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[营养培养基中铵态氮和硝态氮对大豆愈伤组织细胞超微结构及光合作用的影响]

[The influence of ammonium and nitrate of nutrient medium on ultrastructural organization and photosynthesis of callus cells in Glycine max L].

作者信息

Ladygin V G, Semenova G A, Smolov A P

机构信息

Institute of Basic Biological Problems RAS, Pushchino, Moscow Region.

出版信息

Tsitologiia. 2003;45(4):380-6.

Abstract

We studied the influence of exogenic ammonium on the functional activity and ultrastructural organization of cells of the mixotrophic soybean callus (Glycine max L.). Ammonium available in the nutrient medium increased the chlorophyll content, accelerating the rate of photosynthetic O2 evolution per unit of biomass. The presence of ammonium in the medium promoted formation of the protein-synthesizing system, which manifested itself as increased numbers of ribosomes, and thylakoids of chloroplasts, and higher electron density of the stroma in mitochondria and cytoplasm of mixotrophic cells. It has been concluded that the use of ammonium may lead to activation of protein synthesis, thus rising photosynthetic activity and favouring formation and development of membrane structures in chloroplasts.

摘要

我们研究了外源铵对混合营养型大豆愈伤组织(Glycine max L.)细胞功能活性和超微结构组织的影响。营养培养基中的铵增加了叶绿素含量,加快了单位生物量的光合氧气释放速率。培养基中铵的存在促进了蛋白质合成系统的形成,表现为核糖体数量增加、叶绿体类囊体增多,以及混合营养细胞线粒体和细胞质基质的电子密度更高。得出的结论是,使用铵可能会导致蛋白质合成的激活,从而提高光合活性,并有利于叶绿体中膜结构的形成和发育。

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