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Research Articles

Long-term impacts of nitrogen fertilization and straw incorporation on rice production and nitrogen recovery efficiency under plastic film mulching cultivation

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Pages 213-227 | Received 04 Mar 2020, Accepted 03 Aug 2020, Published online: 27 Aug 2020

References

  • Belder, P., B. A. M. Bouman, R. Cabangon, L. Guoan, E. J. P. Quilang, Y. H. Li, J. H. J. Spiertz, and T. P. Tuong. 2004. Effect of water-saving irrigation on rice yield and water use in typical lowland conditions in Asia. Agricultural Water Management 65 (3):193–210. doi: 10.1016/j.agwat.2003.09.002.
  • Belder, P., J. H. J. Spiertz, B. A. M. Bouman, G. Lu, and T. P. Tuong. 2005. Nitrogen economy and water productivity of lowland rice under water-saving irrigation. Field Crops Research 93 (2–3):169–85. doi: 10.1016/j.fcr.2004.09.022.
  • Butler, E. E., and P. Huybers. 2013. Adaptation of US maize to temperature variations. Nature Climate Change 3 (1):68–72. doi: 10.1038/nclimate1585.
  • Cely, P., G. Gascó, J. Paz-Ferreiro, and A. Méndez. 2015. Agronomic properties of biochars from different manure wastes. Journal of Analytical and Applied Pyrolysis 111:173–82. doi: 10.1016/j.jaap.2014.11.014.
  • Deng, X., L. Shan, H. Zhang, and N. C. Turner. 2006. Improving agricultural water use efficiency in arid and semiarid areas of China. Agricultural Water Management 80 (1–3):23–40. doi: 10.1016/j.agwat.2005.07.021.
  • Fang, C., P. Smith, J. B. Moncrieff, and J. U. Smith. 2005. Similar response of labile and resistant soil organic matter pools to changes in temperature. Nature 433 (7021):57–9. doi: 10.1038/nature03138..
  • Fierer, N., and J. P. Schimel. 2002. Effects of drying-retting frequency on soil carbon and nitrogen transformations. Soil Biology and Biochemistry 34 (6):777–87. doi: 10.1016/S0038-0717(02)00007-X..
  • Fu, X., J. Wang, U. M. Sainju, and W. Z. Liu. 2017. Soil carbon fractions in response to long-term crop rotations in the Loess Plateau of China. Soil Science Society of America Journal 81 (3):503–13. doi: 10.2136/sssaj2016.04.0122.
  • Fu, X., J. Wang, U. M. Sainju, and W. Z. Liu. 2019. Soil nitrogen fractions under long-term crop rotations in the Loess Plateau of China. Soil and Tillage Research 186:42–51. doi: 10.1016/j.still.2018.10.004.
  • Guo, L., M. J. Liu, Y. N. Zhang, Y. Y. Tao, F. Zhang, G. Y. Li, K. Dittert, and S. Lin. 2018. Yield differences get large with ascendant altitude between traditional paddy and water-saving ground cover rice production system. European Journal of Agronomy 92:9–16. doi: 10.1016/j.eja.2017.09.005.
  • Jabran, K., E. Ullah, M. Hussain, M. Farooq, U. Zaman, M. Yaseen, and B. S. Chauhan. 2015. Mulching improves water productivity, yield and quality of fine rice under water-saving rice production systems. Journal of Agronomy and Crop Science 201 (5):389–400. doi: 10.1111/jac.12099.
  • Jin, X. X., Q. Zuo, W. W. Ma, S. Li, J. C. Shi, Y. Y. Tao, Y. N. Zhang, et al. 2016. Water consumption and water-saving characteristics of a ground cover rice production system. Journal of Hydrology 540:220–31. doi: 10.1016/j.jhydrol.2016.06.018.
  • Ju, X. T., G. X. Xing, X. P. Chen, S. L. Zhang, L. J. Zhang, X. J. Liu, Z. L. Cui, et al. 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 (9):3041–6. doi: 10.1073/pnas.0813417106.
  • Kautz, T., C. López-Fando, and F. Ellmer. 2006. Abundance and biodiversity of soil microarthropods as influenced by different types of organic manure in a long-term field experiment in Central Spain. Applied Soil Ecology 33 (3):278–85. doi: 10.1016/j.apsoil.2005.10.003.
  • Klute, A. 1986. Methods of soil analysis. Part 1. Physical and mineralogical methods. Madison, WI: American Society of Agronomy Inc.
