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薯蓣(Dioscorea deltoidea wall)呋甾烷醇糖苷对番茄植株在生物胁迫下氧化过程的适应原性作用

[Adaptogenic effects of furostanol glycosides of Dioscorea deltoidea wall on oxidative processes in tomato plants in biotic stress].

作者信息

Vasil'eva I S, Vaniushkin S A, Zinov'eva S V, Udalova Zh V, Volkova L A, Nosov A M, Paseshnichenko V A

出版信息

Prikl Biokhim Mikrobiol. 2005 May-Jun;41(3):347-53.

Abstract

The effect of furostanol glycosides of cell culture of Dioscorea deltoidea Wall on oxidative processes in tomato plants subjected to invasion with the gall nematode Meloidogyne incognita Kofoid et White was studied. We showed that furostanol glycosides induce a nonspecific defensive response in plants. Exposure of cell membranes to furostanol glycosides cause rearrangements in fatty acids resulting in the formation of conjugated dienes, which makes molecules thermodynamically more stable under stress conditions. The study of changes in the activity of peroxidases of intact plants and plants affected with the nematode, which were treated with furostanol glycosides, showed that the protective effect of the guaiacol-dependent peroxidase is more long-term than the effect of the benzidine-dependent peroxidase.

摘要

研究了三角叶薯蓣细胞培养物中的呋甾烷醇糖苷对受南方根结线虫(Meloidogyne incognita Kofoid et White)侵染的番茄植株氧化过程的影响。我们发现呋甾烷醇糖苷可诱导植物产生非特异性防御反应。细胞膜暴露于呋甾烷醇糖苷会导致脂肪酸重排,从而形成共轭二烯,这使得分子在胁迫条件下在热力学上更稳定。对完整植株和受线虫侵染植株用呋甾烷醇糖苷处理后过氧化物酶活性变化的研究表明,愈创木酚依赖性过氧化物酶的保护作用比联苯胺依赖性过氧化物酶的作用更持久。

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