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Effect of Nitrogen Starvation on the Responses of Two Rice Cultivars to Nitrate Uptake and Utilization 被引量:6

Effect of Nitrogen Starvation on the Responses of Two Rice Cultivars to Nitrate Uptake and Utilization
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摘要 Ammonium(NH+4) is the main nitrogen(N) form for rice crops, while NH+4near the root surface can be oxidized to nitrate(NO-3)by NH+4-oxidizing bacteria. Nitrate can be accumulated within rice tissues and reused when N supply is insufficient. We compared the remobilization of NO-3stored in the tissue and vacuolar between two rice(Oryza sativa L.) cultivars, Yangdao 6(YD6, indica)with a high N use efficiency(NUE) and Wuyujing 3(WYJ3, japonica) with a low NUE and measured the uptake of NO-3, expression of nitrate reductase(NR), NO-3transporter genes(NRTs), and NR activity after 4 d of N starvation following 7-d cultivation in a solution containing 2.86 mmol L-1NO-3. The results showed that both tissue NO-3concentration and vacuolar NO-3activity were higher in YD6 than WYJ3 under N starvation. YD6 showed a 2- to 3-fold higher expression of OsNRT2.1 in roots on the 1st and 4th day of N starvation and had significantly higher values of NO-3uptake(maximum uptake velocity, Vmax) than the cultivar WYJ3.Furthermore, YD6 had significantly higher leaf and root maximum NR activity(NRAmax) and actual NR activity(NRAact) as well as stronger root expression of the two NR genes after the 1st day of N starvation. There were no significant differences in NRAmax and NRAact between the two rice cultivars on the 4th day of N starvation. The results suggested that YD6 had stronger NRA under N starvation, which might result in better NO-3re-utilization from the vacuole, and higher capacity for NO-3uptake and use, potentially explaining the higher NUE of YD6 compared with WYJ3. Ammonium(NH+4) is the main nitrogen(N) form for rice crops, while NH+4near the root surface can be oxidized to nitrate(NO-3)by NH+4-oxidizing bacteria. Nitrate can be accumulated within rice tissues and reused when N supply is insufficient. We compared the remobilization of NO-3stored in the tissue and vacuolar between two rice(Oryza sativa L.) cultivars, Yangdao 6(YD6, indica)with a high N use efficiency(NUE) and Wuyujing 3(WYJ3, japonica) with a low NUE and measured the uptake of NO-3, expression of nitrate reductase(NR), NO-3transporter genes(NRTs), and NR activity after 4 d of N starvation following 7-d cultivation in a solution containing 2.86 mmol L-1NO-3. The results showed that both tissue NO-3concentration and vacuolar NO-3activity were higher in YD6 than WYJ3 under N starvation. YD6 showed a 2- to 3-fold higher expression of OsNRT2.1 in roots on the 1st and 4th day of N starvation and had significantly higher values of NO-3uptake(maximum uptake velocity, Vmax) than the cultivar WYJ3.Furthermore, YD6 had significantly higher leaf and root maximum NR activity(NRAmax) and actual NR activity(NRAact) as well as stronger root expression of the two NR genes after the 1st day of N starvation. There were no significant differences in NRAmax and NRAact between the two rice cultivars on the 4th day of N starvation. The results suggested that YD6 had stronger NRA under N starvation, which might result in better NO-3re-utilization from the vacuole, and higher capacity for NO-3uptake and use, potentially explaining the higher NUE of YD6 compared with WYJ3.
出处 《Pedosphere》 SCIE CAS CSCD 2014年第5期690-698,共9页 土壤圈(英文版)
基金 Supported by the Special Fund for Agro-scientific Research in the Public Interest(No.200903001-5) the Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD)of China the Natural Science Foundation of Jiangsu Province,China(No.BK2010440) China Postdoctoral Science Foundation(No.20110491439)
关键词 nitrate reductase activity nitrate transpoters nitrogen use efficiency Oryza sativa L. REMOBILIZATION 水稻品种 氮饥饿 硝酸盐 NR活性 吸收 氮素利用效率 Oryza 硝酸还原酶
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  • 1张亚丽,段英华,沈其荣.水稻对硝态氮响应的生理指标筛选[J].土壤学报,2004,41(4):571-576. 被引量:37
  • 2Samuelson M E, Ohl6n L, Lind M. Nitrate regulation of nitrate uptake and nitrate reductase expression in barley grown at different nitrate: ammonium ratios at constant relative nitrogen addition rate.Physiologia Plantarum, 1995, 94: 254- 260.
  • 3Larsson C M, Ingemarsson B. In: Wary J L, Kinghom J R (Eds).Molecular and Genetic Aspects of Nitrate Assimilation. New York: Oxford University Press, 1989.
  • 4Nielsen N E. In: Saric M R, Loughman B C. (Eds). Genetics Aspects of Plant Nutrition. Hague: Martinus Nijhoff/Dr W Junk Publishers, 1983.
  • 5Walter J H, Mohamed A, Franz W. Differences between wheat caltivats in acquisition and utilization of phosphorous. Zeitschrift fur Pflanzenernahrung und Bodenkunde, 1996, 159(2) : 155 - 161.
  • 6Schubert S, Yan Y. Nitrale and ammonium nutrition of plants: Effects on acid/base balance and adaptation of root cell plasmalemma H^+ - ATPase. Zeitschrift fur Pflanzenernahrung und Bodenkunde,1996, 160:275 - 281.
  • 7Crawford N M, Glass A D M. Molecular and physiological aspects of nitrate uptake in plants. Trends in Plant Science, 1998, 3:389 -395.
  • 8Colmer T D, Bloom A J. A comparison of NH4^+ and NO3 - net fluxes along roots of rice and maize. Plant, Cell and Environment,1998, 21:240-246.
  • 9Kosegarten H, Grolig F, Esch A, Glusenkamp K H, Mengel K. Effects of NH4^+, NO3^- and HCO3^- on apoplast pH in the outer cortexof root zones of maize, as measured by the fluorescence ratio of fluorescein boronic acid. Planta, 1999, 209: 444-452.
  • 10Ullrich W R. Ammonium uptake in Lemnafibba G1, related membrane potential changes and inhibition of anion uptake. Physiologia Plantarum, 1984:61: 369- 376.

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