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光化学活性的发展和高电势形式细胞色素 b-559 在绿化大麦幼苗中的出现。

Development of Photochemical Activity and the Appearance of the High Potential Form of Cytochrome b-559 in Greening Barley Seedlings.

机构信息

Division of Plant Industry, Commonwealth Scientific and Industrial Research Organization, Canberra 2601, Australia.

出版信息

Plant Physiol. 1973 Jun;51(6):1117-26. doi: 10.1104/pp.51.6.1117.

Abstract

The development of photochemical activity during the greening of dark-grown barley seedlings (Hordeum vulgare L. cv. Svalöfs Bonus) was studied in relation to the formation of the high potential form of cytochrome b-559 (cytochrome b-559(HP)). Photosynthetic oxygen evolution from leaves was detected at 30 minutes of illumination. The rate of oxygen evolution per gram fresh weight of leaf was as high at 2 to 2.5 hours of greening as at 24 hours or in fully greened leaves. On a chlorophyll basis, the photosynthetic rate at 90 minutes of greening was 80-fold greater than the rate at 45 hours. It is concluded that the majority of photosynthetic units are functional at an early stage of greening, and that chlorophyll synthesis during greening serves to increase the size of the units.Plastids showed substantial photochemical oxygen evolution after a seedling greening time of 1 hour. However, a comparison of the relative activity of leaves and plastids at 2 hours and 24 hours of greening suggests that there was some inactivation of greening plastids during isolation. Appreciable photosystem I activity was observed as early as 15 minutes of greening.The synthesis of cytochrome b-559(HP) during greening does not correlate with the onset of oxygen evolution. Cytochrome b-559(HP) was absent from etioplasts and in most preparations of 2-hour plastids. The average amount of cytochrome b-559(HP) at 2 hours of greening was well below the level needed to provide 1 molecule of the carrier for each functional photosynthetic chain. The results suggest that cytochrome b-559(HP) is not essential for oxygen evolution. Cytochrome f, cytochrome b(6), and the low potential form of cytochrome b-559 were present in the etioplast. There was little increase in the levels of these cytochromes during 24 hours of greening.

摘要

黑暗中生长的大麦幼苗(Hordeum vulgare L. cv. Svalöfs Bonus)在变绿过程中光化学活性的发展与高电势形式细胞色素 b-559(细胞色素 b-559(HP))的形成有关。在光照 30 分钟时检测到叶片的光合氧气释放。在变绿 2 到 2.5 小时时,每克鲜重叶片的氧气释放率与 24 小时或完全变绿的叶片一样高。以叶绿素为基础,在变绿 90 分钟时的光合速率比在变绿 45 小时时高 80 倍。结论是,在变绿的早期阶段,大多数光合单位是有功能的,并且在变绿过程中合成叶绿素有助于增加单位的大小。质体在幼苗变绿 1 小时后显示出大量的光化学氧气释放。然而,在变绿 2 小时和 24 小时时比较叶片和质体的相对活性表明,在分离过程中绿化质体有一定程度的失活。早在变绿 15 分钟时就观察到可观的光系统 I 活性。细胞色素 b-559(HP)在变绿过程中的合成与氧气释放的开始无关。细胞色素 b-559(HP)不存在于黄化质体中,并且在大多数 2 小时质体的制备中也是如此。在变绿 2 小时时,细胞色素 b-559(HP)的平均量远低于为每个功能光合作用链提供 1 个载体分子所需的水平。结果表明,细胞色素 b-559(HP)不是氧气释放所必需的。细胞色素 f、细胞色素 b(6)和低电势形式的细胞色素 b-559 存在于黄化质体中。在 24 小时的变绿过程中,这些细胞色素的水平几乎没有增加。

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