期刊文献+

Physiological and Molecular Analysis of Applied Nitrogen in Rice Genotypes 被引量:2

Physiological and Molecular Analysis of Applied Nitrogen in Rice Genotypes
下载PDF
导出
摘要 Ten genotypes of rice (Oryza sativa L.) were grown for 30 d in complete nutrient solution with 1 mmol/L (N-insufficient),4 mmol/L (N-moderate) and 10 mmol/L (N-high) nitrogen levels,and nitrogen efficiency (NE) was analyzed.Growth performance,measured in terms of fresh weight,dry weight and lengths of root and shoot,was higher in N-efficient than in N-inefficient rice genotypes at low N level.Of these 10 genotypes,Suraksha was identified as the most N-efficient,while Vivek Dhan the most N-inefficient.To find out the physiological basis of this difference,the nitrate uptake rate of root and the activities of nitrate assimilatory enzymes in leaves of N-efficient and N-inefficient rice genotypes were studied.Uptake experiments revealed the presence of two separate nitrate transporter systems mediating high-and low-affinity nitrate uptake.Interestingly,the nitrate uptake by the roots of Suraksha is mediated by both high-and low-affinity nitrate transporter systems,while that of Vivek Dhan by only low-affinity nitrate transporter system.Study of the activities and expression levels of nitrate assimilatory enzymes in N-efficient and N-inefficient rice genotypes showed that nitrate reductase (NR) and glutamine synthetase (GS) play important roles in N assimilation under low-nitrogen conditions. Ten genotypes of rice (Oryza sativa L.) were grown for 30 d in complete nutrient solution with 1 mmol/L (N-insufficient),4 mmol/L (N-moderate) and 10 mmol/L (N-high) nitrogen levels,and nitrogen efficiency (NE) was analyzed.Growth performance,measured in terms of fresh weight,dry weight and lengths of root and shoot,was higher in N-efficient than in N-inefficient rice genotypes at low N level.Of these 10 genotypes,Suraksha was identified as the most N-efficient,while Vivek Dhan the most N-inefficient.To find out the physiological basis of this difference,the nitrate uptake rate of root and the activities of nitrate assimilatory enzymes in leaves of N-efficient and N-inefficient rice genotypes were studied.Uptake experiments revealed the presence of two separate nitrate transporter systems mediating high-and low-affinity nitrate uptake.Interestingly,the nitrate uptake by the roots of Suraksha is mediated by both high-and low-affinity nitrate transporter systems,while that of Vivek Dhan by only low-affinity nitrate transporter system.Study of the activities and expression levels of nitrate assimilatory enzymes in N-efficient and N-inefficient rice genotypes showed that nitrate reductase (NR) and glutamine synthetase (GS) play important roles in N assimilation under low-nitrogen conditions.
出处 《Rice science》 SCIE 2012年第3期213-222,共10页 水稻科学(英文版)
基金 Research grant from University Grant Commission,Government of India
关键词 rice nitrogen absorption and assimilation NITRATE nitrogen efficiency nitrogen uptake real-time PCR rice nitrogen absorption and assimilation nitrate nitrogen efficiency nitrogen uptake real-time PCR
  • 相关文献

参考文献1

二级参考文献40

  • 1Briones Jr., A. M., Okabe, S., Umemiya, Y., Ramsing, N.-B., Reichardt, W. and Okuyama, H. 2003. Ammonia-oxidizing bacteria on root biofilms and their possible contribution to N use efficiency of different rice cultivars. Plant Soil. 250: 335-348.
  • 2Campbell, W. H. 1999. Nitrate reductase structure, function and regulation: Bridging the gap between biochemistry and physiology. Annu. Rev. Plant Physiol. Plant Mol. Biol. 50: 277-303.
  • 3Cheng, C. L., Dewdney, J., Kleinhofs, A. and Goodman, H. M. 1986. Cloning and nitrate induction of nitrate reductase mRNA. Proc. Natl. Acad. Sci. USA. 83:6 825-6 828.
  • 4Cheng, C. L., Dewdney, J., Nam, H. G., Den-Boer, B. G. W. and Goodman, H. M. 1988. A new locus (Nial) in Arabidopsis thaliana encoding nitrate reductase. EMBO J. 7:3 309-3 314.
  • 5Choi, H. K., Kleinhofs, A. and An, G. 1989. Nucleotide sequence of rice nitrate reductase genes. Plant Mol. Biol. 13(6): 731-733.
  • 6Crawford, N. M. 1995. Nitrate: Nutrient and signal for plant growth. Plant Cell. 7: 859-868.
  • 7Duan, Y. H., Zhang, Y. L. and Shen, Q. R. 2004. Nitrification in rice rhizosphere and the nitrate nutrition of rice. Acta Pedol. Sin. (in Chinese). 41(5): 803-809.
  • 8Edwards, J. W. and Coruzzi, G. M. 1989. Photorespiration and light act in concert to regulate the expression of the nuclear gene for chloroplast glutamine synthetase. Plant Cell. 1:241-248.
  • 9Finnemann, J. and Schjoerring, J. K. 1998. Ammonium and soluble amide-bound nitrogen in leaves of Brassica napus as related to glutamine synthetase activity and external N supply. Plant Physiol. Biochem. 36(5): 339-346.
  • 10Hamat, H. B., Kleinhofs, A. and Warner, R. L. 1989. Nitrate reductases induction and molecular characterization in rice (Oryza sativa L.). Mol. Gen. Genet. 218: 93-98.

共引文献13

同被引文献30

引证文献2

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部