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Assessment of flux through oleoresin biosynthesis in epithelial cells of loblolly pine resin ducts

机译:油脂松生物导管上皮细胞中油树脂生物合成通量的评估

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摘要

The shoot system of pines contains abundant resin ducts, which harbor oleoresins that play important roles in constitutive and inducible defenses. In a pilot study, we assessed the chemical diversity of oleoresins obtained from mature tissues of loblolly pine trees (Pinus taeda L.). Building on these data sets, we designed experiments to assess oleoresin biosynthesis in needles of 2-year-old saplings. Comparative transcriptome analyses of single cell types indicated that genes involved in the biosynthesis of oleoresins are significantly enriched in isolated epithelial cells of resin ducts, compared with those expressed in mesophyll cells. Simulations using newly developed genome-scale models of epithelial and mesophyll cells, which incorporate our data on oleoresin yield and composition as well as gene expression patterns, predicted that heterotrophic metabolism in epithelial cells involves enhanced levels of oxidative phosphorylation and fermentation (providing redox and energy equivalents). Furthermore, flux was predicted to be more evenly distributed across the metabolic network of mesophyll cells, which, in contrast to epithelial cells, do not synthesize high levels of specialized metabolites. Our findings provide novel insights into the remarkable specialization of metabolism in epithelial cells.
机译:松树的芽系统包含丰富的树脂导管,其中含有油性树脂,它们在组成型和诱导型防御中起重要作用。在一项初步研究中,我们评估了从火炬松树(Pinus taeda L.)的成熟组织中获得的油脂树脂的化学多样性。基于这些数据集,我们设计了实验来评估2岁小树苗针中的油脂树脂生物合成。单细胞类型的转录组比较分析表明,与叶肉细胞中表达的那些相比,参与树脂油生物合成的基因在分离的树脂导管上皮细胞中显着富集。使用新开发的上皮细胞和叶肉细胞的基因组规模模型进行的模拟,结合了我们关于油树脂产量和组成以及基因表达模式的数据,预测上皮细胞的异养代谢涉及提高的氧化磷酸化和发酵水平(提供氧化还原和能量)等价物)。此外,预计通量将在叶肉细胞的代谢网络中更均匀地分布,与上皮细胞相比,它不合成高水平的专门代谢产物。我们的发现为上皮细胞中新陈代谢的特殊化提供了新颖的见解。

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