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首页> 外文期刊>Journal of proteomics >Proteome alterations monitored by DIGE analysis in Silybum marianum cell cultures elicited with methyl jasmonate and methyl B cyclodextrin
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Proteome alterations monitored by DIGE analysis in Silybum marianum cell cultures elicited with methyl jasmonate and methyl B cyclodextrin

机译:茉莉酸甲酯和甲基B环糊精引发的水飞蓟细胞培养中DIGE分析监测的蛋白质组变化

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摘要

Elicitation with methyl jasmonate (MeJA) or/and cyclodextrin (CD) strongly induced silymarin (Sm) accumulation in suspensions of Silybum marianum, with most of Sm isomers being detected in the culture medium. This induction provides a model platform to characterize the regulation of flavonolignan accumulation and release in response to elicitors and, with this aim, changes in the S. marianum cell proteome were investigated. The DIGE technique was used to detect statistically significant changes in the cell's proteome. A total number of 1269 unique spots were detected, 67 of which were de-regulated upon elicitation. Nineteen spots were identified by nLC-MS/MS database search analysis. Identified proteins belong to a few categories, including metabolism, stress and defense responses and transport processes. The most abundant group was represented by pathogenesis-related (PR) proteins and heat shock proteins. Two proteins related to transport process were identified and both were upregulated by elicitation. One was identified as Ras-related protein Rab11C of the Rab family of small ATPase superfamily. A second protein was identified as an ABC transporter. Some of the identified proteins are discussed with respect to their putative role in the extracellular flavonolignan accumulation in S. marianum cultures. Biological significance: Most approaches to increase secondary metabolite yields using plant cell cultures have been focused on the optimization of its biosynthesis. The study of other post biosynthetic events, like chemical or enzymatic modifications, transport, storage/secretion and catabolism/degradation are also biotechnologically relevant. Secretion is of particular interest since if cell cultures are to be used routinely for the commercial production, they must release the targeted metabolites into the extracellular medium.Elicitor-induced silymarin accumulation and release in S. marianum cell cultures provide a responsive model system to profile both alterations in proteins related to monolignol/flavonoid biosynthesis and to identify potential systems involved in secretion of secondary metabolites.The proteomic approach undertaken in this work has permitted identify some of the events occurring in elicited S. marianum cell cultures. One attainment of this study is that a vesicular transport mechanism could be involved in the release of this class of secondary metabolites to the extracellular compartment. This finding forms a baseline for future research on a non-sequenced medicinal plant S. marianum at molecular level.
机译:茉莉酸甲酯(MeJA)或/和环糊精(CD)引发强烈诱导水飞蓟素(Sm)在水飞蓟悬浮液中的积累,并且在培养基中检测到大多数Sm异构体。这种诱导提供了一个模型平台,以表征黄素木脂素对引发剂响应的积累和释放的调控,并以此为目标,研究了马氏链球菌细胞蛋白质组的变化。 DIGE技术用于检测细胞蛋白质组的统计学显着变化。总共检测到1269个独特斑点,其中67个在被激发后被解除管制。通过nLC-MS / MS数据库搜索分析确定了19个斑点。鉴定出的蛋白质属于几类,包括新陈代谢,应激和防御反应以及转运过程。最丰富的组由发病相关蛋白(PR)和热休克蛋白代表。鉴定了与运输过程有关的两种蛋白质,并且两种蛋白质均通过诱导而上调。一个被确定为小ATPase超家族Rab家族的Ras相关蛋白Rab11C。第二种蛋白质被鉴定为ABC转运蛋白。讨论了一些鉴定出的蛋白质,关于它们在玛丽亚链霉菌培养物中胞外黄素木脂素积累中的推定作用。生物学意义:使用植物细胞培养物提高次生代谢产物产量的大多数方法都集中在优化其生物合成上。其他生物合成后事件的研究,如化学或酶促修饰,转运,储存/分泌和分解代谢/降解,也与生物技术相关。分泌是特别令人感兴趣的,因为如果要将细胞培养物常规用于商业生产,它们必须将靶向的代谢物释放到细胞外培养基中。诱导剂诱导的水飞蓟素在S. marianum细胞培养物中的积累和释放提供了响应模型系统蛋白质变化与单木香酚/类黄酮生物合成有关,并鉴定出与次生代谢产物分泌有关的潜在系统。这项工作中采用的蛋白质组学方法已经可以鉴定出诱发的玛丽亚链球菌细胞培养物中的某些事件。这项研究的一项成就是,囊泡运输机制可能与这类次级代谢产物向细胞外区室的释放有关。这一发现为将来在分子水平上对无序列药用植物玛丽亚沙门氏菌的研究奠定了基础。

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