首页> 美国卫生研究院文献>PLoS Clinical Trials >SOLiD-SAGE of Endophyte-Infected Red Fescue Reveals Numerous Effects on Host Transcriptome and an Abundance of Highly Expressed Fungal Secreted Proteins
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SOLiD-SAGE of Endophyte-Infected Red Fescue Reveals Numerous Effects on Host Transcriptome and an Abundance of Highly Expressed Fungal Secreted Proteins

机译:内生细菌感染的红色羊茅的SOLi-SAGE揭示了对宿主转录组和大量高表达真菌分泌蛋白的多种作用。

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摘要

One of the most important plant-fungal symbiotic relationships is that of cool season grasses with endophytic fungi of the genera Epichloë and Neotyphodium. These associations often confer benefits, such as resistance to herbivores and improved drought tolerance, to the hosts. One benefit that appears to be unique to fine fescue grasses is disease resistance. As a first step towards understanding the basis of the endophyte-mediated disease resistance in Festuca rubra we carried out a SOLiD-SAGE quantitative transcriptome comparison of endophyte-free and Epichloë festucae-infected F. rubra. Over 200 plant genes involved in a wide variety of physiological processes were statistically significantly differentially expressed between the two samples. Many of the endophyte expressed genes were surprisingly abundant, with the most abundant fungal tag representing over 10% of the fungal mapped tags. Many of the abundant fungal tags were for secreted proteins. The second most abundantly expressed fungal gene was for a secreted antifungal protein and is of particular interest regarding the endophyte-mediated disease resistance. Similar genes in Penicillium and Aspergillus spp. have been demonstrated to have antifungal activity. Of the 10 epichloae whole genome sequences available, only one isolate of E. festucae and Neotyphodium gansuense var inebrians have an antifungal protein gene. The uniqueness of this gene in E. festucae from F. rubra, its transcript abundance, and the secreted nature of the protein, all suggest it may be involved in the disease resistance conferred to the host, which is a unique feature of the fine fescue–endophyte symbiosis.
机译:最重要的植物-真菌共生关系之一是凉季草与Epichloë和Neotyphodium的内生真菌。这些联系通常为寄主带来好处,例如对草食动物的抵抗力和改善的耐旱性。优良的羊茅草似乎具有的一项优势是抗病性。作为了解内生植物介导的内生真菌抗病性基础的第一步,我们进行了无内生细菌感染和内生真菌感染内生真菌的内生镰刀菌的SOLiD-SAGE定量转录组比较。在两个样品之间统计上显着差异表达了涉及多种生理过程的200多种植物基因。许多内生菌表达的基因出乎意料地丰富,最丰富的真菌标签占真菌定位标签的10%以上。许多丰富的真菌标签是针对分泌蛋白的。第二个表达最丰富的真菌基因是分泌的抗真菌蛋白,对于内生菌介导的疾病抗性特别感兴趣。青霉和曲霉属中的相似基因。已证明具有抗真菌活性。在可获得的10种披甲科全基因组序列中,仅一种分离株的马蹄内酯E. festucae和甘蓝新孢子虫Neotyphodium gansuense var inbrianbrian具有抗真菌蛋白基因。该基因在红景天中的F. festucae中具有独特性,其转录本丰富度以及该蛋白的分泌性质,都表明该基因可能与赋予宿主的抗病性有关,这是优良羊茅的独特特征。 –内生菌共生。

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