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酚氧化酶和热休克基因在双孢蘑菇子实体发育过程中的表达,健康和受Lecanicillium fungicola 感染的。

Expression of phenol oxidase and heat-shock genes during the development of Agaricus bisporus fruiting bodies, healthy and infected by Lecanicillium fungicola.

机构信息

UR1264, Mycologie et Sécurité des Aliments, INRA, BP81, 33883 Villenave d'Ornon, France.

出版信息

Appl Microbiol Biotechnol. 2010 Feb;85(5):1499-507. doi: 10.1007/s00253-009-2186-2. Epub 2009 Aug 27.

DOI:10.1007/s00253-009-2186-2
PMID:19711071
Abstract

The fungal pathogen Lecanicillium fungicola (formerly Verticillium fungicola) is responsible for severe losses worldwide in the mushroom (Agaricus bisporus) industry. Infected crops are characterised by masses of undifferentiated tissue (bubbles) growing in place of sporophores. The expression of three laccase genes (lcc1, lcc2 and lcc3), two tyrosinase genes (AbPPO1 and AbPPO2) and the hspA gene encoding a heat-shock protein known to be potentially associated with host-pathogen interaction was investigated in mycelial aggregates and during the development of healthy sporophores and bubbles of a susceptible cultivar. The lcc3, AbPPO2 and hspA genes were each expressed at different levels at the different stages of sporophore morphogenesis, whilst they showed a stable expression throughout bubble development. The transcript levels were similar in bubbles and at the first developmental stage of healthy fruiting bodies, both showing no tissue differentiation. These observations suggest that lcc3, AbPPO2 and hspA are associated with A. bisporus morphogenesis. Comparing the expression of the hspA gene in three susceptible and three tolerant strains showed that the latter displayed a higher level of transcript in the primordium, which is the stage receptive to the pathogen. The six strains exhibited a comparable expression in the vegetative mycelium, non-receptive to L. fungicola.

摘要

真菌病原体胶孢炭疽菌(原名Verticillium fungicola)在全球范围内对蘑菇(双孢蘑菇)产业造成了严重损失。受感染的作物的特征是大量未分化的组织(气泡)在担孢子的位置生长。在易感染品种的菌丝体聚集物以及健康担孢子和气泡的发育过程中,研究了三个漆酶基因(lcc1、lcc2 和 lcc3)、两个酪氨酸酶基因(AbPPO1 和 AbPPO2)和编码热休克蛋白的 hspA 基因的表达,该热休克蛋白已知与宿主-病原体相互作用有关。lcc3、AbPPO2 和 hspA 基因在担孢子形态发生的不同阶段表达水平不同,而在气泡发育过程中表现出稳定的表达。在气泡和健康子实体的第一个发育阶段的转录水平相似,两者均未显示出组织分化。这些观察结果表明,lcc3、AbPPO2 和 hspA 与 A. bisporus 的形态发生有关。比较三个易感菌株和三个耐受菌株中 hspA 基因的表达表明,后者在原基中表现出更高的转录水平,原基是对病原体敏感的阶段。这 6 个菌株在营养菌丝体中表现出相似的表达水平,而营养菌丝体对胶孢炭疽菌没有反应。

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