首页> 外文期刊>Plant Physiology and Biochemistry >Signal transduction in artichoke [Cynara cardunculus L. subsp scolymus (L.) Hayek] callus and cell suspension cultures under nutritional stress
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Signal transduction in artichoke [Cynara cardunculus L. subsp scolymus (L.) Hayek] callus and cell suspension cultures under nutritional stress

机译:朝鲜蓟中的信号转导[cynara cardunculus l. subsp scolymus(l。)愈伤组织愈伤组织和细胞悬浮培养物

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摘要

Stimulated production of secondary phenolic metabolites and proline was studied by using cell cultures of artichoke [Cynara cardunculus L. subsp. scolymus (L.) Hayek] submitted to nutritional stress. Artichoke cell cultures accumulated phenolic secondary metabolites in a pattern similar to that seen in artichoke leaves and heads (capitula). This paper shows that both callus and cell suspension cultures under nutritional stress accumulated phenolic compounds and proline, at the same time their biomass production was negatively affected by nutrient deficiency. The results obtained strongly suggest that plant tissues respond to nutrient deprivation by a defensive costly mechanism, which determines the establishment of a mechanism of trade-off between growth and adaptive response. Furthermore, the results of this research suggest that perception of abiotic stress and increased phenolic metabolites are linked by a sequence of biochemical processes that also involves the intracellular free proline and the oxidative pentose phosphate pathway. The main conclusion of this paper is that, once calli and cell suspension cultures respond to nutrient deficiency, in acclimated cells the establishment of a negative correlation between primary metabolism (growth) and secondary metabolism (defence compounds) is observed.
机译:通过使用朝鲜蓟的细胞培养物研究了刺激的二次酚醛代谢物和脯氨酸的产生[Cynara carcunculus L. subsp。 Scolymus(L.)Hayek]提交营养压力。朝鲜蓟细胞培养物中累积酚类次级代谢物,其模式类似于朝鲜蓟叶和头部(Capitula)。本文表明,在营养应激累积酚类化合物和脯氨酸下,愈伤组织和细胞悬浮培养物在其生物质产生的同时受营养缺乏的负面影响。得到的结果强烈表明,植物组织通过防守昂贵机制反应营养剥夺,决定了在增长和适应性反应之间建立权衡机制。此外,该研究的结果表明,对非生物胁迫和增加的酚醛代谢物的感知通过一种生化方法连接,所述生物化学方法也涉及细胞内游离脯氨酸和氧化戊糖磷酸途径。本文的主要结论是,一旦Calli和细胞悬浮培养物响应营养缺乏,在适应的细胞中,观察到初级代谢(生长)和二次代谢(防御化合物)之间的负相关性。

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