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叶绿素形成受控制的豌豆叶片的光合作用能力。

The photosynthetic capacity of pea leaves with a controlled chlorophyll formation.

机构信息

School of Biological Sciences, Bath University of Technology, Bath, England.

出版信息

Planta. 1970 Dec;94(4):282-90. doi: 10.1007/BF00385760.

Abstract

The relationship between chlorophyll content and photosynthesis as measured in whole leaves by CO2 uptake and by the component reactions of the electron transport chain of isolated chloroplasts, has been investigated. Leaves with a retarded chlorophyll formation, brought about by treatment with chloramphenicol, terramycin or by a low light intensity, were compared with control leaves (i) illuminated for a similar period of time, and (ii) with a similar chlorophyll content. There appeared to be no direct relationship between chlorophyll content and photosynthetic rate. It is suggested that CO2 uptake in low light treated leaves was limited by lack of enzymes, which are formed as a response to the supply of photosynthetic products. With terramycin and chloramphenicol the limiting factors may also be lowered enzyme levels, caused by specific protein synthesis inhibition. It is suggested that a component of Light System II required a high light intensity stimulation, and its formation was inhibited by chloramphenicol. The synthesis of a substance linking Light Systems I and II appears to be closely associated with chlorophyll formation, and could well be plastoquinone. Structural damage to the intermediate chain between Light Systems I and II is also apparently induced by chloramphenicol.

摘要

已经研究了通过 CO2 吸收和通过分离叶绿体电子传递链的组分反应在整个叶片中测量的叶绿素含量与光合作用之间的关系。用氯霉素、土霉素或低光强度处理叶片,以延迟叶绿素的形成,并与(i)经过类似时间光照的对照叶片和(ii)具有相似叶绿素含量的叶片进行比较。叶绿素含量与光合速率之间似乎没有直接关系。据推测,在低光处理的叶片中 CO2 的吸收受到缺乏酶的限制,这些酶是作为对光合产物供应的反应而形成的。土霉素和氯霉素的限制因素也可能是由于特定蛋白质合成抑制导致的酶水平降低。据推测,光系统 II 的一个组成部分需要高光强度刺激,其形成被氯霉素抑制。连接光系统 I 和 II 的物质的合成似乎与叶绿素的形成密切相关,很可能是质体醌。光系统 I 和 II 之间的中间链的结构损伤也显然是由氯霉素诱导的。

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