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Identification of differentially expressed genes in the mutualistic association of tall fescue with Neotyphodium coenophialum

机译:高羊茅与新生鼠尾草互生关联中差异表达基因的鉴定

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摘要

Tall fescue (Lolium arundinaceum), an agronomically important forage grass, is typically associated with a mutualistic asexual fungus Neotyphodium coenophialum. Plant colonization is endophytic with no symptoms, and fungal growth is confined to the intercellular spaces. The endophyte enhances host fitness by providing protection from various abiotic and biotic stresses and by improving nutrient acquisition. By suppression subtractive hybridization (SSH) we identified 29 genes that are up-regulated or down-regulated in endophyte-infected tall fescue as compared to endophyte-free tall fescue. Of the genes that had matches to known genes present in the NCBI databases (approximately 50%), several had roles related to plant defense and stress tolerance. Differential expression of these genes was confirmed by semi-quantitative RT-PCR, competitive RT-PCR, and northern hybridization. Endophyte-associated changes in gene expression patterns were consistent among cultivars of tall fescue but differed in some other grass-endophyte associations. Our results indicate that both partners in this symbiosis are active participants, and that the endophyte may be suppressing at least one plant defense gene (putatively encoding PR-10). Further analyses of the differentially expressed genes should aid in understanding the fundamental nature of this mutualistic symbiosis and provide insight into the mechanisms of documented endophyte-enhanced plant improvements.
机译:高羊茅(Lolium arundinaceum),一种在农业上重要的饲料草,通常与一种互生的无性真菌Neotyphodium coenophialumum相关。植物定植是内生的,没有任何症状,真菌的生长仅限于细胞间空间。内生菌通过提供保护以免受各种非生物和生物胁迫并改善营养获取,从而增强宿主适应性。通过抑制消减杂交(SSH),我们确定了29种基因,与无内生菌的高羊茅相比,它们在被内生菌感染的高羊茅中上调或下调。与NCBI数据库中存在的已知基因匹配的基因(约50%)中,有几个与植物防御和胁迫耐受性有关。通过半定量RT-PCR,竞争性RT-PCR和Northern杂交证实了这些基因的差异表达。在高羊茅品种中,与内生菌相关的基因表达模式变化是一致的,但在其他一些草-内生菌的关联中却有所不同。我们的结果表明,这种共生的两个伙伴都是活跃的参与者,并且内生菌可能会抑制至少一个植物防御基因(据信编码PR-10)。差异表达基因的进一步分析应有助于理解这种共生共生的基本本质,并有助于深入了解已记录的内生菌增强植物的改良机制。

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