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首页> 外文期刊>Plant Physiology and Biochemistry >Transcriptome profiling reveals specific patterns of paclitaxel synthesis in a new Taxus yunnanensis cultivar
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Transcriptome profiling reveals specific patterns of paclitaxel synthesis in a new Taxus yunnanensis cultivar

机译:转录组分析显示出在新的 yunnanensis 品种中的紫杉醇合成的特定模式

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AbstractThe difference in contents of paclitaxel and 10-deacetylbaccatin III (10-DABIII) in needles between wildtype (WT) and a new cultivar (Zhongdayihao, ZD1) ofTaxus yunnanensiswas examined. Transcriptome profiling was conducted for different tissues of the ZD1 and WT to illustrate the regulation mechanism of paclitaxel biosynthesis. It was observed that average contents of paclitaxel and 10-DABIII in ZD1 were 4 folds and 32 folds higher than those in WT, respectively. More significant elevations of differential expressed genes (DEGs) from paclitaxel biosynthesis pathway were revealed in ZD1 rather than WT, which should be responsible for the higher contents of paclitaxel and 10-DABIII in the ZD1. Special tissues-dependent expression patterns of paclitaxel biosynthesis DEGs in ZD1 compared to WT were unraveled. The relative higher expressions of paclitaxel biosynthesis genes in needles than other tissues supported the higher content of paclitaxel and 10-DABIII content in needles of ZD1. Attenuation of plant hormone signal transduction pathway led to the lower expression of TFs in ZD1 rather than WT. Besides, the significant negative correlations between differential expressed TFs and DEGs from paclitaxel biosynthesis pathway displayed a possibly negative regulation pattern of these TFs on paclitaxel biosynthesis pathway genes. These results provided new insights into the molecular process of paclitaxel synthesis inTaxus.
机译:<![CDATA [ 抽象 Paclitaxel和10-deacetylbaccatin III(10-dabiII)的差异在野生型(wt)之间的针头和 yunnanensis 的新品种(zhongdayihao,zd1)。对ZD1和WT的不同组织进行转录体分析,以说明紫杉醇生物合成的调节机制。观察到,紫杉醇和ZD1中的10-dabiII的平均含量分别比WT中的4倍,32倍。在ZD1而不是WT中揭示了来自紫杉醇生物合成途径的更大的差异表达基因(DEGS)的升高,而不是WT,其应负责紫杉醇和ZD1中的10-dabiII的含量较高。与WT相比,Zd1中紫杉醇生物合成℃的特殊组织依赖性表达模式进行了加法。针对各种组织的针状紫杉醇生物合成基因的相对较高表达支持ZD1针中的紫杉醇和10-dabiII含量的含量较高。植物激素信号转导通路的衰减导致ZD1而不是WT的TFS的下表达。此外,差异表达的TFS和来自紫杉醇生物合成途径的显着的负相关性在紫杉醇生物合成途径基因上显示了这些TFS的可能负调节模式。这些结果为紫杉醇合成中的分子过程提供了新的见解:斜视> raxus

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