drosophila

1. Electron Micrograph of Drosophila Fly’s Eyes.
果蝇眼睛的电子显微图

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2. Electron Micrograph of Drosophila Fly's Eyes.
在这里输入译文果蝇眼睛的电子显微图。

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3. This is a web page of Drosophila Genome Projects.
这是大鼠基因组计划所在的网页。

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4. Objective To review on learning and memory model of drosophila.
目的回顾应用果蝇作为学习记忆模式动物的研究工作。

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5. In this thesis, we define a coordinate system for the Drosophila brain.
在这篇论文里,我们为果蝇脑定义一个座标系统。

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6. This paper introduced the studies advances of P transposable element in Drosophila .
本文介绍了果蝇P转座因子的一些研究进展。

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7. Objective To study the antiaging effect and mechanism of active phospholipids on drosophila.
目的探讨活性磷脂对果蝇的延缓老化作用及其机理。

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8. A tiny fly called Drosophila guttifera sports a distinctive pattern of 16 polka dots on its wings.
一种称为Drosophila guttifera的非常小的果蝇的翅膀上有着很明显的由16个圆点组成的花纹。

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9. Drosophila was used as a model animal to discuss the progress of genetic regulation of cardiac development.
通过将果蝇作为一种重要的模式动物,对心脏发育基因调控的研究进展作一综述。

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10. The Bloomington Fly Stock Center collects, maintains and distributes Drosophila melanogaster strains for research.
布鲁明顿果蝇库存中心收集、保存各类黑腹果蝇并进行分类,以供研究之用。

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11. Objective To study the effects of din-butyl phthalate on the fecundity and the life span in drosophila melanogaster.
目的研究邻苯二甲酸二丁酯对果蝇生育力和寿命的毒性作用。

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12. SINA protein is critically involved in regulating the cell fate decision of R7 photoreceptor cell in Drosophila eyes.
果蝇的SINA蛋白在眼睛R7感光细胞命运决定过程中起着关键的作用。

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13. Yishou capsule could prolong the mean life span of drosophila melanogaster, the longest lifetime and the mediandeath time.
益寿胶囊可明显延长果蝇的平均寿命、最高寿命和半数死亡时间。

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14. To investigate the impact of the products of heated cooking oil on accelerating the aging process of Drosophila Melanogaster.
食用油加热产物有明显缩短果蝇寿命的作用。

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15. As the vector and acceptor system of gene expression in eukaryote, Drosophila cells are an important aspect of bioengineering.
果蝇细胞作为真核细胞基因表达的载体和受体系统是生物工程的一个重要研究内容。

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16. Apollo is a collaborative open source project between the berkeley drosophila genome project the sanger institute and the ebi.
这是一个开放性果蝇基因组计划的产物,主要是可以图形化浏览果蝇基因组注释结果。

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17. Complicating the project is the fact that Drosophila guttifera is little used in research and its genome has not been sequenced.
使项目艰难的因素还有Drosophila guttifera很少用于研究和它的基因组没有得到测序。

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18. AIM: to observe the protective effect of extract from maize plumule against lipid peroxidation in drosophila induced by D-galactose.
目的:观察玉米幼芽提取物对d -半乳糖引起果蝇脂质过氧化的拮抗作用。

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19. Results The PPO gene was cloned and its counterparts in mouse, drosophila, anopheles Gambia and yeast were found by database search.
结果克隆了PPO基因,找到了PPO基因与小鼠、果蝇、蚊子、线虫以及酵母等的同源基因,比较发现PPO在进化上非常保守。

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20. We hope that this method will be widely used in the study of the evolution of courtship songs and the behavioral genetics of Drosophila.
这一新的研究方法为果蝇的进化遗传学和神经遗传的研究提供了一种新的手段。

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21. It was always my dream that the drosophila (fruit fly) adipose gene would turn out to be a model for controlling obesity and type 2 diabetes.
果蝇腺苷基因将成为防治肥胖和2型糖尿病的一个模型一直以来是我的梦想。

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22. Objective To observe the effect of carboxymethyl chitosan (CMC) on the lifespan of Drosophila melanogaster and D-galactose-induced aging in mice.
目的观察羧甲基壳聚糖(CMC)对黑腹果蝇寿命的影响及其对D-半乳糖致亚急性衰老小鼠的抗衰老作用。

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23. Our results indicate that prolonged blockade, but not transient blockade of dopamine release, impairs visual attention-like behavior in Drosophila.
这些结果表明长期多巴胺释放阻断可损坏果蝇的视觉类注意行为,而瞬间的多巴胺释放阻断却不影响视觉类注意行为。

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24. In Drosophila guttifera, the morphogen ACTS in proximity to existing physical landmarks such as the intersections of veins and cross veins on the wing.
对Drosophila guttifera来说,形态生成是在已有的物理路标附近作用的,如在翅膀的静脉血管与横向静脉的交点处。

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25. The basic Atlas of the Drosophila Brain provides the user with a hypertext tour guide to the basic structural elements of the Drosophila nervous system.
果蝇脑部简图为使用者提供果蝇神经系统基本结构元素的超文本浏览指导。

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26. Conclusions The gene(s) or major gene(s) determining the sensitivity to sevoflurane is (are) located on the second chromosome of Drosophila melanogaster.
结论决定黑腹果蝇对七氟醚敏感性的基因位于果蝇第二号染色体。

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27. Results the number of Drosophila bred at high temperature entering the tube and eating the food was fewer than that at normal temperature and low temperature.
结果高温环境下生长的果蝇进入可以吃到食物的离心管的数量少于正常温度和低温环境下生长的果蝇。

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28. Results the number of Drosophila bred at high temperature entering the tube and eating the food was fewer than that at normal temperature and low temperature.
结果高温环境下生长的果蝇进入可以吃到食物的离心管的数量少于正常温度和低温环境下生长的果蝇。

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