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Effects of Drought on Nutrient Uptake and the Levels of Nutrient-Uptake Proteins in Roots of Drought-Sensitive and -Tolerant Grasses

机译:干旱对敏感耐旱禾草根系养分吸收和养分吸收蛋白水平的影响

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摘要

Climate change will increase drought in many regions of the world. Besides decreasing productivity, drought also decreases the concentration (%) of nitrogen (N) and phosphorous (P) in plants. We investigated if decreases in nutrient status during drought are correlated with decreases in levels of nutrient-uptake proteins in roots, which has not been quantified. Drought-sensitive (Hordeum vulgare, Zea mays) and -tolerant grasses (Andropogon gerardii) were harvested at mid and late drought, when we measured biomass, plant %N and P, root N- and P-uptake rates, and concentrations of major nutrient-uptake proteins in roots (NRT1 for NO3, AMT1 for NH4, and PHT1 for P). Drought reduced %N and P, indicating that it reduced nutrient acquisition more than growth. Decreases in P uptake with drought were correlated with decreases in both concentration and activity of P-uptake proteins, but decreases in N uptake were weakly correlated with levels of N-uptake proteins. Nutrient-uptake proteins per gram root decreased despite increases per gram total protein, because of the larger decreases in total protein per gram. Thus, drought-related decreases in nutrient concentration, especially %P, were likely caused, at least partly, by decreases in the concentration of root nutrient-uptake proteins in both drought-sensitive and -tolerant species.
机译:气候变化将加剧世界许多地区的干旱。除降低生产力外,干旱还降低了植物中氮(N)和磷(P)的浓度(%)。我们调查了干旱期间养分状况的下降是否与根部养分吸收蛋白水平的下降相关,目前尚未量化。在我们测量生物量,植物%N和P,根系N和P吸收率以及主要浓度的情况下,在干旱的中后期收获了对干旱敏感(大麦,玉米)和耐旱性草(Andropogon gerardii)。根中的养分吸收蛋白(NRT1代表NO3,AMT1代表NH4,PHT1代表P)。干旱会降低%N和P,表明它比生长更能减少养分吸收。干旱引起的磷吸收减少与磷吸收蛋白的浓度和活性降低相关,但氮吸收的降低与氮吸收蛋白的水平呈弱相关。尽管每克总蛋白增加,但每克根的养分吸收蛋白却减少了,因为每克总蛋白的减少量更大。因此,干旱相关的养分浓度,特别是%P的下降,可能至少部分地是由干旱敏感和耐旱物种中根系养分吸收蛋白质的浓度下降引起的。

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