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Differential Expression of Genes of the Calvin-Benson Cycle and its Related Genes During Leaf Development in Rice

机译:水稻叶片发育过程中Calvin-Benson循环基因及其相关基因的差异表达

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摘要

To understand how the machinery for photosynthetic carbon assimilation is formed and maintained during leaf development, changes in the mRNA levels of the Calvin-Benson cycle enzymes, ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) activase and two key enzymes for sucrose synthesis were determined in rice (Oryza sativa L.). According to the patterns of changes in the mRNA levels, these genes were categorized into three groups. Group 1 included most of the genes involved in the carboxylation and reduction phases of the Calvin-Benson cycle, as well as three genes in the regeneration phase. The mRNA levels increased and reached maxima during leaf expansion and then rapidly declined, although there were some variations in the residual mRNA levels in senescent leaves. Group 2 included a number of genes involved in the regeneration phase, one gene in the reduction phase of the CalvinBenson cycle and one gene in sucrose synthesis. The mRNA levels increased and almost reached maxima before full expansion and then gradually declined. Group 3 included Rubisco activase, one gene involved in the regeneration phase and one gene in sucrose synthesis. The overall pattern was similar to that in group 2 genes except that the mRNA levels reached maxima after the stage of full expansion. Thus, genes of the Calvin-Benson cycle and its related genes were differentially expressed during leaf development in rice, suggesting that such differential gene expression is necessary for formation and maintenance of the machinery of photosynthetic carbon assimilation.
机译:要了解在叶片发育过程中如何形成和维持光合作用碳同化的机制,需要改变Calvin-Benson循环酶,核糖-1,5-双磷酸羧化酶/加氧酶(Rubisco)活化酶和两种蔗糖关键酶的mRNA水平在水稻(Oryza sativa L.)中测定合成。根据mRNA水平变化的模式,将这些基因分为三类。第一组包括与卡尔文-本森循环的羧化和还原阶段有关的大多数基因,以及在再生阶段的三个基因。尽管衰老叶片中残留的mRNA水平有所变化,但在叶片扩张过程中,mRNA的水平升高并达到最大值,然后迅速下降。第2组包括与再生阶段有关的许多基因,在CalvinBenson循环还原阶段的一种基因,和在蔗糖合成中的一种基因。 mRNA水平升高并在完全扩增前几乎达到最大值,然后逐渐下降。第3组包括Rubisco活化酶,一种参与再生阶段的基因和一种参与蔗糖合成的基因。总体模式与第2组基因相似,不同之处在于mRNA的水平在完全扩增阶段后达到最大值。因此,在水稻叶片发育过程中,Calvin-Benson循环的基因及其相关基因差异表达,表明这种差异基因表达对于光合碳同化机制的形成和维持是必需的。

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