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通过操纵特定外部刺激在体外控制荷兰榆树病真菌中的酵母-菌丝体二态性

Control of yeast-mycelium dimorphism in vitro in Dutch elm disease fungi by manipulation of specific external stimuli.

作者信息

Naruzawa Erika Sayuri, Bernier Louis

机构信息

Centre d'Étude de la Forêt (CEF) and Institut de Biologie intégrative et des Systèmes (IBIS), Canada.

Centre d'Étude de la Forêt (CEF) and Institut de Biologie intégrative et des Systèmes (IBIS), Canada.

出版信息

Fungal Biol. 2014 Nov;118(11):872-84. doi: 10.1016/j.funbio.2014.07.006. Epub 2014 Aug 11.

Abstract

Dutch elm disease (DED) fungi exhibit yeast-mycelium dimorphism both in planta and in vitro. However, previously published data on the transition between these two growth forms in vitro were mostly obtained from a single strain. We examined the effect of six factors on yeast-mycelium dimorphism in vitro in ten strains of Ophiostoma ulmi, Ophiostoma novo-ulmi and Ophiostoma himal-ulmi. Nitrogen sources, calcium, and yeast extract, altogether with inhibitors of phosphodiesterase (caffeine) and dioxygenases (propyl gallate and salicylic acid) were tested in defined culture media. Morphological response to manipulation of several of these factors varied according to the strain of Ophiostoma being analysed. Responses ranged from no statistical differences in morphological transitions to stimulation or reversion of yeast-mycelium dimorphism with the treatments that were tested. These results suggest that different mechanisms and pathways operate in the control of the yeast-mycelium transition in DED pathogens. Oxylipins could be involved in the yeast-to-mycelium transition, since the addition of a dioxygenase inhibitor, salicylic acid, reduced mycelium production in all strains that were tested.

摘要

荷兰榆树病(DED)真菌在植物体内和体外均表现出酵母-菌丝体二态性。然而,此前发表的关于这两种生长形式在体外转变的数据大多来自单一菌株。我们研究了六个因素对十株榆长喙壳菌、新榆长喙壳菌和喜马拉雅榆长喙壳菌体外酵母-菌丝体二态性的影响。在限定培养基中测试了氮源、钙、酵母提取物,以及磷酸二酯酶抑制剂(咖啡因)和双加氧酶抑制剂(没食子酸丙酯和水杨酸)。对其中几个因素进行调控时,形态学反应因所分析的长喙壳菌菌株而异。反应范围从形态转变无统计学差异到在所测试的处理下酵母-菌丝体二态性受到刺激或逆转。这些结果表明,不同的机制和途径在荷兰榆树病病原体酵母-菌丝体转变的控制中发挥作用。氧化脂质可能参与酵母到菌丝体的转变,因为添加双加氧酶抑制剂水杨酸可减少所有测试菌株中菌丝体的产生。

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