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壳聚糖处理和培养时间胁迫条件下贯叶连翘离体根的代谢谱和根系发育

Metabolic Profile and Root Development of Hypericum perforatum L. In vitro Roots under Stress Conditions Due to Chitosan Treatment and Culture Time.

作者信息

Brasili Elisa, Miccheli Alfredo, Marini Federico, Praticò Giulia, Sciubba Fabio, Di Cocco Maria E, Cechinel Valdir Filho, Tocci Noemi, Valletta Alessio, Pasqua Gabriella

机构信息

Department of Environmental Biology, "Sapienza" University of Rome Rome, Italy.

Department of Chemistry, "Sapienza" University of Rome Rome, Italy.

出版信息

Front Plant Sci. 2016 Apr 19;7:507. doi: 10.3389/fpls.2016.00507. eCollection 2016.

Abstract

The responses of Hypericum perforatum root cultures to chitosan elicitation had been investigated through (1)H-NMR-based metabolomics associated with morpho-anatomical analyses. The root metabolome was influenced by two factors, i.e., time of culture (associated with biomass growth and related "overcrowding stress") and chitosan elicitation. ANOVA simultaneous component analysis (ASCA) modeling showed that these factors act independently. In response to the increase of biomass density over time, a decrease in the synthesis of isoleucine, valine, pyruvate, methylamine, etanolamine, trigonelline, glutamine and fatty acids, and an increase in the synthesis of phenolic compounds, such as xanthones, epicatechin, gallic, and shikimic acid were observed. Among the xanthones, brasilixanthone B has been identified for the first time in chitosan-elicited root cultures of H. perforatum. Chitosan treatment associated to a slowdown of root biomass growth caused an increase in DMAPP and a decrease in stigmasterol, shikimic acid, and tryptophan levels. The histological analysis of chitosan-treated roots revealed a marked swelling of the root apex, mainly due to the hypertrophy of the first two sub-epidermal cell layers. In addition, periclinal divisions in hypertrophic cortical cells, resulting in an increase of cortical layers, were frequently observed. Most of the metabolic variations as well as the morpho-anatomical alterations occurred within 72 h from the elicitation, suggesting an early response of H. perforatum roots to chitosan elicitation. The obtained results improve the knowledge of the root responses to biotic stress and provide useful information to optimize the biotechnological production of plant compounds of industrial interest.

摘要

通过基于¹H-NMR的代谢组学结合形态解剖分析,研究了贯叶连翘根培养物对壳聚糖诱导的反应。根代谢组受两个因素影响,即培养时间(与生物量生长及相关的“过度拥挤胁迫”有关)和壳聚糖诱导。方差分析同时成分分析(ASCA)模型表明这些因素独立起作用。随着时间推移生物量密度增加,异亮氨酸、缬氨酸、丙酮酸、甲胺、乙醇胺、胡芦巴碱、谷氨酰胺和脂肪酸的合成减少,而酚类化合物如呫吨酮、表儿茶素、没食子酸和莽草酸的合成增加。在呫吨酮中,巴西呫吨酮B首次在壳聚糖诱导的贯叶连翘根培养物中被鉴定出来。与根生物量生长放缓相关的壳聚糖处理导致二甲基烯丙基焦磷酸(DMAPP)增加,豆甾醇、莽草酸和色氨酸水平降低。壳聚糖处理根的组织学分析显示根尖明显肿胀,主要是由于前两个表皮下细胞层肥大。此外,经常观察到肥大的皮层细胞进行平周分裂,导致皮层层数增加。大多数代谢变化以及形态解剖改变在诱导后72小时内发生,表明贯叶连翘根对壳聚糖诱导有早期反应。所得结果增进了对根对生物胁迫反应的认识,并为优化具有工业价值的植物化合物的生物技术生产提供了有用信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f9a/4835506/ae1a6f6bf211/fpls-07-00507-g0001.jpg

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