259
Views
1
CrossRef citations to date
0
Altmetric
Original Articles

Optimizing nitrogen management strategy under wheat straw incorporation for higher rice production and nitrogen use efficiency

&
Pages 492-505 | Received 05 Sep 2014, Accepted 23 Feb 2015, Published online: 13 Jan 2017

References

  • Bird, J. A., W. R. Horwath, A. J. Eagle, and C. van Kessel. 2001. Immobilization of fertilizer nitrogen in rice: Effects of straw management practice. Soil Science Society of America Journal 65: 1143–52.
  • Chen, X. H., Z. G. Han, Y. X. Ye, A. C. Zhang, Z. Wang, and Q. Zhou. 2013. Effects of wheat-residue application on grain yield and growth characteristics in mechanical transplanting rice. Acta Agriculturae Boreali-occidentalis Sinica 22: 38–41( in Chinese, with English abstract).
  • Chen, B. Q., E. K. Liu, Q. Z. Tian, C. R. Yan, and Y. Q. Zhang. 2014. Soil nitrogen dynamics and crop residues. A review. Agronomy for Sustainable Development 34: 429–442.
  • Gao, X., W. Ma, C. Ma, F. Zhang, and Y. Wang. 2002. Analysis on current status of utilization of crop straw in China. Journal of Huazhong Agricultural University 21: 242–7 ( in Chinese, with English abstract).
  • Godfray, H. C. J., J. R. Beddington, I. R. Crute, L. Haddad, D. Lawrence, J. F. Muir, J. Pretty, S. Robinson, S. M. Thomas, and C. Toulmin. 2010. Food security: The challenge of feeding 9 billion people. Science 327: 812–8.
  • Huang, M., Y. B. Zou, P. Jiang, B. Xia, M. Ibrahim, and H. J. Ao. 2011. Relationship between grain yield and yield components in super hybrid. Agricultural Sciences in China 10: 1537–44.
  • Huang, X., M. M. Li, J. F. Li, and Y. Song. 2012. A high-resolution emission inventory of crop burning in fields in China based on MODIS thermal anomalies/fire products. Atmospheric Environment 50: 9–15.
  • Ju, X. T., G. X. Xing, X. P. Chen, S. L. Zhang, L. J. Zhang, X. J. Liu, Z. L. Cui, B. Yin, P. Christie, Z. L. Zhu, and F. S. Zhang. 2009. Reducing environmental risk by improving N management in intensive Chinese agricultural systems. Proceedings of the National Academy of Sciences of the United States of America 106: 3041–46.
  • Kamiji, Y., H. Yoshida, J. A. Palta, T. Sakuratani, and T. Shiraiwa. 2011. N applications thatincrease plant N during panicle development are highly effective in increasing spikelet number in rice. Field Crops Research 122: 242–7.
  • Khush, G. S.. 2013. Strategies for increasing the yield potential of cereals: case of rice as an example. Plant Breeding 132: 433–6.
  • Li, Y., H. D. Cao, J. S. Deng, R. S. Zhu, J. R. Bai, and H. Zhou. 2009. Effect of return of total wheat straw on soil mineral nitrogen dynamics and rice yield. Journal of Ecology and Rural Environment 25: 46–51 ( in Chinese, with English abstract).
  • Ling, Q. H. 2000. Crop group quality theory. Shanghai, China: Science and Technology Press ( in Chinese).
  • Li, D. Q., Q. Y. Tang, Y. B. Zhang, J. Q. Qin, H. Li, L. J. Chen, S. H. Yang, Y. B. Zou, and S. B. Peng. 2012. Effect of nitrogen regimes on grain yield, nitrogen utilization, radiation use efficiency, and sheath blight disease intensity in super hybrid rice. Journal of Integrative Agriculture 11: 134–143.
  • Limon-Ortega, A., B. Govaerts, and K. D. Sayre. 2008. Straw management, crop rotation, and nitrogen source effect on wheat grain yield and nitrogen use efficiency. European Journal of Agronomy 29: 21–28.
