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酞菁金属配合物与活性氧相关的氧化还原和杀菌特性

Redox and fungicidal properties of phthalocyanine metal complexes as related to active oxygen.

作者信息

Vol'pin M E, Novodarova G N, Lapikova V P, Aver'yanov A A

机构信息

A.N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Science, Moscow.

出版信息

J Inorg Biochem. 2000 Oct 1;81(4):285-92. doi: 10.1016/s0162-0134(00)00114-8.

Abstract

Some chemical and fungicidal effects of 20 phthalocyanines of Co, Fe, Cu, and Al were studied. Under dark conditions, these complexes reduced nitroblue tetrazolium in the presence of KCN, accelerated the autoxidation of ascorbate or hydroquinone and decomposed hydrogen peroxide. In the later reaction, hydroxyl radical was generated as evidenced with the deoxyribose assay. The inhibition by superoxide dismutase and catalase of catalyzed autoxidation of ascorbate suggests the participation of superoxide anion-radical and hydrogen peroxide in the reaction. Most complexes were toxic to the fungus Magnaporthe grisea which causes blast disease of rice. The toxicity was enhanced by light being diminished by antioxidant reagents sequestering active oxygen species. Some complexes (including nontoxic ones), after 1-day contact with a leaf surface of the disease-susceptible rice cultivar, induced the fungitoxicity of leaf diffusate. This toxicity was also light-activated and sensitive to antioxidant reagents. Several complexes, when added to inocula, decreased 2-3 times the frequency of the compatible symptoms of the blast. It is suggested that in planta, the dark redox activity of phthalocyanines along with their photosensitization promote the generation of active oxygen, which damages the parasite and, therefore, favors disease resistance.

摘要

研究了20种钴、铁、铜和铝的酞菁化合物的一些化学和杀菌作用。在黑暗条件下,这些配合物在氰化钾存在下能还原硝基蓝四唑,加速抗坏血酸或对苯二酚的自氧化,并分解过氧化氢。在后面的反应中,通过脱氧核糖测定法证明产生了羟基自由基。超氧化物歧化酶和过氧化氢酶对催化的抗坏血酸自氧化的抑制作用表明超氧阴离子自由基和过氧化氢参与了该反应。大多数配合物对引起水稻稻瘟病的稻瘟病菌有毒。光照会增强毒性,而抗氧化剂螯合活性氧会减弱毒性。一些配合物(包括无毒的)与感病水稻品种的叶片表面接触1天后,会诱导叶片渗出物产生杀真菌毒性。这种毒性也是光激活的,并且对抗氧化剂敏感。几种配合物添加到接种物中后,稻瘟病亲和症状的发生频率降低了2至3倍。有人提出,在植物体内,酞菁化合物的暗氧化还原活性及其光敏作用促进了活性氧的产生,活性氧会损害寄生物,因此有利于抗病性。

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