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硫增强防御:硫代谢、氮供应和病原体生活方式的影响

Sulfur-enhanced defence: effects of sulfur metabolism, nitrogen supply, and pathogen lifestyle.

作者信息

Kruse C, Jost R, Lipschis M, Kopp B, Hartmann M, Hell R

机构信息

Heidelberg Institute of Plant Science, University of Heidelberg, Im Neuenheimer Feld 360, 69120 Heidelberg, Germany.

出版信息

Plant Biol (Stuttg). 2007 Sep;9(5):608-19. doi: 10.1055/s-2007-965432.

Abstract

Evidence from field experiments indicates differential roles of sulfur and nitrogen supply for plant resistance against pathogens. Dissection of these observations in defined pathosystems and controlled nutritional conditions indicates an activation of plant sulfur metabolism in several incompatible and compatible interactions. Contents of cysteine and glutathione as markers of primary sulfate assimilation and stress response show increases in ARABIDOPSIS THALIANA upon infection, coinciding with the synthesis of sulfur-containing defence compounds. Similar increases of thiols were observed with necrotrophic, biotrophic, and hemibiotrophic pathogens. Sulfate supply was found to be neutral or beneficial for tolerance against fungal but neutral for bacterial pathogens under IN VITRO conditions. According to various reports and own observations the effects of nitrogen supply appeared to be neutral or harmful, depending on the pathogen. The activation of sulfur metabolism was a consequence of activation of gene expression as revealed by macroarray analysis of an A. THALIANA/ALTERNARIA BRASSICICOLA pathosystem. This activation appeared to be largely independent from sufficient or optimal sulfate supply and from the established sulfate deficiency response. The data suggest that plant-pathogen interactions and sulfur metabolism are linked by jasmonic acid as signal.

摘要

田间试验证据表明,硫和氮供应在植物抵抗病原体方面具有不同作用。在特定病理系统和可控营养条件下对这些观察结果进行剖析,结果表明,在几种不相容和相容的相互作用中,植物硫代谢均被激活。感染后,拟南芥中半胱氨酸和谷胱甘肽的含量(作为初级硫酸盐同化和应激反应的标志物)增加,这与含硫防御化合物的合成相一致。在坏死营养型、活体营养型和半活体营养型病原体感染时,均观察到类似的硫醇增加现象。在体外条件下,发现供应硫酸盐对抵抗真菌具有中性或有益作用,但对抵抗细菌病原体则呈中性作用。根据各种报告和自身观察结果,氮供应的影响似乎是中性或有害的,具体取决于病原体。拟南芥/芸苔链格孢病理系统的宏阵列分析表明,硫代谢的激活是基因表达激活的结果。这种激活似乎在很大程度上独立于充足或最佳的硫酸盐供应以及已确立的硫酸盐缺乏反应。数据表明,茉莉酸作为信号将植物-病原体相互作用与硫代谢联系起来。

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