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Development of Photosystem I and Photosystem II Activities in Leaves of Light-grown Maize (Zea mays) 1

机译:光生玉米叶片中光系统I和光系统II活性的发展1

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摘要

To compare chloroplast development in a normally grown plant with etiochloroplast development, green maize plants (Zea mays), grown under a diurnal light regime (16-hour day) were harvested 7 days after sowing and chloroplast biogenesis within the leaf tissue was examined. Determination of total chlorophyll content, ratio of chlorophyll a to chlorophyll b, and O2-evolving capacity were made for intact leaf tissue. Plastids at different stages of development were isolated and the electron-transporting capacities of photosystem I and photosystem II measured. Light saturation curves were produced for O2-evolving capacity of intact leaf tissue and for photosystem I and photosystem II activities of isolated plastids. Structural studies were also made on the developing plastids. The results indicate that the light-harvesting apparatus becomes increasingly efficient during plastid development due to an increase in the photosynthetic unit size. Photosystem I development is completed before that of photosystem II. Increases in O2-evolving capacity during plastid development can be correlated with increased thylakoid fusion. The pattern of photosynthetic membrane development in the light-grown maize plastids is similar to that found in greening etiochloroplasts.
机译:为了将正常生长的植物中的叶绿体发育与叶绿体的发育进行比较,播种7天后收获在日光下(16小时一天)生长的绿色玉米植物(Zea mays),并检查叶组织内的叶绿体生物发生。确定完整叶组织的总叶绿素含量,叶绿素a与叶绿素b的比例以及O2释放能力。分离了处于不同发育阶段的质体,并测量了光系统I和光系统II的电子传输能力。产生了光饱和度曲线,用于完整叶片组织的O2进化能力以及分离的质体的光系统I和光系统II活性。还对发育中的质体进行了结构研究。结果表明,由于光合作用单元尺寸的增加,集光设备在质体发育过程中变得越来越有效。 Photosystem I的开发要早于Photosystem II的开发。在质体发育过程中O2释放能力的增加可能与类囊体融合的增加有关。浅色玉米质体中光合膜发育的模式与绿化叶绿体中的模式相似。

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