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水培和土培条件下氮素供应对燕麦生长和磷素吸收的影响
作者姓名:FAN Ming-Shou  LI Zhen  WANG Feng-Mei  ZHANG Jian-Hua
作者单位:[1]College of Agronomy, Inner Mongolia Agricultural University, Hohhot, Inner Mongolia 010019 (China) [2]Department of Biology, Hong Kong Baptist University, Hong Kong (China)
基金项目:*1Project supported by the National Natural Science Foundation Council of China (No.30660086), the Natural Science Foundation of Inner Mongolia of China (No.200607010302), Hong Kong Research Grants Council (No.2465/05M), Hong Kong University Grants Committee (No.AOE/B-07/99), and Hong Kong Baptist University Matching Research Fund.
摘    要:Plants show different growth responses to N sources supplied with either NH4+ or NO3-. The uptake of different N sources also affects the rhizosphere pH and therefore the bioavailability of soil phosphorus, particularly in alkaline soils. The plant growth, P uptake, and P availability in the rhizosphere of oat (Avena nuda L.) grown in hydroponics and in soil culture were investigated under supply with sole NH4+-N, sole NO3--N, or a combination. Sole NO3--fed oat plants accumulated more biomass than sole NH4+-fed ones. The highest biomass accumulation was observed when N was suppliedw ith both NH4+-N and NO3--N. Growth of the plant root increased with the proportion of NO3- in the cultural medium. Better root growth and higher root/shoot ratio were consistently observed in NO3--fed plants. However, root vigor was the highest when N was supplied with NO3-+NH4+. NH4+ supply reduced the rhizosphere pH but did not affect P uptake by plants grown in soils with CaHPO4 added as P source. No P deficiency was observed, and plant P concentrations were generally above 2 g kg-1. P uptake was increased when N was supplied partly or solely as NO3--N, similarly as biomass accumulation. The results suggested that oat was an NO3--preferring plant, and NO3--N was essential for plant growth and the maintenance of root absorption capacity. N supply with NH4+-N did not improve P nutrition, which was most likely due to the absence of P deficiency.

关 键 词:植物生长  矿质氮  磷吸收  石竹属  燕麦  水培  根际pH值  干物质积累
收稿时间:10 October 2008

Growth and phosphorus uptake of oat (Avena nuda L.) as affected by mineral nitrogen forms supplied in hydroponics and soil culture
FAN Ming-Shou,LI Zhen,WANG Feng-Mei,ZHANG Jian-Hua.Growth and phosphorus uptake of oat (Avena nuda L.) as affected by mineral nitrogen forms supplied in hydroponics and soil culture[J].Pedosphere,2009,19(3):323-330.
Authors:FAN Ming-Shou  LI Zhen  WANG Feng-Mei and ZHANG Jian-Hua
Institution:College of Agronomy, Inner Mongolia Agricultural University, Hohhot, Inner Mongolia 010019 (China);College of Agronomy, Inner Mongolia Agricultural University, Hohhot, Inner Mongolia 010019 (China);College of Agronomy, Inner Mongolia Agricultural University, Hohhot, Inner Mongolia 010019 (China);College of Agronomy, Inner Mongolia Agricultural University, Hohhot, Inner Mongolia 010019 (China);Department of Biology, Hong Kong Baptist University, Hong Kong (China)
Abstract:Plants show different growth responses to N sources supplied with either NH4+ or NO3-. The uptake of different N sources also affects the rhizosphere pH and therefore the bioavailability of soil phosphorus, particularly in alkaline soils. The plant growth, P uptake, and P availability in the rhizosphere of oat (Avena nuda L.) grown in hydroponics and in soil culture were investigated under supply with sole NH4+-N, sole NO3--N, or a combination. Sole NO3--fed oat plants accumulated more biomass than sole NH4+-fed ones. The highest biomass accumulation was observed when N was supplied with both NH4+-N and NO3--N. Growth of the plant root increased with the proportion of NO3- in the cultural medium. Better root growth and higher root/shoot ratio were consistently observed in NO3--fed plants. However, root vigor was the highest when N was supplied with NO3-+NH4+. NH4+ supply reduced the rhizosphere pH but did not affect P uptake by plants grown in soils with CaHPO4 added as P source. No P deficiency was observed, and plant P concentrations were generally above 2 g kg-1. P uptake was increased when N was supplied partly or solely as NO3--N, similarly as biomass accumulation. The results suggested that oat was an NO3--preferring plant, and NO3--N was essential for plant growth and the maintenance of root absorption capacity. N supply with NH4+-N did not improve P nutrition, which was most likely due to the absence of P deficiency.
Keywords:alkaline soils  nitrogen nutrition  oat (Avena nuda L  )  P uptake  rhizosphere pH
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