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光照和温度联合诱导对组织培养中绿原酸含量、总酚含量及抗氧化活性的影响

The Effect of Combined Elicitation with Light and Temperature on the Chlorogenic Acid Content, Total Phenolic Content and Antioxidant Activity of in Tissue Culture.

作者信息

Senekovič Jan, Ciringer Terezija, Ambrožič-Dolinšek Jana, Islamčević Razboršek Maša

机构信息

Faculty of Agriculture and Life Sciences, University of Maribor, Pivola 10, 2311 Hoče, Slovenia.

Faculty of Natural Sciences and Mathematics, University of Maribor, Koroška Cesta 160, 2000 Maribor, Slovenia.

出版信息

Plants (Basel). 2024 May 25;13(11):1463. doi: 10.3390/plants13111463.

Abstract

Chlorogenic acid is one of the most prominent bioactive phenolic acids with great pharmacological, cosmetic and nutritional value. The potential of in tissue culture was investigated for the production of chlorogenic acid and its elicitation combined with light of different wavelengths and low temperature. The content of chlorogenic acid in the samples was determined by HPLC-UV, while the content of total phenolic compounds and the antioxidant activity of their ethanol extracts were evaluated spectrophotometrically. The highest fresh and dry biomasses were obtained in plants grown at 23 °C. This is the first study in which chlorogenic acid has been identified and quantified in . The highest chlorogenic acid content was 4.049 mg/g DW. It was determined in a culture grown for 28 days after the beginning of the experiment at 12 °C and under blue light. The latter also contained the highest content of total phenolic compounds, and its extracts showed the highest antioxidant activity. could, potentially, be suitable for the in vitro production of chlorogenic acid, although many other studies should be conducted before implementation on an industrial scale.

摘要

绿原酸是最显著的具有重要药理、美容和营养价值的生物活性酚酸之一。研究了其在组织培养中生产绿原酸的潜力,以及结合不同波长的光和低温对其进行诱导。通过高效液相色谱-紫外检测法测定样品中绿原酸的含量,同时采用分光光度法评估其乙醇提取物中总酚类化合物的含量和抗氧化活性。在23℃生长的植株中获得了最高的鲜重和干重。这是第一项在[具体植物名称]中鉴定和定量绿原酸的研究。最高绿原酸含量为4.049mg/g干重。在实验开始后于12℃和蓝光下培养28天的培养物中测定得到该含量。后者还含有最高含量的总酚类化合物,并且其提取物表现出最高的抗氧化活性。[具体植物名称]可能适合体外生产绿原酸,不过在进行工业规模生产之前还应开展许多其他研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7cd/11174371/e812e22bc89f/plants-13-01463-g001.jpg

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