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首页> 外文期刊>The Plant Cell >Evolution of C-4 Photosynthesis in the Genus Flaveria: Establishment of a Photorespiratory CO2 Pump
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Evolution of C-4 Photosynthesis in the Genus Flaveria: Establishment of a Photorespiratory CO2 Pump

机译:Flaveria属C-4光合作用的演变:建立光环二氧化碳泵

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摘要

C-4 photosynthesis is nature's most efficient answer to the dual activity of ribulose-1,5-bisphosphate carboxylase/oxygenase and the resulting loss of CO2 by photorespiration. Gly decarboxylase (GDC) is the key component of photorespiratory CO2 release in plants and is active in all photosynthetic tissues of C-3 plants, but only in the bundle sheath cells of C-4 plants. The restriction of GDC to the bundle sheath is assumed to be an essential and early step in the evolution of C-4 photosynthesis, leading to a photorespiratory CO2 concentrating mechanism. In this study, we analyzed how the P-protein of GDC (GLDP) became restricted to the bundle sheath during the transition from C-3 to C-4 photosynthesis in the genus Flaveria. We found that C-3 Flaveria species already contain a bundle sheath-expressed GLDP gene in addition to a ubiquitously expressed second gene, which became a pseudogene in C-4 Flaveria species. Analyses of C-3-C-4 intermediate Flaveria species revealed that the photorespiratory CO2 pump was not established in one single step, but gradually. The knowledge gained by this study sheds light on the early steps in C-4 evolution.
机译:C-4光合作用是丝氨酸-1,5-双磷酸羧酶/氧酶的双活性最有效的答案,以及通过光素的CO 2的损失。 Gly脱羧酶(GDC)是植物中的光致潮流CO2释放的关键组分,并且在C-3植物的所有光合组织中活跃,但仅在C-4植物的束鞘细胞中。假设GDC对束鞘的限制是C-4光合作用的演化中的必要和早期步骤,导致光致炮的CO 2浓缩机制。在这项研究中,我们分析了GDC(GLDP)的P蛋白在从C-3转变为Flaveria中的C-3至C-4光合作用期间被限制在束鞘中。除了普遍表达的第二基因之外,我们发现C-3软化物物种已经含有束鞘表达的GLDP基因,其在C-4黄细胞物种中成为伪基因。 C-3-C-4中间黄蜂种类的分析显示,光致潮流CO2泵未在一步中建立,但逐渐。本研究获得的知识揭示了C-4进化中的早期步骤。

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