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Correlation of the temporal and spatial expression patterns of HQT with the biosynthesis and accumulation of chlorogenic acid in Lonicera japonica flowers

机译:忍冬花中HQT的时空表达模式与绿原酸的生物合成和积累的关系

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摘要

Hydroxycinnamoyl-CoA quinate transferase (HQT) is one of the key enzymes in the biosynthesis of chlorogenic acid (CGA) in the flowers of Lonicera japonica. However, the spatiotemporal expression patterns of HQT and its relationship to the dynamics of CGA biosynthesis, transport, and storage remain largely unknown. In this study, we collected L. japonica flower samples at different growth stages (S1–S6) and examined the spatiotemporal expression pattern of HQT and the dynamic accumulation patterns of CGA using a combination of molecular and cytological techniques. Our results suggest that the spatiotemporal expression pattern of HQT is directly correlated with dynamic changes in CGA accumulation and distribution in L. japonica flowers. We further show that CGA is synthesized primarily in the cytoplasm and chloroplasts. CGA synthesized in the cytoplasm first accumulates in specialized vesicles and is then transferred to large central vacuoles for storage by fusion of CGA-containing vesicles with vacuoles. Furthermore, CGA synthesized in the chloroplasts appears to be transferred into the vacuoles for storage by direct membrane fusion between the tonoplast and the disrupted chloroplast membranes. Collectively, our results suggest that CGA is synthesized in chloroplasts and cytoplasm and finally transferred to the vacuole for long-term storage.
机译:羟基肉桂酰辅酶A奎宁酸转移酶(HQT)是忍冬花中绿原酸(CGA)生物合成中的关键酶之一。但是,HQT的时空表达模式及其与CGA生物合成,运输和储存动力学的关系仍然未知。在这项研究中,我们收集了不同生长阶段(S1-S6)的粳稻花样品,并结合分子和细胞学技术研究了HQT的时空表达模式和CGA的动态积累模式。我们的结果表明,HQT的时空表达模式与日本粳稻花中CGA积累和分布的动态变化直接相关。我们进一步表明,CGA主要在细胞质和叶绿体中合成。在细胞质中合成的CGA首先积聚在专门的囊泡中,然后通过将含有CGA的囊泡与液泡融合而转移到大的中央液泡中进行储存。此外,在叶绿体和破裂的叶绿体膜之间直接进行膜融合,在叶绿体中合成的CGA似乎转移到液泡中进行储存。总体而言,我们的结果表明CGA在叶绿体和细胞质中合成,并最终转移至液泡中以进行长期保存。

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