首页> 外文OA文献 >Gene expression analyses reveal a relationship between conidiation and cerato-platanin in homokaryotic and heterokaryotic strains of the fungal plant pathogen Heterobasidion irregulare
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Gene expression analyses reveal a relationship between conidiation and cerato-platanin in homokaryotic and heterokaryotic strains of the fungal plant pathogen Heterobasidion irregulare

机译:基因表达分析揭示真菌植物病原体异源杂合子的同核和异核菌株中菌丝与白藜芦醇之间的关系

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摘要

The Basidiomycete Heterobasidion irregulare was recently sequenced and three cerato-platanin encoding genes were found in its genome (HiCPs). Cerato-platanin family proteins (CPPs) are produced by both plant pathogenic and non-pathogenic fungi, and can act both as virulence factors and elicitors of defence responses. In fungal life these proteins seem to play a dual role, in the fungal cell wall and in the fungus-plant interaction, but most data available to date on CPPs derive from studies performed on Ascomycetes. In the present study, we investigated the expression of HiCPs in three homokaryotic isolates and two heterokaryotic isolates of the forest pathogen H. irregulare. Transcription of HiCPs was analysed both at the edge and at the centre of the fungal colony and compared between homokaryon and heterokaryon. Results showed that only HiCP1 and HiCP2 are likely to be translated in H. irregulare and that, under the tested conditions, HiCP1 is by far the gene with the highest transcript abundance among HiCPs. HiCP1 did not show any preferential expression in different sections of the fungal colony, while HiCP2 was significantly more expressed at the colony centre, thus suggesting a link with the production of conidia. The level of expression of HiCPs in heterokaryons was generally comparable to that of one or both the parental homokaryons, irrespective of the colony section, thus demonstrating that HiCPs are not transcriptionally influenced by the heterokaryotic stage.
机译:最近对不规则芽孢杆菌异源化进行了测序,并在其基因组(HiCPs)中发现了3个cerato-platanin编码基因。 cerato-platanin家族蛋白(CPPs)由植物致病性真菌和非致病性真菌共同产生,既可以作为毒力因子,也可以作为防御反应的引发剂。在真菌生活中,这些蛋白似乎在真菌细胞壁和真菌-植物相互作用中起着双重作用,但是迄今为止,有关CPP的大多数可用数据都来自对子囊菌的研究。在本研究中,我们调查了HiCPs在森林病原体不规则杆菌的三个同核分离株和两个异核分离株中的表达。在真菌菌落的边缘和中心均分析了HiCP的转录,并在同核和异核之间进行了比较。结果表明,只有HiCP1和HiCP2可能在不规则链球菌中翻译,并且在测试条件下,HiCP1是迄今为止HiCP中转录丰度最高的基因。 HiCP1在真菌菌落的不同区域未显示任何优先表达,而HiCP2在菌落中心明显表达更多,因此暗示与分生孢子的产生有关。不论菌落截面如何,异核体中HiCP的表达水平通常与一个或两个亲本同核体的表达水平相当,从而证明HiCP不受异核阶段的转录影响。

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