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首页> 外文期刊>Plant and cell physiology >Advances in the Regulation of In Vitro Paclitaxel Production: Methylation of a Y-Patch Promoter Region Alters BAPT Gene Expression in Taxus Cell Cultures
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Advances in the Regulation of In Vitro Paclitaxel Production: Methylation of a Y-Patch Promoter Region Alters BAPT Gene Expression in Taxus Cell Cultures

机译:体外紫杉醇生产调控的研究进展:Y贴剂启动子区的甲基化改变了紫杉孢子细胞培养物中的BAPT基因表达

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摘要

Plant cell biofactories represent a promising solution to the increasing demand for plant-derived compounds, but there are still limiting factors that prevent optimal production, including the loss of yield during in vitro maintenance. Our results reveal a clear correlation between genomic methylation levels and a progressive decline in taxane production in Taxus spp. cell cultures. A comparative study of two cell lines, one 10 years old and low productive and the other new and high productive, revealed important differences in appearance, growth, taxane accumulation and expression levels of several taxane biosynthetic genes. Differences in taxane content and gene expression profile indicate an altered pathway regulation and that the BAPT gene, located in the center of the expression network of taxane biosynthetic genes, is active in a potentially flux-limiting step. The methylation patterns of the BAPT gene were studied in both cell lines by bisulfite sequencing, which revealed high rates of CHH methylated cytosines on the core promoter. Using a bioinformatics approach, this hotspot was identified as a Y-patch promoter element. The Y-patch may play a key role in the epigenetic regulation of the taxane biosynthetic pathway, which would open up novel genetic engineering strategies toward stable and high productivity.
机译:植物细胞生物暗管代表了对植物衍生的化合物的不断增加的需求的有希望的解决方案,但仍有限制因素可防止最佳生产,包括在体外维持过程中的产量损失。我们的研究结果揭示了基因组甲基化水平与紫杉烷SPP紫杉烷生产的逐步下降相关性。细胞培养物。两种细胞系的比较研究,10岁,高生产率和其他新的高效,揭示了几种紫杉烷生物合成基因的外观,生长,紫杉烷积累和表达水平的重要差异。紫杉烷含量和基因表达分布的差异表示改变的途径调节,并且位于紫杉烷生物合成基因的表达网络中心的BAPT基因在可能的通量限制步骤中是活性的。通过双硫酸氢盐测序在两种细胞系中研究了BAPT基因的甲基化模式,透露了核心启动子上的CHH甲基化胞嘧啶的高速率。使用生物信息学方法,该热点被识别为Y贴剂启动子元素。 Y型贴片可能在紫杉烷生物合成途径的表观遗传调节中发挥关键作用,这将开辟稳定和高生产率的新型基因工程策略。

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