过氧化氢酶、碱性磷酸酶活性无影响或影响不明显;一定浓度的硒能使表达VacA的pET32a-vacA-E.coli BL21工程菌产生脂溶性砖红色色素,颜色随硒浓度增加而加深;一定浓度的硒通过抑制pET32a-vacA-E.coli BL21工程菌的生长,减少重组VacA表达量,但不影响其空泡毒活性及编码基因序列;硒能增强重组VacA对胃癌细胞的抑制作用,使细胞分裂指数和集落形成率降低、S期细胞数量减少,G1期细胞总数增加;纯化后的VacA重组蛋白可被VacA抗体识别,具有良好的抗原性。

Paclobutrazol and Unlconazole inhibited the cell elongation and cell division, plant nutrient transportion and the growth of other parts of the plant, which were the main reasons of the Coleus blumei dwarfing.

多效唑和烯效唑对其细胞伸长和分裂有抑制作用,限制了筛管营养物质的运输,抑制了植株其他部位的生长,这些是使彩叶草株型矮化的主要原因。

Want to know, the person's skin can be divided into three-layer of cuticular, dermal, subcutaneous tissue about; All maintaining the limits that tastes generation action is in only cuticular layer, in thin thin divided in the cuticular layer that is less than one centimeter 4, quintuplicate cell, be located in the bottommest for base layer, full vivid cell can grow ceaselessly reach dissension, slowly when upgrade is advanced, the cell can squash gradually, at the same time evaporate, nutrient, until most the corneous layer outside, already was flowing do not have the corneous layer cell of life however.

要知道,人的肌肤约可分成表皮、真皮、皮下组织三层;所有保养品产生作用的范围都仅在表皮层,在薄薄不到一公分的表皮层中分了四、五层的细胞,位于最底部为基底层,布满的活细胞会不断生长及分裂、慢慢往上推进时,细胞会渐渐变扁,同时失去水分、养分,直到最外的角质层,就已是平滑却没有生命的角质层细胞了。

As a matter of fact, tumor is a disease that is caused by being out of control of cell cycle.

肿瘤的生成实质上是细胞无限制地生长和分裂,是细胞周期调节的失控。

Actin is a highly conserved protein, which exists in almost all eukaryotic cells and has been proved to be essential for many cellular functions such as movement, morphology, growth, cytokinesis as well as other crucial events.

肌动蛋白是一类高度保守的蛋白质,存在于所有的真核细胞中,参与细胞分裂、运动、迁移、形态的维持、生长等许多重要生理活动。

Efficacy: it can effectively discompose melanin, inhibit tyrosinase activity, cut off root of melanin generation, deep whiten and nourish skin, remove sallow and dull skin, present whitening and crystalline skin, resist oxidation and remove free radical, promote substrate cells'regeneration and splitting, promote elastic fiber and collagen fiber growth, and resume skin elasticity and luster.

功效:有效分解黑色素,抑制酪氨酸酶的活性,切断黑色素生成的根源,深层美白营养肌肤,去除黄气暗哑,绽放肌肤净白莹采,抗氧化清除自由基,刺激基底层细胞再生分裂,促进弹力纤维和胶原纤维生长,重现肌肤弹性和光泽,玫瑰精油源源不断供给肌肤充足的水分和营养,深度改善细纹和干燥现象,改善肤色,给肌肤前所未有的白皙亮泽。

The change of fruit anatomical structure shows cell of exocarp, sarcocarp and endocarp division and enlargement.

果实生长发育在解剖结构上表现为果实外果皮、中果皮及内果皮三部分细胞的分裂与膨大。

Neural cell adhesion molecule L1, discovered in the 80s, is one of the matters that can promote nerve regeneration. It can mediate the interaction of cell-to-cell and cell-to-matrix, take great efforts on neurite outgrowth and fasciculation, migration of neural cells, formation of the myelin, structure of neural trace, transmembrane signal transduction, inhibiting apoptosis of neural cells, even on immune system and formation of the tumor. Li is discovered on the mouse's Cerebellar membrane primarily. Thereafter, it also is found in post- mitotic neurons, pre- and non-myelinating Schwann cells and so on.

神经细胞粘附分子L1(L1)是80年代发现的具有促进神经再生作用的物质,它能介导神经细胞与神经细胞之间的粘附,在神经轴突的生长、聚集,神经细胞的转移,纤维髓鞘的形成,神经通路的构建及信号的转导,抑制神经细胞的凋亡甚至在免疫系统、肿瘤的发生等方面均具有非常重要的作用。L1最初是从小鼠的小脑膜中发现,后来发现在有丝分裂后的神经元,髓鞘形成前及非形成髓鞘的雪旺细胞等组织中同样存在。

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The split between the two groups can hardly be papered over.

这两个团体间的分歧难以掩饰。

This approach not only encourages a greater number of responses, but minimizes the likelihood of stale groupthink.

这种做法不仅鼓励了更多的反应,而且减少跟风的可能性。

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