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Contrasting Metabolism in Perenniating Structures of Upland and Lowland Switchgrass Plants Late in the Growing Season

机译:中国人群结构代谢的对比研究 高地和低地柳枝稷植物晚期 生长季

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Background: Switchgrass (Panicum virgatum L.) is being developed as a bioenergy crop for many temperate regions of the world. One way to increase biomass yields is to move southern adapted lowland cultivars to more northern latitudes. However, many southerly adapted switchgrass germplasm can suffer significant winter kill in northerly climes.Materials and Methods: Here, we have applied next-generation sequencing in combination with biochemical analyses to query the metabolism of crowns and rhizomes obtained from two contrasting switchgrass cultivars. Crowns and rhizomes from field-grown lowland (cv Kanlow) and upland (cv Summer) switchgrass cultivars were collected from three randomly selected post-flowering plants. Summer plants were senescing, whereas Kanlow plants were not at this harvest date.Results: Principal component analysis (PCA) differentiated between both the Summer and Kanlow transcriptomes and metabolomes. Significant differences in transcript abundances were detected for 8,050 genes, including transcription factors such as WRKYs and those associated with phenylpropanoid biosynthesis. Gene-set enrichment analyses showed that a number of pathways were differentially up-regulated in the two populations. For both populations, protein levels and enzyme activities agreed well with transcript abundances for genes involved in the phenylpropanoid pathway that were upregulated in Kanlow crowns and rhizomes. The combination of these datasets suggests that dormancy-related mechanisms had been triggered in the crowns and rhizomes of the Summer plants, whereas the crowns and rhizomes of Kanlow plants had yet to enter dormancy.Conclusions: Delayed establishment of dormancy at more northerly latitudes could be one factor that reduces wintersurvival in the high-yielding Kanlow plants. Understanding the cellular signatures that accompany the transition to dormancy can be used in the future to select plants with improved winter hardiness.
机译:背景:柳枝((Panicum virgatum L.)正在被开发为世界许多温带地区的生物能源作物。增加生物量单产的一种方法是将适应南部的低地栽培品种移至北部纬度。然而,许多向南适应的柳枝germ种质在北方气候下会遭受冬季严峻的杀害。材料和方法:在这里,我们将下一代测序与生化分析相结合,用于查询从两个相反柳枝品种获得的冠和根茎的代谢。从田间生长的低地(cv Kanlow)和高地(cv Summer)柳枝switch品种的冠和根茎是从三种随机选择的开花后植物中收集的。结果:夏季和Kanlow转录组和代谢组之间的主成分分析(PCA)得以区分。检测到8050个基因的转录丰度有显着差异,其中包括转录因子(如WRKYs)和与苯基丙烷生物合成相关的那些。基因集富集分析表明,在这两个种群中,许多途径差异上调。对于这两个种群,蛋白质水平和酶活性与参与在Kanlow冠和根茎中上调的苯丙烷途径相关基因的转录本丰度非常吻合。这些数据集的组合表明,夏季植物的冠状茎和根茎已经触发了与休眠相关的机制,而Kanlow植物的冠状茎和根茎尚未进入休眠状态。结论:在更北纬的地区推迟建立休眠的原因可能是高产Kanlow植物中降低冬季生存的一个因素。将来可以使用对伴随休眠状态过渡的细胞特征的了解来选择耐寒性更高的植物。

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