Reviews and Special Topics

Characterization of Leaf Carbon and Nitrogen Assimilation in Different Rice Genotypes at Jointing Stage and Their Relationships with Nitrogen Utilization Efficiency

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  • 1 Key Laboratory of Crop Physiology, Ecology and Genetic Breeding, Ministry of Education, Jiangxi Agricultural University, Nanchang 330045, China; 2 Key Laboratory of Crop Growth Regulation, Ministry of Agriculture, Nanjing Agricultural University, Nanjing 210095, China;

Received date: 2011-04-09

  Revised date: 2011-07-28

  Online published: 2012-01-10

Abstract

The leaf carbon and nitrogen metabolism characteristics and their relationships with  nitrogen utilization efficiency(NUE) at  jointing stage were investigated with Xiuhui 2 (low NUE), R8312 (medium NUE) and Wuyou 244 (high NUE) as materials  under the lower nitrogen level (58 mg/kg). The results showed that the contents of sucrose and soluble sugar  in the leaves of different rice genotypes    were Wuyou 244 > R8312 > Xiuhui 2, the ratio  of starch content to soluble sugar content and  the ratio of starch  content to sucrose  content  were Xiuhui 2>R8312>Wuyou 244, significantily differed among genotypes. The  starch content and the  ratio of sucrose content to soluble sugar content were not genotypically specific. The  total nitrogen content (TNC), protein nitrogen content (PNC), PNC/TNC, RC(Rubisco content)/PNC  and RC/TNC in the leaves of different rice genotypes exhibited significant differences,  showing an increasing trend of Wuyou 244 < R8312 < Xiuhui 2  for the former two indices and a trend of Xiuhui 2>R8312>Wuyou 244 for the latter  three; RC was not genotypicallyspecific. The contents of chlorophyll and carotenoid, activity of PSⅡ, carboxylation efficiency, activities of carbonic anhydrase, acid invertase and sucrose phosphate synthase in the leaves of Wuyou 244 with high NUE were significantly higher than those of the other genotypes. The activities of nitrate reductase, glutamine synthetase and glutamate synthase and glutamate dehydrogenase in the leaves of Wuyou 244 with high NUE were also significantly higher than those of the other genotypes. Statistical analyses indicated that the leaves of rice genotype with high NUE had the distinguished characteristics of higher soluble sugar content, sucrose content, RC/TNC and RC/PNC, their physiological base were higher   glutamine synthetase activity and primary PSⅡ activity.

Cite this article

CHENG Jianfeng1, *, DAI Tingbo2, JIANG Haiyan1, PAN Xiaoyun1, CAO Weixing2 . Characterization of Leaf Carbon and Nitrogen Assimilation in Different Rice Genotypes at Jointing Stage and Their Relationships with Nitrogen Utilization Efficiency[J]. Chinese Journal OF Rice Science, 2012 , 26(1) : 101 -108 . DOI: 10.3969/j.issn.10017216.2012.01.016

References

\[1\]Chikov V, Bakirova G. Relationship between carbon and nitrogen metabolisms in photosynthesis. Photosynthetica,  2001, 37(4): 519527.

\[2\]Zhang Y L, Fan J B, Wang D S, et al. Genotypic differences in grain yield and physiological nitrogen use efficiency among rice cultivars. Pedosphere,  2009, 19(6): 681691.

\[3\]Peng S B, Tang Q Y, Zou Y B. Current status and challenges of rice production in China. Plant Prod Sci, 2009, 12(1): 38.

\[4\]Peng S B, Roland J B, Huang J L, et al. Strategies for overcoming low agronomic nitrogen use efficiency in irrigated rice systems in China. Field Crops Res,  2006, 96(1): 3747.

\[5\]Kusano M, Fukushima A, Redestig H, et al. Metabolomic approaches toward understanding nitrogen metabolism in plants. J Exp Bot, 2011, 62(4): 14391453.

\[6\]荣湘民, 刘强, 朱红梅. 水稻的源库关系及碳、氮代谢的研究进展. 中国水稻科学, 1998, 12(增): 6369.

\[7\] Yoshida S. Fundamentals of Rice Crop Science. Los Banos, the Philippines: International Rice Research Institue,1981.

\[8\]孙成明, 苏祖芳, 张亚洁, 等. 水稻拔节期株型特征及其与产量关系的研究. 扬州大学学报:农业与生命科学版, 2002, 23(2): 4649, 58.

\[9\]程建峰, 戴廷波, 曹卫星, 等. 不同类型水稻种质氮素营养效率的变异分析. 植物营养与肥料学报, 2007, 13(2): 175183.

\[10\]程建峰, 蒋海燕, 刘宜柏, 等. 氮高效水稻基因型鉴定与筛选方法的研究. 中国水稻科学, 2010, 24(2): 175182.

\[11\]中国科学院上海植物生理研究所, 上海植物生理学会. 现代植物生理学实验指南. 北京: 科学出版社, 2004.

