Plant Genome. 2019 Jun;12(2). doi: 10.3835/plantgenome2018.09.0071.
Two tall fescue [Lolium arundinaceum (Schreb.) Darbysh. = Schedonorus arundinaceus (Schreb.) Dumort. = Festuca arundinacea var. arundinacea Schreb.] plant genotypes with an Epichloë coenophiala (Morgan-Jones & W. Gams) C.W. Bacon & Schardl common toxic endophyte (CTE), one with a nontoxic strain (NTE19) and one with another Epichloë species (FaTG-4) were evaluated and compared with their respective endophyte-free clones for responses to water-deficit stress in the greenhouse. One of the plant genotypes (P27) showed a positive effect of its CTE strain on tiller production after stress and resumed watering. In transcriptome analysis of the pseudostems (leaf sheath whorls), differentially expressed genes (DEGs) were defined as having at least twofold expression difference and false discovery rate (FDR) < 0.05 in comparisons of water treatment (stressed or watered), endophyte presence or absence, or both. Stress affected 38% of the plant transcripts including those for the expected stress-response pathways. The DEGs affected by endophyte in stressed plants were unique to individual plant genotypes. In unstressed plants, endophyte presence tended to reduce expression of genes putatively for defense against fungi, but in unstressed P27 endophyte presence there was enhanced expression of dehydrin and heat shock protein genes. Our results indicated subtle and variable effects of endophytes on tall fescue gene expression; where the endophyte confers protection, its effects on plant gene expression may help prime the plant for stress resistance.
两个具有内生真菌 Epichloë coenophiala (Morgan-Jones & W. Gams) C.W. Bacon & Schardl 的高羊茅[Lolium arundinaceum (Schreb.) Darbysh. = Schedonorus arundinaceus (Schreb.) Dumort. = Festuca arundinacea var. arundinacea Schreb.]植物基因型,一个具有无毒菌株(NTE19),另一个具有另一种内生真菌(FaTG-4),与它们各自的无内生真菌克隆体一起在温室中进行了水分胁迫响应的评估和比较。其中一个植物基因型(P27)在胁迫后和恢复浇水时表现出其内生真菌菌株对分蘖产生的正效应。在假茎(叶鞘轮生)的转录组分析中,差异表达基因(DEGs)定义为在水分处理(胁迫或浇水)、内生菌存在或不存在、或两者的比较中,表达至少有两倍差异和错误发现率(FDR)<0.05。胁迫影响了 38%的植物转录本,包括那些预期的应激反应途径的转录本。受胁迫植物内生菌影响的 DEGs 是每个植物基因型特有的。在未胁迫的植物中,内生菌的存在往往会降低对真菌防御的基因表达,但在未胁迫的 P27 中,内生菌的存在会增强脱水素和热休克蛋白基因的表达。我们的结果表明内生真菌对高羊茅基因表达的影响微妙且多变;当内生真菌提供保护时,它对植物基因表达的影响可能有助于为植物的抗胁迫能力做好准备。