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Resolving the Compartmentation and Function of C4 Photosynthesis in the Single-Cell C4 Species Bienertia sinuspersici1[OA]

机译:解决单细胞C4物种Bienertia sinuspersici1 [OA]中C4光合作用的区系和功能

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摘要

Bienertia sinuspersici is a land plant known to perform C4 photosynthesis through the location of dimorphic chloroplasts in separate cytoplasmic domains within a single photosynthetic cell. A protocol was developed with isolated protoplasts to obtain peripheral chloroplasts (P-CP), a central compartment (CC), and chloroplasts from the CC (C-CP) to study the subcellular localization of photosynthetic functions. Analyses of these preparations established intracellular compartmentation of processes to support a NAD-malic enzyme (ME)-type C4 cycle. Western-blot analyses indicated that the CC has Rubisco from the C3 cycle, the C4 decarboxylase NAD-ME, a mitochondrial isoform of aspartate aminotransferase, and photorespiratory markers, while the C-CP and P-CP have high levels of Rubisco and pyruvate, Pidikinase, respectively. Other enzymes for supporting a NAD-ME cycle via an aspartate-alanine shuttle, carbonic anhydrase, phosophoenolpyruvate carboxylase, alanine, and an isoform of aspartate aminotransferase are localized in the cytosol. Functional characterization by photosynthetic oxygen evolution revealed that only the C-CP have a fully operational C3 cycle, while both chloroplast types have the capacity to photoreduce 3-phosphoglycerate. The P-CP were enriched in a putative pyruvate transporter and showed light-dependent conversion of pyruvate to phosphoenolpyruvate. There is a larger investment in chloroplasts in the central domain than in the peripheral domain (6-fold more chloroplasts and 4-fold more chlorophyll). The implications of this uneven distribution for the energetics of the C4 and C3 cycles are discussed. The results indicate that peripheral and central compartment chloroplasts in the single-cell C4 species B. sinuspersici function analogous to mesophyll and bundle sheath chloroplasts of Kranz-type C4 species.
机译:Bienertia sinuspersici是一种陆地植物,已知通过将双态叶绿体定位在单个光合细胞内的单独胞质域中来执行C4光合作用。使用分离的原生质体开发了协议,以获取外围叶绿体(P-CP),中央隔室(CC)和来自CC的叶绿体(C-CP),以研究光合功能的亚细胞定位。这些制剂的分析建立了支持NAD-苹果酸酶(ME)型C4周期的过程的细胞内区室化。 Western印迹分析表明,CC具有C3周期的Rubisco,C4脱羧酶NAD-ME,天冬氨酸转氨酶的线粒体同工型和光呼吸标记,而C-CP和P-CP具有较高的Rubisco和丙酮酸含量,匹氏激酶分别。通过天冬氨酸-丙氨酸穿梭,碳酸酐酶,磷酸烯醇丙酮酸羧化酶,丙氨酸和天冬氨酸氨基转移酶的同工型来支持NAD-ME循环的其他酶位于胞质溶胶中。通过光合氧气释放的功能表征表明,只有C-CP具有完全可操作的C3循环,而两种叶绿体均具有光还原3-磷酸甘油酸酯的能力。 P-CP富含假定的丙酮酸转运蛋白,并且显示出丙酮酸向磷酸烯醇丙酮酸的光依赖性转化。与外围区域相比,中央区域的叶绿体投资更大(叶绿体增加6倍,叶绿素增加4倍)。讨论了这种不均匀分布对C4和C3循环的能量的影响。结果表明,单细胞C4物种B. sinuspersici中的外围和中央区叶绿体的功能类似于Kranz型C4物种的叶肉和束鞘叶绿体。

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