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Photosynthesis in Salt-Adapted Heterotrophic Tobacco Cells and Regenerated Plants.

机译:盐适应异养烟草细胞和再生植物中的光合作用。

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摘要

Tobacco (Nicotiana tabacum L.) cells growing heterotrophically in the light on supplied sucrose (S0) have previously been adapted to grow in 428 mM NaCl (S25). Among the changes occurring in salinity-adapted cell cultures are (a) elevated levels of chlorophyll compared to unadapted cells; (b) decreased levels of starch; (c) alterations in chloroplast ultrastructure, including loss of starch grains, increased thylakoid membrane structure, and the presence of plastoglobules; and (d) increased rates of O2 evolution, CO2 fixation, and photophosphorylation relative to S0 cells. These latter changes apparently derive from the fact that thylakoid membranes in S25 cells contain higher levels of photosystem I- and II-associated proteins as well as thylakoid ATPase components. S25 chloroplasts contain immunologically detectable levels of ribulose-1,5-bisphosphate carboxylase/oxygenase, whereas S0 completely lack the enzyme. These changes taken together suggest that even in the presence of sucrose, S25 cells have acquired a significant degree of salt-tolerant photosynthetic competence. This salt-tolerant photoysynthetic capability manifests itself in plants backcrossed with normal plants for three generations. These plants contain chloroplasts that demonstrate in vitro more salt-tolerant CO2 fixation, O2 evolution, and photophosphorylation than do backcross progeny of plants regenerated from S0 cultures.
机译:在供应的蔗糖(S0)的光照下异养生长的烟草(Nicotiana tabacum L.)细胞先前已适应于在428 mM NaCl中生长(S25)。在适应盐度的细胞培养物中发生的变化包括:(a)与未适应细胞相比,叶绿素水平升高; (b)淀粉含量降低; (c)叶绿体超微结构的改变,包括淀粉粒的损失,类囊体膜结构的增加以及质体球的存在; (d)相对于S0细胞,O2释放,CO2固定和光磷酸化的速率增加。后者的变化显然源自以下事实:S25细胞中类囊体膜含有较高水平的光系统I和II相关蛋白以及类囊体ATPase成分。 S25叶绿体含有免疫学上可检测水平的核糖-1,5-双磷酸羧化酶/加氧酶,而S0完全缺乏该酶。这些变化共同表明,即使存在蔗糖,S25细胞也获得了显着程度的耐盐光合作用能力。这种耐盐的光合作用能力在与正常植物回交三代的植物中表现出来。这些植物含有的叶绿体在体外显示出比从SO培养再生的植物回交后代更耐盐的CO2固定,O2进化和光磷酸化作用。

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