  • Leitner, S., P. M. Homyak, J. C. Blankinship, J. Eberwein, G. D. Jenerette, S. Zechmeister-Boltenstern, and J. P. Schimel. 2017. Linking NO and N2O emission pulses with the mobilization of mineral and organic N upon rewetting dry soils. Soil Biology and Biochemistry 115:461–6. doi: 10.1016/j.soilbio.2017.09.005.
  • Li, S., Q. Zuo, X. X. Jin, W. W. Ma, J. C. Shi, and A. Ben-Gal. 2018. The physiological processes and mechanisms for superior water productivity of a popular ground cover rice production system. Agricultural Water Management 201:11–20. doi: 10.1016/j.agwat.2018.01.002.
  • Li, T. Y., X. Zhang, H. X. Gao, B. Li, H. Wang, Q. Y. Yan, M. Ollenburger, and W. F. Zhang. 2019. Exploring optimal nitrogen management practices within site-specific ecological and socioeconomic conditions. Journal of Cleaner Production 241:118295. doi: 10.1016/j.jclepro.2019.118295.
  • Li, Y. S., L. H. Wu, L. M. Zhao, X. H. Lu, Q. L. Fan, and F. S. Zhang. 2007. Influence of continuous plastic film mulching on yield, water use efciency and soil properties of rice felds under non-flooding condition. Soil & Tillage Research 93:370–8. doi: 10.1016/j.still.2006.05.010..
  • Lin, S., K. Dittert, H. B. Tao, C. Kreye, Y. C. Xu, Q. R. Shen, X. L. Fan, and B. Sattelmacher. 2002. The ground-cover rice production system (GCRPS): A successful new approach to save water and increase nitrogen fertilizer efficiency. In Bouman, B.A.M, Hengsdijk, H., Hardy, B., Bindraban, P.S., Tuong, T.P. and Ladha, J.K. (eds). Water-Wise Rice Production. Proceedings of International Workshop on Water-wise Rice Production, 8-11 April 2002, International Rice Research Institute, Los Baños, Philippines, pp. 187–196.
  • Liu, M. J., W. L. Liang, H. Qu, G. Y. Zhi, Q. X. Chen, Y. S. Gong, K. Butterbach-Bahl, and S. Lin. 2014. Ground cover rice production systems are more adaptable in cold regions with high content of soil organic matter. Field Crops Research 164:74–81. doi: 10.1016/j.fcr.2014.05.018.
  • Lu, R. K. 2000. Analytical methods of soil and agricultural chemistry China. Beijing, China: Agricultural Science and Technology Press.
  • Mohammed, A. R., and L. Tarpley. 2009. High nighttime temperatures affect rice productivity through altered pollen germination and spikelet fertility. Agricultural and Forest Meteorology 149 (6–7):999–1008. doi: 10.1016/j.agrformet.2008.12.003.
  • Nagarajan, S., S. V. K. Jagadish, A. S. Hari Prasad, A. K. Thomar, A. Anand, M. Pal, and P. K. Agarwal. 2010. Local climate affects growth, yield and grain quality of aromatic and non-aromatic rice in northwestern India. Agriculture Ecosystems & Environment 138 (3–4):274–81. doi: 10.1016/j.agee.2010.05.012.
  • Peng, S. B., R. 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 (1):37–47. doi: 10.1016/j.fcr.2005.05.004.
  • Qu, H., H. B. Tao, Y. Y. Tao, M. J. Liu, K. R. Shen, and S. Lin. 2012. Ground cover rice production system increases yield and nitrogen recovery efficiency. Agronomy Journal 104 (5):1399–407. doi: 10.2134/agronj2011.0419.
  • Santiago-Arenas, R., S. N. Hadi, B. A. Fanshuri, H. Ullah, and A. Datta. 2019. Effect of nitrogen fertiliser and cultivation method on root systems of rice subjected to alternate wetting and drying irrigation. Annals of Applied Biology 175 (3):388–12. doi: 10.1111/aab.12540.
  • Stoop, W. A., N. Uphoff, and A. Kassam. 2002. A review of agricultural research issues raised by the system of rice intensification (SRI) from Madagascar: Opportunities for improving farming systems for resource-poor farmers. Agricultural Systems 71 (3):249–74. doi: 10.1016/S0308-521X(01)00070-1.
  • Sun, Y., W. H. Mi, L. J. Su, Y. Y. Shan, and L. H. Wu. 2019. Controlled-release fertilizer enhances rice grain yield and N recovery efficiency in continuous non-flooding plastic film mulching cultivation system. Field Crops Research 231:122–9. doi: 10.1016/j.fcr.2018.11.013.
