首页> 外文OA文献 >Chloroplast Biogenesis 60 1: Conversion of Divinyl Protochlorophyllide to Monovinyl Protochlorophyllide in Green(ing) Barley, a Dark Monovinyl/Light Divinyl Plant Species
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Chloroplast Biogenesis 60 1: Conversion of Divinyl Protochlorophyllide to Monovinyl Protochlorophyllide in Green(ing) Barley, a Dark Monovinyl/Light Divinyl Plant Species

机译:叶绿体生物发生60 1:绿色大麦(深色单乙烯基/浅二乙烯基植物)的大麦中二乙烯基原叶绿素转化为单乙烯基原叶绿素

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摘要

In higher plants, most of the chlorophyll a is formed via the divinyl and monovinyl chlorophyll monocarboxylic biosynthetic routes. These two routes are strongly interconnected prior to protochlorophyllide formation in barley (Hordeum vulgare L. cv Morex), a dark monovinyl-light divinyl plant species, but not in cucumber (Cucumis sativus L. cv Beit Alpha MR), a dark divinyl-light divinyl plant species (BC Tripathy, CA Rebeiz, 1986 J Biol Chem 261: 13556-13564). It is shown that in dark monovinyl-light divinyl plant species such as barley, the divinyl and monovinyl monocarboxylic routes become interconnected at the level of protochlorophyllide during transition from the divinyl to the monovinyl protochlorophyllide biosynthetic mode. In cucumber, a dark divinyl-light divinyl plant species, in which the monovinyl monocarboxylic biosynthetic route becomes preponderant only after an abnormally long sojourn in darkness, the conversion of divinyl to monovinyl protochlorophyllide does not take place on the barley time-scale of incubation.
机译:在高等植物中,大多数叶绿素a是通过二乙烯基和单乙烯基叶绿素单羧酸生物合成途径形成的。这两种途径在深色的单乙烯基-轻二乙烯基植物大麦(大麦)中原叶绿素形成之前紧密相关,而在深色的浅二乙烯基的黄瓜中(黄瓜)。二乙烯基植物种类(BC Tripathy,CA Rebeiz,1986 J Biol Chem 261:13556-13564)。结果表明,在深色的单乙烯基-轻二乙烯基植物物种(例如大麦)中,二乙烯基和单乙烯基单羧酸路径在从二乙烯基向单乙烯基原叶绿素的生物合成模式过渡过程中,在原叶绿素的水平上相互连接。在黄瓜中,一种深色的二乙烯基轻二乙烯基植物物种,其中单乙烯基单羧酸的生物合成途径只有在异常长时间的黑暗中才变得占优势,在大麦的培养时间尺度上不会发生二乙烯基向单乙烯基原叶绿素的转化。

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