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白藜芦醇在L.细胞培养中产生的生物和非生物诱导剂

Biotic and Abiotic Elicitors of Stilbenes Production in L. Cell Culture.

作者信息

Sák Martin, Dokupilová Ivana, Kaňuková Šarlota, Mrkvová Michaela, Mihálik Daniel, Hauptvogel Pavol, Kraic Ján

机构信息

Department of Biotechnology, Faculty of Natural Sciences, University of Ss. Cyril and Methodius, Námestie J. Herdu 2, 91701 Trnava, Slovakia.

Liqoil-Pharm s.r.o., Bratislavská 535, 90046 Most pri Bratislave, Slovakia.

出版信息

Plants (Basel). 2021 Mar 5;10(3):490. doi: 10.3390/plants10030490.

Abstract

The in vitro cell cultures derived from the grapevine ( L.) have been used for the production of stilbenes treated with different biotic and abiotic elicitors. The red-grape cultivar Váh has been elicited by natural cellulose from , the cell wall homogenate from and synthetic jasmonates. The sodium-orthovanadate, known as an inhibitor of hypersensitive necrotic response in treated plant cells able to enhance production and release of secondary metabolite into the cultivation medium, was used as an abiotic elicitor. Growth of cells and the content of phenolic compounds -resveratrol, -piceid, δ-viniferin, and ɛ-viniferin, were analyzed in grapevine cells treated by individual elicitors. The highest accumulation of analyzed individual stilbenes, except of trans-piceid has been observed after treatment with the cell wall homogenate from . Maximum production of trans-resveratrol, δ- and ɛ-viniferins was triggered by treatment with cellulase from . The accumulation of trans-piceid in cell cultures elicited by this cellulase revealed exactly the opposite effect, with almost three times higher production of trans-resveratrol than that of -piceid. This study suggested that both used fungal elicitors can enhance production more effectively than commonly used jasmonates.

摘要

源自葡萄(Vitis vinifera L.)的体外细胞培养物已用于生产经不同生物和非生物诱导剂处理的芪类化合物。红色葡萄品种Váh已用来自[具体来源未明确]的天然纤维素、来自[具体来源未明确]的细胞壁匀浆和合成茉莉酸酯进行诱导。原钒酸钠,已知其作为处理过的植物细胞中超敏坏死反应的抑制剂,能够增强次级代谢产物向培养基中的产生和释放,被用作非生物诱导剂。在经个别诱导剂处理的葡萄细胞中分析了细胞生长以及酚类化合物——白藜芦醇、ε-白藜芦醇苷、δ-葡萄素和ε-葡萄素的含量。在用来自[具体来源未明确]的细胞壁匀浆处理后,观察到除反式白藜芦醇苷外,所分析的个别芪类化合物的最高积累量。来自[具体来源未明确]的纤维素酶处理引发了反式白藜芦醇、δ-和ε-葡萄素的最大产量。这种纤维素酶诱导的细胞培养物中反式白藜芦醇苷的积累显示出完全相反的效果,反式白藜芦醇的产量几乎是白藜芦醇苷的三倍。这项研究表明,两种使用的真菌诱导剂比常用的茉莉酸酯更能有效地提高产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27fc/8001344/d6a3688c9065/plants-10-00490-g001.jpg

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