  • Linquist, B. A., L. J. Liu, C. van Kessel, and K. J. van Groenigen. 2013. Enhanced efficiency nitrogen fertilizers for rice systems: Meta-analysis of yield and nitrogen uptake. Field Crops Research 154: 246–254.
  • Miao, Y. X., B. A. Stewart, and F. S. Zhang. 2011. Long-term experiments for sustainable nutrient management in China. A review. Agronomy for Sustainable Development 31: 397–414.
  • Montoya-Gonzalez, A., Gonzalez-Navarro, O. E., B. Govaerts, K. D. Sayre, I. Estrada, M. Luna-Guido, Ceja-Navarro, J. A., L. Patino-Zuniga, R. Marsch, and L. Dendooven. 2009. Straw management, crop rotation and nitrogen source effect on carbon and nitrogen dynamics: A laboratory study. Plant and Soil 325: 243–253.
  • Nguyen, N. V., and A. Ferrero. 2006. Meeting the challenges of global rice production. Paddy and Water Environment 4: 1–9.
  • Normile, D. 2008. Reinventing rice to feed the world. Science 321: 330–3.
  • Peng, S. B., R. J. Buresh, J. L. Huang, J. C. Yang, Y. B. Zou, X. H. Zhong, G. H. Wang, and F. S. Zhang. 2006. Strategies for overcoming low agronomic nitrogen use efficiency in irrigated rice systems in China. Field Crops Research 96: 37–47.
  • Peng, S. B., R. J. Buresh, J. L. Huang, X. H. Zhong, Y. B. Zou, J. C. Yang, G. H. Wang, Y. Y. Liu, R. F. Hu, Q. Y. Tang, K. H. Cui, F. S. Zhang, and A. Dobermann. 2010. Improving nitrogen fertilization in rice by site-specific N management. A review. Agronomy for Sustainable Development 30: 649–656.
  • Peng, S. B., G. S. Khush, P. Virk, Q. Y. Tang, and Y. B. Zou. 2008. Progress in ideotype breeding to increase rice yield potential. Field Crops Research 108: 32–38.
  • Ray, D. K., N. D. Mueller, P. C. West, and J. A. Foley. 2013. Yield trends are insufficient to double global crop production by 2050. Plos One 8: e66428.
  • Redin, M., G. D. dos Santos, P. Miguel, G. L. Denega, M. Lupatini, A. Doneda, and E. L. de Souza. 2011. Impacts of burning on chemical, physical and biological attributes of soil. Ciencia Florestal 21: 381–392.
  • Reidsma, P., S. Y. Feng, M. van Loon, X. J. Luo, C. K. Kang, M. Lubbers, A. Kanellopoltlos, J. Wolf, M. K. van Ittersum, and F. T. Qu. 2012. Integrated assessment of agricultural land use policies on nutrient pollution and sustainable development in Taihu Basin, China. Environmental Science & Policy 18: 66–76.
  • Sharma, A. R., S. K. Kharol, K. V. S. Badarinath, and D. Singh. 2010. Impact of agriculture crop residue burning on atmospheric aerosol loading - a study over Punjab State, India. Annales Geophysicae 28: 367–379.
  • Sharma, S. N., and R. Prasad. 2008. Effect of crop-residue management on the production and agronomic nitrogen efficiency in a rice-wheat cropping system. Journal of Plant Nutrition and Soil Science 171: 295–302.
  • Sui, B. A., X. M. Feng, G. L. Tian, X. Y. Hu, Q. R. Shen, and S. W. Guo. 2013. Optimizing nitrogen supply increases rice yield and nitrogen use efficiency by regulating yield formation factors. Field Crops Research 150: 99–107.
  • Surekha, K., and K. P. C. Reddy. 2005. Contribution of crop residues to yield and nutrient uptake of irrigated rice (Oryza sativa) in rice-rice cropping system. Indian Journal of Agricultural Sciences 75: 392–5.
