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首页> 外文期刊>BMC Biotechnology >Molecular characterization of two A-type P450s, WsCYP98A and WsCYP76A from Withania somnifera (L.) Dunal: expression analysis and withanolide accumulation in response to exogenous elicitations
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Molecular characterization of two A-type P450s, WsCYP98A and WsCYP76A from Withania somnifera (L.) Dunal: expression analysis and withanolide accumulation in response to exogenous elicitations

机译:茄子(Withania somnifera(L.)Dunal)的两种A型P450,WsCYP98A和WsCYP76A的分子表征:表达分析和withanolide积累对外源激发的响应

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Background Pharmacological investigations position withanolides as important bioactive molecules demanding their enhanced production. Therefore, one of the pivotal aims has been to gain knowledge about complete biosynthesis of withanolides in terms of enzymatic and regulatory genes of the pathway. However, the pathway remains elusive at the molecular level. P450s monooxygenases play a crucial role in secondary metabolism and predominantly help in functionalizing molecule core structures including withanolides. Results In an endeavor towards identification and characterization of different P450s, we here describe molecular cloning, characterization and expression analysis of two A-type P450s, WsCYP98A and WsCYP76A from Withania somnifera . Full length cDNAs of WsCYP98A and WsCYP76A have open reading frames of 1536 and 1545 bp encoding 511 (58.0 kDa) and 515 (58.7 kDa) amino acid residues, respectively. Entire coding sequences of WsCYP98A and WsCYP76A cDNAs were expressed in Escherichia coli BL21 (DE3) using pGEX4T-2 expression vector. Quantitative real-time PCR analysis indicated that both genes express widely in leaves, stalks, roots, flowers and berries with higher expression levels of WsCYP98A in stalks while WsCYP76A transcript levels were more obvious in roots. Further, transcript profiling after methyl jasmonate, salicylic acid, and gibberellic acid elicitations displayed differential transcriptional regulation of WsCYP98A and WsCYP76A . Copious transcript levels of both P450s correlated positively with the higher production of withanolides. Conclusions Two A-types P450 WsCYP98A and WsCYP76A were isolated, sequenced and heterologously expressed in E. coli . Both P450s are spatially regulated at transcript level showing differential tissue specificity. Exogenous elicitors acted as both positive and negative regulators of mRNA transcripts. Methyl jasmonate and salicylic acid resulted in copious expression of WsCYP98A and WsCYP76A . Enhanced mRNA levels also corroborated well with the increased accumulation of withanolides in response to elicitations. The empirical findings suggest that elicitors possibly incite defence or stress responses of the plant by triggering higher accumulation of withanolides.
机译:背景技术药理学调查表明,山梨醇化物是重要的生物活性分子,需要它们提高产量。因此,关键的目的之一是就该途径的酶促和调控基因获得有关withanolides的完整生物合成的知识。但是,该途径在分子水平上仍然难以捉摸。 P450s单加氧酶在次级代谢中起着至关重要的作用,主要帮助功能化分子的核心结构(包括withanolides)。结果为了努力鉴定和表征不同的P450,我们在这里描述了来自Withania somnifera的两种A型P450,WsCYP98A和WsCYP76A的分子克隆,表征和表达分析。 WsCYP98A和WsCYP76A的全长cDNA具有1536和1545 bp的开放阅读框,分别编码511(58.0 kDa)和515(58.7 kDa)个氨基酸残基。使用pGEX4T-2表达载体在大肠杆菌BL21(DE3)中表达WsCYP98A和WsCYP76A cDNA的整个编码序列。实时荧光定量PCR分析表明,两种基因均在茎,叶,茎,根,花和浆果中广泛表达,且茎中WsCYP98A的表达水平较高,而根中WsCYP76A的转录水平更明显。此外,茉莉酸甲酯,水杨酸和赤霉素引发后的转录谱分析显示了WsCYP98A和WsCYP76A的差异转录调控。两种P450的有效转录本水平与withanolides的高产量呈正相关。结论在大肠杆菌中分离,测序并异源表达了两种A型P450 WsCYP98A和WsCYP76A。两种P450都在转录水平上受到空间调节,显示出不同的组织特异性。外源激发子同时作为mRNA转录本的正负调节剂。茉莉酸甲酯和水杨酸导致WsCYP98A和WsCYP76A大量表达。响应诱导,withanolides积累的增加也证实了增强的mRNA水平。经验发现表明,引发剂可能通过触发更高的醇化物积累来激发植物的防御或胁迫反应。

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