\[12\] Tang W B, Zhang G L, Xiao Y H, et al. Physiological and biochemical characteristics in flag leaves of the C Liangyou series of hybrid rice combinations at late growth stages.Rice Sci, 2010, 17(4): 319325.

\[13\]程建峰, 陈根云, 沈允钢. 神农架林区不同类型植物的叶片特征与光合性能研究. 生态环境学报, 2010, 19(1): 165171.

\[14\] Zhang Y H, Chen L J, He J L, et al. Characteristics of chlorophyll fluorescence and antioxidative system in superhybrid rice and its parental cultivars under chilling stress. Biol Plant,  2010, 54(1): 164168.

\[15\]Wang D, Li X F, Zhou Z J, et al. Two rubisco activase isoforms may play different roles in photosynthetic heat acclimation in the rice plant. Physiol Plant,  2010, 139(1): 5567.

\[16\] Zheng Y M, Ding Y F, Liu Z H, et al. Effects of panicle nitrogen fertilization on nonstructural carbohydrate and grain filling in indica rice. Agric Sci China,  2010, 9(11): 16301640.

\[17\]Ferreira F J, Guo C, Coleman J R. Reduction of plastidlocalized carbonic anhydrase activity results in reduced  Arabidopsis seedling survivorship. Plant Physiol, 2008, 147(2):585594.

\[18\] Ye J,  Ni D, Ruan Y. Posttranslational elevation of cell wall invertase activity by silencing its inhibitor in tomato delays leaf senescence and increases seed weight and fruit hexose level. Plant Cell,  2009, 21(7): 20722089.

\[19\]Cao Y, Fan X R, Sun S B, et al. Effect of nitrate on activities and transcript levels of nitrate reductase and glutamine synthetase in rice. Pedosphere,  2008, 18(5): 664673.

\[20\]Valadier M H, Yoshida A, Grandjean O, et al. Implication of the glutamine synthetase/glutamate synthase pathway in conditioning the amino acid metabolism in bundle sheath and mesophyll cells of maize leaves. FEBS, 2008, 275(12): 1933206.

\[21\]Miyashita Y, Good A. NAD(H)dependent glutamate dehydrogenase is essential for the survival of Arabidopsis thaliana during darkinduced carbon starvation. J Exp Bot,  2008, 59(3): 667680.

\[22\] SPSS14.0 Standard Version.Chicago: SPSS Inc, 2007.

\[23\]Stitt M, Schulze D. Does Rubisco control the rate of photosynthesis and plant growth? An exercise in molecular ecophysiology. Plant Cell Envir,  1994, l7(5): 465487.

\[24\] Ali A, Sivakami S, Raghuram N. Effect of nitrate, nitrite, ammonium, glutamate, glutamine and 2oxoglutarate on the RNA levels and enzyme activities of nitrate reductase and nitrite reductase in rice. Physiol Mol Biol Plants,  2007, 13(1): 1725.

\[25\] Makino A. Photosynthesis, grain Yield, and nitrogen utilization in rice and wheat. Plant Physiol,  2011, 155(1): 125129.

\[26\] 张云桥, 吴荣生, 蒋宁, 等. 水稻的氮素利用效率与品种类型的关系. 植物生理通讯, 1989, 25(2): 127143.

\[27\] 杨肖娥, 孙羲. 不同水稻品种对低氮反应的差异及其机制的研究. 土壤学报, 1992, 29(1): 7379.

\[28\] Ladha J K, Kirk G J D, Bennett J, et al. Opportunities for increased nitrogenuse efficiency from improved lowland rice germplasm. Field Crops Res,  1998, 56(1/2): 4171.

\[29\] MasclauxDaubresse C, DanielVedele F, Dechorgnat J, et al. Nitrogen uptake, assimilation and remobilization in plants: Challenges for sustainable and productive agriculture. Ann Bot,  2010, 105(7): 11411157.

\[30\] Ranjith S A, Meinzer F C. Physiological correlates of variation in nitrogenuse efficiency in two contrasting sugarcane cultivars. Crop Sci,  1997, 37(3): 818825.

\[31\] Wu P, Tao Q N. Genotypic response and selection pressure on nitrogenuse efficiency in rice under different regimes. J Plant Nutri, 1995, 18(3): 487500.

\[32\]Anandacoomaraswamy A, Costa D, Tennakoon P L K. The physiological basis of increased biomass partitioning to roots upon nitrogen deprivation in young clonal tea (Camellia sinensis L). Plant Soil,  2002, 238(1): 19.

\[33\] Chen C C, Han G Q, He H Q, et al. Yield, protein, and remobilization of water soluble carbohydrate and nitrogen of three spring wheat cultivars as influenced by nitrogen input. Agron J,  2011, 103(3): 786795.

\[34\] Athilde O, Krapp A, Francoise D V. Analysis of the NRT2 nitrate transporter family Arabidopsis  structure and gene expression. Plant Physiol,  2002, 129(2): 886896.

\[35\] 封克, 汪晓丽, 陈平, 等. 水稻苗期不同时段NO3-吸收特点及其受NH4+的影响. 中国农业科学, 2003, 36(3): 307312.
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