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plant structure相关的网络例句

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与 plant structure 相关的网络例句 [注:此内容来源于网络,仅供参考]

After years studying the microscropic structure of plants, he proposed his cell theory Contributions to Phytogenesis(1838), in which he stated that the various plant structures are all composed of individual cells.

经过多年对植物显微结构的研究,他在1838年发表了的《植物发生论》中提出了细胞学说,指出细胞是构成植物体各种结构的基本单位。

To control the extension and to rearrange the dynamic structure of cell wall could regualte the plant growth.

因此调节细胞壁的伸展性,重排细胞壁的动态结构,是调节组织生长的重要机制。

Results as bellows: AtSIRT1 was located in Mitochondrial as hSIRT4 of human, and maybe take part in respiration and electron transformation chain, AtSIRT2 was located in nucleolus as hSIRT6 of human, maybe play important role in extend lifespan;mutation in AtSIRT1 leaded to cotyledon of plant turn to yellow and caused short life span. Mutation in AtSIRT2 could make the color of leaf turn to purple and accumulate a lot of anthocyanin;Sirtinol, a inhibitor of SIRT which did not cause the same model of the mutation of AtSIRT1 and AtSIRT2 indicated that the mechanism of Sirtinol was different from other organism;the structure of AtSIRT1 and AtSIRT2 were similar to other known Sir2, which indicated that they maybe have the same function;AtSIRT2 was overexpressed and its activity was detected.

结果表明,1,拟南芥AtSIRT1与人的同源蛋白hSIRT4相同,定位于线粒体,可能参与呼吸作用和电子传递,SIRT2与人的同源蛋白hSIRT6相同,定位于细胞核,可能同它的功能类似,在延缓衰老及调节细胞寿命方面起作用。2,AtSIRT1突变,可引起幼苗和植株的子叶变黄和早衰;AtSIRT2突变,可引起叶片发紫,沉积大量花青素。3,SIRT蛋白的抑制剂Sirtinol不能表型模写AtSIRT1和AtSIRT2突变体,说明Sirtinol在拟南芥中的作用机制不同于其他生物。4,AtSIRT1和AtSIRT2蛋白质结构预测表明与已知的Sir2蛋白相似,揭示其功能的相似性。5,在大肠杆菌中过量表达了其中一个基因(AtSIRT2),可体外检测其酶学活性,进一步证明其功能。

Research purposes:The views are expresses on the issues for caution in design of connecting cingulum window and wind resisting column with room s roof truss to the enclosure wall and the sketches of carrier pile s are presented for design of the foundation of garbage disposal plant for the purpose of providing the references to design of similar building structure.

研究目的:对砌体维护墙采用带形窗及抗风柱与屋架的连接在设计中应该考虑的问题提出看法,并提供范例,为垃圾填埋场基础设计采用载体桩提供示图,供今后同类建筑结构设计参考。

Ferulic acid is a plant-food-derived antioxidants with hydroxy -cinnamate structure. It is wildly occurring in many kinds of fruits, vegetables, berries and grains.

中文摘要阿魏酸是一个富含於植物中,属hydroxycinnamate类结构的抗氧化物,可在多种的蔬菜、水果、谷类、稻米中发现。

The students read texts to obtain the microscope-related concepts which included the following: making water mount specimen to be observed by depending on the correct steps, the image of object shown on compound microscope was enlarged directly by the specimen; some differences of structure were found both plant cell and animal's cell, animal's cell does not have cell walls and chloroplasts, it unable to photosynthesis; small living beings of water, consumers, will eat little small living beings.

学生由阅读文章而获得的细胞相关概念主要有:能依正确的步骤,制作一个水埋法标本片进行观察,在复式显微镜下观察到的影像和实物是左右相反、上下颠倒的,植物细胞和动物细胞的形态及构造有些差异,动物细胞不具细胞壁、叶绿体,无法行光合作用,有些水中的微小生物会摄食更小的微小生物,是消费者。

To further reveal the structure of monocotyledon lignin, carbon 13 enrichment of specific carbons of rice stalk lignin was achieved by feeding coniferin [α 13 C], coniferin [β 13 C] and coniferin [γ 13 C] into an internode cavity of the stalk of a growing rice plant Oryza sativa L.

为了进一步了解单子叶植物的木素,向生长中的水稻(OryzasativaL 。)茎秆节间的腔体分别注入在侧链α、β、γ位带13 C标记的松柏醇葡萄糖甙,得到侧链带13 C标记的稻秆木素。

This course is to include the following contents: 1.the history of cytogenetics, 2.the fine structure of chromosomes and staining technique, 3.the diversity and evolution of chromosome, 4.the relationship between plant breeding and cytogenesis on tropical vegetable production.

本课程提供大学部高年级及研究生研习。课程内容包括细胞遗传史,染色体之细微构造及染色技术,染色体之变异与演化,细胞遗传与植物育种之关联性等。

Dissection of a plant or animal to study the structure,position,and interrelation of its various parts.

解剖为研究其结构,位置和各部分间的关系而对动植物进行的解剖

From the point of view of the genetics,(basic string, divarication model, unit length, unit angle) is called gene structure of the plant.

从遗传学的角度,人们常把{基本串,分枝模型,单位长度,单位角度}称为植物的基因结构。

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