首页> 美国卫生研究院文献>Plant Physiology >The Expression of 2-Oxoglutarate/Malate Translocator in the Bundle-Sheath Mitochondria of Panicum miliaceum a NAD-Malic Enzyme-Type C4 Plant Is Regulated by Light and Development.
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The Expression of 2-Oxoglutarate/Malate Translocator in the Bundle-Sheath Mitochondria of Panicum miliaceum a NAD-Malic Enzyme-Type C4 Plant Is Regulated by Light and Development.

机译:NAD-苹果酸酶型C4植物Panicum miliaceum的束鞘线粒体中2-氧戊二酸/苹果酸转运子的表达受光照和发育的调节。

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摘要

The bundle-sheath mitochondria in NAD-malic enzyme-type C4 plants participate in the C4 dicarboxylate cycle and require high capacities of translocators to accommodate the high rates of exchange of metabolites involved in photosynthesis. In Panicum miliaceum, a NAD-malic enzyme-type C4 plant, the steady-state level of mRNA for the mitochondrial 2-oxoglutarate (2-OG)/malate translocator was higher in leaves than in nonphotosynthetic tissues. Furthermore, the expression of the gene for the mitochondrial 2-OG/malate translocator was restricted to bundle-sheath cells (BSC) but not mesophyll cells. The transcript level of the BSC-located mitochondrial 2-OG/malate translocator increased during greening in accordance with levels of photosynthetic genes, although the relative transcript levels of other mitochondrial membrane proteins decreased. The specific activities of C4 photosynthetic enzymes and the relative abundance of the 2-OG/malate translocator protein in bundle-sheath mitochondria increased in successive sections from the basal meristem to the distal tip, whereas the specific activities of mitochondrial respiratory enzymes remained constant or decreased. These findings indicate that the specific 2-OG/malate translocator in BSC mitochondria of P. miliaceum is expressed in concert with C4 enzymes during the differentiation of BSC and parallels the capacity of C4 photosynthesis. Most unusual, northern analysis showed that significant amounts of unspliced mRNAs, the levels of which are variable during greening, were present in leaf tissues. It is possible that this incomplete splicing is involved in posttranscriptional regulation of expression of this gene.
机译:NAD-苹果酸酶型C4植物中的束鞘线粒体参与C4二羧酸循环,并需要高位转运子来适应光合作用中代谢产物的高交换率。在NAD-苹果酸酶型C4植物粟米中,线粒体2-氧代戊二酸(2-OG)/苹果酸转运子的mRNA稳态水平高于非光合组织。此外,线粒体2-OG /苹果酸易位基因的表达仅限于束鞘细胞(BSC),而不限于叶肉细胞。绿化期间,BSC定位的线粒体2-OG /苹果酸转运蛋白的转录水平根据光合基因的水平而增加,尽管其他线粒体膜蛋白的相对转录水平降低了。束鞘线粒体中C4光合酶的比活和2-OG /苹果酸转运蛋白的相对丰度在从基底分生组织到末梢的连续切片中增加,而线粒体呼吸酶的比活保持恒定或下降。这些发现表明,在紫花苜蓿的BSC线粒体中,特定的2-OG /苹果酸转运蛋白在BSC分化过程中与C4酶一起表达,并与C4光合作用的能力平行。最不寻常的北方分析表明,叶片组织中存在大量未剪接的mRNA,其水平在绿化过程中是可变的。这种不完全的剪接可能参与了该基因表达的转录后调控。

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