  • Shan, Y., Z. Cai, Y. Han, E. J. Sarah, and R. J. Buresh. 2006. Accumulation of organic acids in relation to C: N ratios of straws and N application in flooded soil. Acta Pedologica Sinica 43: 941–7 ( in Chinese, with English abstract).
  • Thuy, N. H., Y. H. Shan, S. Bijay, K. R. Wang, Z. C. Cai, S. Yadvinder, and R. J. Buresh. 2008. Nitrogen supply in rice-based cropping systems as affected by crop residue management. Soil Science Society of America Journal 72: 514–523.
  • Tirol-Padre, A., K. Tsuchiya, K. Inubushi, and J. K. Ladha. 2005. Enhancing soil quality through residue management in a rice-wheat system in Fukuoka, Japan. Soil Science and Plant Nutrition 51: 849–860.
  • Witt, C., K. G. Cassman, D. C. Olk, U. Biker, S. P. Liboon, M. I. Samson, and J. C. G. Ottow. 2000. Crop rotation and residue management effects on carbon sequestration, nitrogen cycling and productivity of irrigated rice systems. Plant and Soil 225: 263–278.
  • Wang, J., D. J. Wang, and G. Zhang. 2011. Effects of different N-fertilizer rates with straw incorporation on rice yield and economic benefit of rice-wheat rotation system in Taihu Lake region. Chinese Journal of Eco-Agriculture 19: 265–270 ( in Chinese, with English abstract).
  • Wang, F., F. Cheng, and G. Zhang. 2007. Difference in grain yield and quality among tillers in rice genotypes differing in tillering capacity. Rice Science 14: 135–140.
  • Xue, Y. G., H. Duan, L. J. Liu, Z. Q. Wang, J. C. Yang, and J. H. Zhang. 2013. An improved crop management increases grain yield and nitrogen and water use efficiency in rice. Crop Science 53: 271–284.
  • Xu, Y. Z., L. X. Nie, R. J. Buresh, J. L. Huang, K. H. Cui, B. Xu, W. H. Gong, and S. B. Peng. 2010. Agronomic performance of late-season rice under different tillage, straw, and nitrogen management. Field Crops Research 115: 79–84.
  • Yoshida, S., D. Forno, J. Cock, and K. Gomez. 1976. Laboratory manual for physiological studies of rice. Manila, Philippines: International Rice Research Institute.
  • Yadvinder, S., S. Bijay, J. K. Ladha, C. S. Khind, R. K. Gupta, O. P. Meelu, and E. Pasuquin. 2004. Long-term effects, of organic inputs on yield and soil fertility in the rice-wheat rotation. Soil Science Society of America Journal 68: 845–853.
  • Yu, Y. Q., Y. Huang, and W. Zhang. 2012. Changes in rice yields in China since 1980 associated with cultivar improvement, climate and crop management. Field Crops Research 136: 65–75.
  • Yuan, L., Z. C. Zhang, X. C. Cao, S. C. Zhu, X. Zhang, and L. H. Wu. 2014. Responses of rice production, milled rice quality and soil properties to various nitrogen inputs and rice straw incorporation under continuous plastic film mulching cultivation. Field Crops Research 155: 164–171.
  • Zeng, X. M., B. J. Han, F. S. Xu, J. L. Huang, H. M. Cai, and L. Shi. 2012. Effects of modified fertilization technology on the grain yield and nitrogen use efficiency of midseason rice. Field Crops Research 137: 203–212.
  • Zhang, Z. J., G. Chu, L. J. Liu, Z. Q. Wang, X. M. Wang, H. Zhang, J. C. Yang, and J. H. Zhang. 2013. Mid-season nitrogen application strategies for rice varieties differing in panicle size. Field Crops Research 150: 9–18.
  • Zhu, Z. L., and D. L. Chen. 2002. Nitrogen fertilizer use in China - Contributions to food production, impacts on the environment and best management strategies. Nutrient Cycling in Agroecosystems 63: 117–127.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.