首页> 外文期刊>Plant, Cell & Environment >Gene expression patterns underlying changes in xylem structure and function in response to increased nitrogen availability in hybrid poplar.
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Gene expression patterns underlying changes in xylem structure and function in response to increased nitrogen availability in hybrid poplar.

机译:响应杂种杨氮素利用率提高,木质部结构和功能发生变化的基因表达模式。

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摘要

Nitrogen availability has a strong influence on plant growth and development. In this study, we examined the effect of nitrogen availability on xylogenesis in hybrid poplar (Populus trichocarpa x deltoides H11-11). Saplings of hybrid poplar were fertilized for 33 d with either high or adequate levels of ammonium nitrate. We observed enhanced radial growth, wider vessels and fibres and thinner fibre walls in the secondary xylem of high N relative to adequate N plants. These anatomical differences translated into altered hydraulic properties with xylem being more transport efficient but also more vulnerable to drought-induced cavitation in high N plants. The changes in xylem structure and function were associated with differences in gene expression as revealed by the transcriptome analysis of the developing xylem region. We found 388 genes differentially expressed (fold change+or-1.5, P-value <=0.05), including a number of genes putatively involved in nitrogen and carbohydrate metabolism and various aspects of xylem cell differentiation. Several genes encoding known transcriptional regulators of secondary cell wall deposition were down-regulated in high N plants, corresponding with thinner secondary cell walls in these plants. The results of this study provide us with gene candidates potentially affecting xylem hydraulic and structural traits.
机译:氮的供应对植物的生长和发育有很大的影响。在这项研究中,我们研究了氮素有效性对杂种杨(Populus trichocarpa x deltoides H11-11)木本生的影响。用高浓度或适量硝酸铵对杂交杨树幼树施肥33 d。我们观察到,相对于充足的N植物,高N的次生木质部中的径向生长增强,血管和纤维更宽,纤维壁更薄。这些解剖学差异转化为改变的水力特性,木质部具有更高的运输效率,但在高氮植物中更容易受到干旱诱导的空化作用。木质部结构和功能的变化与基因表达的差异有关,如通过发育中木质部区域的转录组分析所揭示的。我们发现了388个差异表达的基因(倍数变化+或-1.5,P值<= 0.05),包括许多推测参与氮和碳水化合物代谢以及木质部细胞分化各个方面的基因。在高氮植物中,编码已知的次级细胞壁沉积转录调节因子的几个基因被下调,与这些植物中较薄的次级细胞壁相对应。这项研究的结果为我们提供了可能影响木质部水力和结构性状的基因候选物。

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