首页> 外文期刊>Field Crops Research >Uptake and use efficiency of N, P, K, Ca and Al by Al-sensitive and Al-tolerant cultivars of wheat under a wide range of soil Al concentrations.
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Uptake and use efficiency of N, P, K, Ca and Al by Al-sensitive and Al-tolerant cultivars of wheat under a wide range of soil Al concentrations.

机译:在宽范围的土壤铝浓度下,铝敏感和耐铝的小麦品种对氮,磷,钾,钙和铝的吸收和利用效率。

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The impacts of acidic soils and Al toxicity on wheat nutrient economy have been scarcely researched under field conditions even though these soils are widely spread in wheat production areas around the world. The main objective of this study was to quantitatively evaluate the element (N, P, K, Ca and Al) economy of an Al-sensitive and an Al-tolerant wheat cultivar growing under different soil Al concentrations at field conditions. To reach this objective, two field experiments were conducted in an Andisol in Valdivia (39 degrees 47'18"S, 73 degrees 14'05"W), Chile. Treatments were a factorial arrangement of: (i) two spring wheat cultivars (Al-sensitive, Domo.INIA and Al-tolerant, Dalcahue.INIA) and (ii) five exchangeable Al levels (0-2.7 cmol(+) kg-1) with three replicates. At harvest, plant biomass was sampled and divided into 5 organ categories: ears, grains, blade leaves, stems plus sheath leaves and roots. The element content (N, P, K, Ca and Al) in each organ was measured to quantify element uptake and concentration, nutrient uptake efficiency (UPE) and nutrient utilization efficiency (UTE). Element uptake (N, P, K, Ca, and Al) was negatively affected by the increased soil Al concentration in above-ground and root biomass in both cultivars (R2=0.61-0.98, p<0.01), although clear differences were found between cultivars. On the contrary, the impact of soil exchangeable Al on the plant element concentration was minor, showing weak associations with soil Al levels. However, the Al concentration in above-ground tissues of the Al-sensitive cultivar was an exception because it increased exponentially with the Al soil concentration (R2=0.96-0.99, p<0.001). Nutrient uptake efficiencies, UPEs (N, P, K and Ca), were negatively affected by soil Al concentrations and were well described by linear equations in both cultivars (R2=0.58-0.98, p<0.05), with notable differences between them. Both nutrient uptake (capture) and UPE were the traits that best explained above-ground biomass production (R2=0.82-0.99, p<0.001, n=20). Nutrient utilization efficiency, UTEs (N, P, K and Ca) responded more conservatively to the soil Al concentration, except for the Al sensitive cultivar under very high soil Al levels.
机译:尽管田间条件下酸性土壤和铝的毒性对小麦养分经济的影响很少进行研究,即使这些土壤广泛分布在世界各地的小麦产区。这项研究的主要目的是定量评估在田间条件下,在不同土壤铝浓度下生长的铝敏感和耐铝小麦品种的元素(氮,磷,钾,钙和铝)经济性。为了达到这个目标,在智利瓦尔迪维亚(Anddivol)(南纬39度47'18“,西纬73度14'05”)进行了两次野外实验。处理是以下因素的因子安排:(i)两个春小麦品种(Al敏感,Domo.INIA和耐铝的,Dalcahue.INIA)和(ii)五个可交换的Al水平(0-2.7 cmol (+)” kg -1 ),一式三份。在收获时,对植物生物量进行采样并分为5个器官类别:穗,谷粒,叶片,茎加鞘叶和根。测量每个器官中的元素含量(N,P,K,Ca和Al),以量化元素吸收和浓度,养分吸收效率(UPE)和养分利用效率(UTE)。两种品种( R 2 )地上和根系生物量中土壤铝含量的增加对元素的吸收(氮,磷,钾,钙和铝)产生负面影响。 = 0.61-0.98, p <0.01),尽管两个品种之间存在明显差异。相反,土壤可交换铝对植物元素浓度的影响很小,显示出与土壤铝水平的弱关联。但是,Al敏感品种地上组织中的Al浓度是一个例外,因为它随Al土的浓度呈指数增加( R 2 = 0.96-0.99, p <0.001)。土壤铝含量对UPE(氮,磷,钾和钙)的养分吸收效率有负面影响,并且两个品种的线性方程都很好地描述了养分吸收效率( R 2 = 0.58-0.98, p <0.05),两者之间存在显着差异。养分吸收(捕获)和UPE都是最能解释地上生物量产生的特征( R 2 = 0.82-0.99, p < 0.001, n = 20)。养分利用效率,UTE(氮,磷,钾和钙)对土壤铝浓度的响应更为保守,但在土壤铝水平很高的情况下,对铝敏感的品种除外。

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