首页> 美国卫生研究院文献>Plant Physiology >Studies on the Biochemistry and Fine Structure of Silica Shell Formation in Diatoms. Chemical Composition of Navicula pelliculosa during Silicon-Starvation Synchrony
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Studies on the Biochemistry and Fine Structure of Silica Shell Formation in Diatoms. Chemical Composition of Navicula pelliculosa during Silicon-Starvation Synchrony

机译:硅藻中硅壳形成的生物化学和精细结构研究。硅饥饿同步过程中黑颈菜的化学成分

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摘要

Changes are reported in total cellular organic carbon, nucleic acids, proteins, carbohydrates, lipids and chlorophylls during the course of silicon-starvation synchrony of Navicula pelliculosa. All constituents increased at the same rate, relative to cell number, for 30 hours of exponential growth during which silicon was depleted from the medium. Increase in cell number then stopped, but net synthesis of most components continued for a further 5 to 7 hours before ceasing. Deoxyribonucleic acids and lipids accumulated throughout the 14 hour silicon-starvation period. When silicon was resupplied, lipid synthesis ceased and organic carbon and carbohydrates decreased slightly. Net synthesis remained low during the 4 hour silicon uptake period but was resumed at higher rates as cell number began to rise. In cultures transferred to the dark 1 hour prior to readdition of silicon, total carbon, carbohydrates, and lipids decreased markedly during silicon uptake and cell separation. This was due in part to conversion of protein which maintained the protein level of the dark cells close to that of cells kept in the light. Mechanisms by which silicon starvation and reintroduction of silicon might affect rates of cellular synthesis are discussed.
机译:据报道,Navicula pelliculosa的硅饥饿同步过程中,细胞总有机碳,核酸,蛋白质,碳水化合物,脂质和叶绿素的变化。相对于细胞数量,所有成分均以相同的速率增长了30个小时,在此期间,培养基中的硅被耗尽。细胞数量增加然后停止,但是大多数成分的净合成在停止之前又继续进行了5到7个小时。脱氧核糖核酸和脂质在整个14小时的硅饥饿期中积累。重新供应硅后,脂质合成停止,有机碳和碳水化合物略有下降。在4个小时的硅吸收期间,净合成量保持较低水平,但随着细胞数量开始增加,其合成速率得以提高。在重新分配硅之前1小时转移到黑暗中的培养物中,在摄取和分离细胞的过程中,总碳,碳水化合物和脂质显着下降。这部分是由于蛋白质的转化,使黑暗细胞的蛋白质水平保持与光照下的细胞接近。讨论了硅饥饿和硅重新引入可能影响细胞合成速率的机制。

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