首页> 外文期刊>Plant physiology >C-4 ISOFORM OF NADP-MALATE DEHYDROGENASE - CDNA CLONING AND EXPRESSION IN LEAVES OF C-4, C-3, AND C-3-C-4 INTERMEDIATE SPECIES OF FLAVERIA
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C-4 ISOFORM OF NADP-MALATE DEHYDROGENASE - CDNA CLONING AND EXPRESSION IN LEAVES OF C-4, C-3, AND C-3-C-4 INTERMEDIATE SPECIES OF FLAVERIA

机译:N-4苹果酸脱氢酶的C-4同工型-黄萎病C-4,C-3和C-3-C-4中间物种叶片中CDNA的克隆和表达

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In C-4 plants of the NADP-malic enzyme type, an abundant, mesophyll cell-localized NADP-malate dehydrogenase (MDH) acts to convert oxaloacetate, the initial product of carbon fixation, to malate before it is shuttled to the bundle sheath. Since NADP-MDH has different but important roles in leaves of C-3 and C-4 plants, we have cloned and characterized a nearly full-length cDNA encoding NADP-MDH from Flaveria trinervia (C-4) to permit comparative structure/expression studies within the genus Flaveria. The dicot genus Flaveria includes C-3-C-4 intermediate species, as well as C-3 and C-4 species. We show that the previously noted differences in NADP-MDH activity levels among C-3, C-4, and C-3-C-4 Flaveria species are in part due to interspecific differences in mRNA accumulation. We also show that the NADP-MDH gene appears to be present as a single copy among different Flaveria species, suggesting that a pre-existing gene has been reregulated during the evolution from C-3 to C-4 plants to accommodate the abundance and localization requirements of the C-4 cycle. [References: 52]
机译:在NADP-苹果酸酶类型的C-4植物中,大量定位于叶肉细胞的NADP-苹果酸脱氢酶(MDH)可将草酸乙酸酯(碳固定的起始产物)转化为苹果酸,然后再穿梭到束鞘中。由于NADP-MDH在C-3和C-4植物的叶子中具有不同但重要的作用,因此我们克隆并鉴定了编码Flaveria trinervia(C-4)的NADP-MDH的全长cDNA,以进行比较的结构/表达Flaveria属中的研究。双子叶植物Flaveria包括C-3-C-4中间物种,以及C-3和C-4物种。我们表明,先前指出的C-3,C-4和C-3-C-4 Flaveria物种在NADP-MDH活性水平上的差异部分归因于mRNA积累的种间差异。我们还表明,NADP-MDH基因似乎在不同的黄花草物种中以单拷贝形式存在,这表明在从C-3到C-4植物的进化过程中,已经存在的基因已经被重新调节,以适应其丰度和定位。 C-4周期的要求。 [参考:52]

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