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感染柑橘疫霉的欧洲山毛榉幼苗的生理变化及其激发子“柑橘菌素”在致病过程中的作用。

Physiological changes of Fagus sylvatica seedlings infected with Phytophthora citricola and the contribution of its elicitin "citricolin" to pathogenesis.

作者信息

Fleischmann F, Koehl J, Portz R, Beltrame A B, Osswald W

机构信息

Section Pathology of Woody Plants, Technische Universität München, Am Hochanger 13, 85354 Freising-Weihenstephan, Germany.

出版信息

Plant Biol (Stuttg). 2005 Nov;7(6):650-8. doi: 10.1055/s-2005-872891.

Abstract

Beech seedlings were infected with the root rot pathogen Phytophthora citricola to study its impact on leaf physiology and water status. Net photosynthesis rate decreased two days after inoculation in infected seedlings. In contrast, electron quantum yield of photosystem II, leaf water potential, and total water consumption were only slightly impaired until 6 dpi. At the same time, wilt symptoms occurred on leaves. These results indicate the involvement of a mobile signal triggering the early changes in leaf physiology by root infection. As the elicitin gene of P. citricola was induced during root infection, we purified and characterised the elicitin protein and tested its ability to change leaf physiological parameters of beech and tobacco plants. P. citricola produced a single acidic elicitin (citricolin), which caused necrosis and decreased gas exchange of tobacco leaves. Furthermore, it induced an oxidative burst in tobacco cell suspension culture. However, none of these effects were observed in beech.

摘要

为了研究根腐病原菌柑橘疫霉对山毛榉幼苗叶片生理和水分状况的影响,对山毛榉幼苗进行了该病原菌的接种。接种后两天,受感染幼苗的净光合速率下降。相比之下,直到接种后6天,光系统II的电子量子产率、叶片水势和总耗水量仅受到轻微影响。与此同时,叶片出现枯萎症状。这些结果表明,存在一种移动信号,通过根部感染触发叶片生理的早期变化。由于柑橘疫霉的激发子基因在根部感染期间被诱导,我们对激发子蛋白进行了纯化和表征,并测试了其改变山毛榉和烟草植株叶片生理参数的能力。柑橘疫霉产生了一种单一的酸性激发子(柑橘菌素),它导致烟草叶片坏死并降低气体交换。此外,它还诱导了烟草细胞悬浮培养中的氧化爆发。然而,在山毛榉中未观察到这些影响。

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