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A comparison of shared patterns of differential gene expression and gene ontologies in response to water-stress in roots and leaves of four diverse genotypes of Lolium and Festuca spp. temperate pasture grasses

机译:差异基因表达与基因本体学共享模式的比较,响应于水分胁迫和叶片四种不同基因型的水分胁迫。 温带牧场草

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Ryegrasses (Lolium spp.) and fescues ( Festuca spp.) are closely related and widely cultivated perennial forage grasses. As such, resilience in the face of abiotic stresses is an important component of their traits. We have compared patterns of differentially expressed genes (DEGs) in roots and leaves of two perennial ryegrass genotypes and a single genotype of each of a festulolium (predominantly Italian ryegrass) and meadow fescue with the onset of water stress, focussing on overall patterns of DEGs and gene ontology terms (GOs) shared by all four genotypes. Plants were established in a growing medium of vermiculite watered with nutrient solution. Leaf and root material were sampled at 35% (saturation) and, as the medium dried, at 15%, 5% and 1% estimated water contents (EWCs) and RNA extracted. Differential gene expression was evaluated comparing the EWC sampling points from RNAseq data using a combination of analysis methods. For all genotypes, the greatest numbers of DEGs were identified in the 35/1 and 5/1 comparisons in both leaves and roots. In total, 566 leaf and 643 root DEGs were common to all 4 genotypes, though a third of these leaf DEGs were not regulated in the same up/down direction in all 4 genotypes. For roots, the equivalent figure was 1% of the DEGs. GO terms shared by all four genotypes were often enriched by both up- and down-regulated DEGs in the leaf, whereas generally, only by either up- or down-regulated DEGs in the root. Overall, up-regulated leaf DEGs tended to be more genotype-specific than down-regulated leaf DEGs or root DEGs and were also associated with fewer GOs. On average, only 5–15% of the DEGs enriching common GO terms were shared by all 4 genotypes, suggesting considerable variation in DEGs between related genotypes in enacting similar biological processes.
机译:Ryegrasses(Lolium SPP)和FESCUES(Festuca SPP。)密切相关,广泛栽培多年生牧草草。因此,面对非生物胁迫的弹性是其性状的重要组成部分。我们在两间多年生黑麦草基因型的根和叶片中的差异表达基因(DEGS)的模式与每种青年节(主要是意大利黑麦草)和草甸FESCUE的单一基因型进行了比较,并具有水分应激的发病,侧重于DEG的整体模式所有四种基因型共享的基因本体论术语(GOS)。在用营养溶液浇水的蛭石的生长培养基中建立植物。在35%(饱和)下采样叶和根材料,当介质干燥,在15%,5%和1%估计的水含量(EWC)和RNA中。评估差异基因表达,使用分析方法的组合将EWC采样点与RNASEQ数据进行比较。对于所有基因型,在叶子和根部的35/1和5/1比较中鉴定了最大数量的DEG。总共,566叶和643根醇对所有4个基因型都是常见的,尽管这些叶片中的三分之一在所有4种基因型中没有在相同的上/下方向上调节。对于根,等同的数字为1%的粉末。所有四种基因型共享的GO术语通常由叶中的上调和下调的次数富集,而一般只有通过根部的上调或下调的次数。总的来说,上调的叶片倾向于比下调叶片或根部更具基因型特异性,并且也与较少的GOS相关联。平均而言,所有4种基因型仅共享5-15%的富集常见术语,这表明相关基因型之间进行了相当大的变异,在制定类似的生物学过程中。

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