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时机至关重要:木栓质定向碳的代谢分配

Timing Is Everything: The Metabolic Partitioning of Suberin-Destined Carbon.

作者信息

Sinka Jessica L, Bernards Mark A

机构信息

Department of Biology, Western University, London, ON N6A 5B7, Canada.

出版信息

Plants (Basel). 2025 May 10;14(10):1433. doi: 10.3390/plants14101433.

Abstract

Suberin is a cell wall-associated biopolymer that possesses both poly(phenolic) and poly(aliphatic) elements assembled into chemically and spatially distinct domains. Domain-specific monomers are formed via a branched pathway between phenolic and aliphatic metabolisms. Previous transcript accumulation data (RNAseq) from early stages of wound-induced suberization revealed highly coordinated, temporal changes in the regulation of these two branches. Notably, phenolic metabolism-associated transcripts accumulated first, indicating a preference toward phenolic production early on post-wounding. To better understand the dynamics of suberin monomer biosynthesis and assembly, we assessed carbon allocation between phenolic and aliphatic metabolisms during wound-induced suberization. To do so, [C]-glucose was administered to wound-healing potato tuber discs at different times post-wounding, and patterns of heavy carbon incorporation into (1) primary metabolites and (2) the suberin polymer were assessed. During early stages of wound-healing, carbon from glucose was rapidly incorporated into phenolic-destined metabolites, while at later stages it was shared between phenolic- and aliphatic-destined metabolites. Similarly, the pattern of labelled carbon incorporation into the poly(aliphatic) domain reflected a greater dedication of carbon towards 18:1 w-hydroxy fatty acid and 18:1 dioic acid (the two most abundant aliphatic monomers in potato suberin) later in the wound healing time course.

摘要

木栓质是一种与细胞壁相关的生物聚合物,它具有聚(酚类)和聚(脂肪族)成分,这些成分组装成化学和空间上不同的结构域。特定结构域的单体通过酚类和脂肪族代谢之间的分支途径形成。先前从伤口诱导木栓化早期阶段获得的转录本积累数据(RNA测序)显示,这两个分支的调控在时间上高度协调变化。值得注意的是,与酚类代谢相关的转录本首先积累,这表明在伤口愈合早期优先产生酚类物质。为了更好地理解木栓质单体生物合成和组装的动态过程,我们评估了伤口诱导木栓化过程中酚类和脂肪族代谢之间的碳分配。为此,在伤口愈合的不同时间向伤口愈合的马铃薯块茎圆盘施用[C] - 葡萄糖,并评估重碳掺入(1)初级代谢物和(2)木栓质聚合物的模式。在伤口愈合的早期阶段,来自葡萄糖的碳迅速掺入到酚类代谢物中,而在后期阶段,它在酚类和脂肪族代谢物之间分配。同样,标记碳掺入聚(脂肪族)结构域的模式反映出在伤口愈合时间进程的后期,碳更多地用于18:1 w - 羟基脂肪酸和18:1二元酸(马铃薯木栓质中两种最丰富的脂肪族单体)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b1e/12114950/b721c601ae15/plants-14-01433-g007.jpg

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