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定量¹H NMR代谢组学揭示了激发子处理的罂粟细胞培养物中初级和次级代谢的广泛代谢重编程。

Quantitative 1H NMR metabolomics reveals extensive metabolic reprogramming of primary and secondary metabolism in elicitor-treated opium poppy cell cultures.

作者信息

Zulak Katherine G, Weljie Aalim M, Vogel Hans J, Facchini Peter J

机构信息

Department of Biological Sciences, University of Calgary, Calgary, Alberta, T2N 1N4, Canada.

出版信息

BMC Plant Biol. 2008 Jan 22;8:5. doi: 10.1186/1471-2229-8-5.

Abstract

BACKGROUND

Opium poppy (Papaver somniferum) produces a diverse array of bioactive benzylisoquinoline alkaloids and has emerged as a model system to study plant alkaloid metabolism. The plant is cultivated as the only commercial source of the narcotic analgesics morphine and codeine, but also produces many other alkaloids including the antimicrobial agent sanguinarine. Modulations in plant secondary metabolism as a result of environmental perturbations are often associated with the altered regulation of other metabolic pathways. As a key component of our functional genomics platform for opium poppy we have used proton nuclear magnetic resonance (1H NMR) metabolomics to investigate the interplay between primary and secondary metabolism in cultured opium poppy cells treated with a fungal elicitor.

RESULTS

Metabolite fingerprinting and compound-specific profiling showed the extensive reprogramming of primary metabolic pathways in association with the induction of alkaloid biosynthesis in response to elicitor treatment. Using Chenomx NMR Suite v. 4.6, a software package capable of identifying and quantifying individual compounds based on their respective signature spectra, the levels of 42 diverse metabolites were monitored over a 100-hour time course in control and elicitor-treated opium poppy cell cultures. Overall, detectable and dynamic changes in the metabolome of elicitor-treated cells, especially in cellular pools of carbohydrates, organic acids and non-protein amino acids were detected within 5 hours after elicitor treatment. The metabolome of control cultures also showed substantial modulations 80 hours after the start of the time course, particularly in the levels of amino acids and phospholipid pathway intermediates. Specific flux modulations were detected throughout primary metabolism, including glycolysis, the tricarboxylic acid cycle, nitrogen assimilation, phospholipid/fatty acid synthesis and the shikimate pathway, all of which generate secondary metabolic precursors.

CONCLUSION

The response of cell cultures to elicitor treatment involves the extensive reprogramming of primary and secondary metabolism, and associated cofactor biosynthetic pathways. A high-resolution map of the extensive reprogramming of primary and secondary metabolism in elicitor-treated opium poppy cell cultures is provided.

摘要

背景

罂粟(Papaver somniferum)能产生多种具有生物活性的苄基异喹啉生物碱,已成为研究植物生物碱代谢的模式系统。该植物作为麻醉性镇痛药吗啡和可待因的唯一商业来源进行种植,但也能产生许多其他生物碱,包括抗菌剂血根碱。环境扰动导致的植物次生代谢调节通常与其他代谢途径调控的改变有关。作为我们罂粟功能基因组学平台的关键组成部分,我们利用质子核磁共振(1H NMR)代谢组学来研究用真菌激发子处理的培养罂粟细胞中初级代谢和次级代谢之间的相互作用。

结果

代谢物指纹图谱和化合物特异性分析表明,响应激发子处理,初级代谢途径发生了广泛的重编程,并伴随着生物碱生物合成的诱导。使用Chenomx NMR Suite v. 4.6(一个能够根据各自的特征光谱识别和定量单个化合物的软件包),在对照和激发子处理的罂粟细胞培养物中,在100小时的时间进程内监测了42种不同代谢物的水平。总体而言,在激发子处理后5小时内,检测到激发子处理细胞代谢组中可检测到的动态变化,特别是在碳水化合物、有机酸和非蛋白质氨基酸的细胞池中。对照培养物的代谢组在时间进程开始80小时后也显示出显著调节,特别是在氨基酸和磷脂途径中间体的水平上。在整个初级代谢中检测到特定的通量调节,包括糖酵解、三羧酸循环、氮同化、磷脂/脂肪酸合成和莽草酸途径,所有这些途径都产生次生代谢前体。

结论

细胞培养物对激发子处理的反应涉及初级和次级代谢以及相关辅助因子生物合成途径的广泛重编程。提供了激发子处理的罂粟细胞培养物中初级和次级代谢广泛重编程的高分辨率图谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbd3/2257952/2dd777939a17/1471-2229-8-5-1.jpg

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