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低温培养对北极植物植物化学特征和生物活性的影响:以穗花婆婆纳为例。

Effect of Low Temperature Cultivation on the Phytochemical Profile and Bioactivity of Arctic Plants: A Case of Dracocephalum palmatum.

机构信息

Institute of General and Experimental Biology, Siberian Division, Russian Academy of Science, Sakh'yanovoy Street 6, 670047 Ulan-Ude, Russia.

Department of Biochemistry and Biotechnology, North-Eastern Federal University, 58 Belinsky Street, 677027 Yakutsk, Russia.

出版信息

Int J Mol Sci. 2017 Nov 30;18(12):2579. doi: 10.3390/ijms18122579.

Abstract

The influence of climatic factors, e.g., low temperature, on the phytochemical composition and bioactivity of the arctic plant Steph. ax Willd. (palmate dragonhead), a traditional food and medical herb of Northern Siberia, was investigated. seedlings were grown in a greenhouse experiment at normal (20 °C, NT) and low (1 °C, LT) temperature levels and five groups of components that were lipophilic and hydrophilic in nature were characterized. The analyses indicated that under NT demonstrates high content of photosynthetic pigments, specific fatty acid (FA) profile with domination of saturated FA (53.3%) and the essential oil with trans-pinocamphone as a main component (37.9%). Phenolic compounds were identified using a combination of high performance liquid chromatography with diode array detection and electrospray ionization mass-spectrometric detection (HPLC-DAD-ESI-MS) techniques, as well as free carbohydrates and water soluble polysaccharides. For the first time, it was established that the cold acclimation of seedlings resulted in various changes in physiological and biochemical parameters such as membrane permeability, photosynthetic potential, membrane fluidity, leaf surface secretory function, reactive oxygen species-antioxidant balance, osmoregulator content and cell wall polymers. In brief, results showed that the adaptive strategy of under LT was realized on the accumulation of membrane or surface components with more fluid properties (unsaturated FA and essential oils), antioxidants (phenolic compounds and enzymes), osmoprotectants (free sugars) and cell wall components (polysaccharides). In addition, the occurrence of unusual flavonoids including two new isomeric malonyl esters of eriodictyol-7--glucoside was found in LT samples. Data thus obtained allow improving our understanding of ecophysiological mechanisms of cold adaptation of arctic plants.

摘要

研究了气候因素(如低温)对北极植物 Steph. ax Willd.(掌叶龙头草)的植物化学成分和生物活性的影响。掌叶龙头草是西伯利亚北部的传统食物和药用草本植物。将幼苗在温室实验中分别在正常(20°C,NT)和低温(1°C,LT)水平下生长,并对 5 组亲脂性和亲水性成分进行了表征。分析表明,NT 下的幼苗表现出高含量的光合色素、特定脂肪酸(FA)组成,以饱和 FA(53.3%)为主,以及以反式-胡椒酮为主要成分的精油(37.9%)。采用高效液相色谱与二极管阵列检测和电喷雾电离质谱联用(HPLC-DAD-ESI-MS)技术以及游离碳水化合物和水溶性多糖,鉴定了酚类化合物。首次发现,幼苗的低温驯化导致了各种生理生化参数的变化,如膜通透性、光合作用潜力、膜流动性、叶片表面分泌功能、活性氧-抗氧化剂平衡、渗透调节剂含量和细胞壁聚合物。简而言之,结果表明,LT 下幼苗的适应策略是通过积累具有更多流变性(不饱和 FA 和精油)、抗氧化剂(酚类化合物和酶)、渗透调节剂(游离糖)和细胞壁成分(多糖)的膜或表面成分来实现的。此外,在 LT 样品中还发现了罕见的类黄酮,包括两种新的异戊烯基化的埃里迪克蒂醇-7-O-葡萄糖苷。由此获得的数据有助于我们更好地理解北极植物的低温适应的生态生理机制。

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