首页> 外文期刊>Pakistan journal of botany >Transcriptome analysis reveals that blocking the ethylene signal transduction pathway is a key point for 2,4-D inhibited shikonin biosynthesis in Lithospermum erythrorhizon
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Transcriptome analysis reveals that blocking the ethylene signal transduction pathway is a key point for 2,4-D inhibited shikonin biosynthesis in Lithospermum erythrorhizon

机译:转录组分析表明,阻断乙烯信号转导途径是2,4-D抑制Lithospermum erythrorhizon中的shikonin生物合成的关键点

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The synthetic growth hormone2,4-dichlorophenoxyacetic acid (2,4-D) significantly inhibits shikonin and its derivatives biosynthesis in the medicinal plant Lithospermum erythrorhizon . However, the molecular mechanism of this regulation remains unclear.In this study, we attempt to address this issue by comparing the transcriptome of 2,4-D treated cell cultureswith that of the control (CK). A total of 216 up-regulated and 269 down-regulated genes by 2,4-D were discovered. Gene ontology (GO) enrichment analysis revealed that differentially expressed genes (DEGs) were statistically significantly related to the metabolic process. Pathway classification enrichment analysis further confirmed that the DEGs were mainly related to the secondary metabolism. More importantly, 2,4-D has no effect on the two key enzyme genes ACS and ACO for ethylene biosynthesis. However,2,4-D significantly down-regulated the genes directly involved in ethylene signal transduction pathway (ESTP), including HMA 5 , EIN3 , and ORCA3 . 2,4-D also down-regulated two indirect genes, LOX and GA2ox , thereby conferring the jasmonate (JA) and GA biosynthesis, which regulates ESTP by targeting EIN3. By blocking ESTP, 2,4-D finally down-regulated the phenylpropanoid formation-related genes, thereby conferring shikonin and its derivatives biosynthesis. Our findingsprovide new hints for the deep understanding of the molecular mechanism of shikonin formation.
机译:合成生长激素2,4-二氯苯氧基乙酸(2,4-D)显着抑制了药用植物Lithospermum erythrorhizon中的Shikonin及其衍生物生物合成。然而,本调节的分子机制仍然不清楚。本研究,我们试图通过比较2,4-D处理细胞培养物的转录组(CK)来解决该问题。发现总共216个上调和269个下调基因2,4-D。基因本体论(GO)富集分析显示,差异表达的基因(DEGS)与代谢过程有统计学显着相关。途径分类富集分析进一步证实,DEGS主要与次生新陈代谢有关。更重要的是,2,4-D对两种关键酶基因AC和乙烯生物合成的ACO没有影响。然而,2,4-D显着下调直接参与乙烯信号转导途径(ESTP)的基因,包括HMA 5,EIN3和ORCA3。 2,4-D还监管的两个间接基因,LOX和GA2Ox,从而赋予茉莉酸酯(JA)和GA生物合成,其通过靶向EIN3调节eSTP。通过阻断ESTP,2,4-D最终下调苯丙醇形成相关基因,从而赋予什莲素及其衍生物生物合成。我们的发现提供了对Shikonin形成分子机制的深入了解的新提示。

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