  • Tao, Y. Y., H. Qu, Q. J. Li, X. H. Gu, Y. N. Zhang, M. J. Liu, L. Guo, J. Liu, J. J. Wei, G. J. Wei, et al. 2014. Potential to improve N uptake and grain yield in water saving ground cover rice production system. Field Crops Research 168:101–8. doi: 10.1016/j.fcr.2014.08.014.
  • Wei, F. T., H. B. Tao, S. Lin, B. A. M. Bouman, L. M. Zhang, P. Wang, and K. Dittert. 2011. Rate and duration of grain filling of aerobic rice HD297 and their influence on grain yield under different growing conditions. Scienceasia 37 (2):98–104. doi: 10.2306/scienceasia1513-1874.2011.37.098..
  • Xu, M. G., D. C. Li, J. M. Li, D. Z. Qin, Y. Hosen, H. P. Shen, R. H. Cong, and X. H. He. 2013. Polyolefin-coated urea decreases ammonia volatilization in a double rice system of Southern China. Agronomy Journal 105 (1):277–84. doi: 10.2134/agronj2012.0222.
  • Yoshida, S., and T. Hara. 1977. Effects of air temperature and light on grain filling of an indica and a japonica rice (Oryza sativa L.) under controlled environmental conditions. Soil Science and Plant Nutrition 23 (1):93–107. doi: 10.1080/00380768.1977.10433026.
  • 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 155:164–71. doi: 10.1016/j.fcr.2013.09.009.
  • Zerihun, A., V. P. Gutschick, and H. Bassirirad. 2000. Compensatory roles of nitrogen uptake and photosynthetic N-use efficiency in determining plant growth response to elevated CO2: Evaluation using a functional balance model. Annals of Botany 86 (4):723–30. doi: 10.1006/anbo.2000.1234.
  • Zhang, D., H. Y. Wang, J. T. Pan, J. F. Luo, J. Liu, B. J. Gu, S. Liu, L. M. Zhai, S. Lindsey, Y. T. Zhang, et al. 2018. Nitrogen application rates need to be reduced for half of the rice paddy fields in China. Agriculture Ecosystems & Environment 265:8–14. doi: 10.1016/j.agee.2018.05.023.
  • Zhang, H. C., Z. H. Cao, Q. R. Shen, and M. H. Wong. 2003. Effect of phosphate fertilizer application on phosphorus (P) losses from paddy soils in Taihu Lake Region. I. Effect of phosphate fertilizer rate on P losses from paddy soil. Chemosphere 50 (6):695–701. doi: 10.1016/S0045-6535(02)00207-2.
  • Zhang, K. P., Y. Xing, G. Y. Wang, A. Shemi, M. C. Duan, L. C. Wang, and X. Y. Xie. 2019a. Ridge-furrow with film mulching practice ameliorates soil microbial metabolic activity and carbon utilization in rhizosphere soil of rapeseed (Brassica napus L.). Journal of Soils and Sediments 19 (6):2764–76. doi: 10.1007/s11368-019-02243-4.
  • Zhang, X., X. H. Li, L. C. Luo, Q. X. Ma, Q. Ma, X. L. Hui, S. Wang, J. S. Liu, and Z. H. Wang. 2019b. Monitoring wheat nitrogen requirement and top soil nitrate for nitrate residue controlling in drylands. Journal of Cleaner Production 241:118372. doi: 10.1016/j.jclepro.2019.118372.
  • Zhang, Y. N., M. J. Liu, M. Dannenmann, Y. Y. Tao, Z. S. Yao, R. Y. Jing, X. H. Zheng, K. Butterbach-Bahl, and S. Lin. 2017. Benefit of using biodegradable film on rice grain yield and N use efficiency in ground cover rice production system. Field Crops Research 201:52–9. doi: 10.1016/j.fcr.2016.10.022.
  • Zhao, J., T. Ni, W. B. Xun, X. L. Huang, Q. W. Huang, W. Ran, B. Shen, R. F. Zhang, and Q. R. Shen. 2017. Influence of straw incorporation with and without straw decomposer on soil bacterial community structure and function in a rice-wheat cropping system. Applied Microbiology and Biotechnology 101 (11):4761–73. doi: 10.1007/s00253-017-8170-3.
  • Zheng, Y., X. R. Han, Y. Y. Li, J. F. Yang, N. Li, and N. An. 2019. Effects of biochar and straw application on the physicochemical and biological properties of paddy soils in Northeast China. Scientific Reports 9 (1):16531. doi: 10.1038/s41598-019-52978-w.
  • Zhu, B., L. X. Yi, L. M. Guo, G. Chen, Y. G. Hu, H. M. Tang, C. F. Xiao, X. P. Xiao, G. L. Yang, S. Acharya, et al. 2012. Performance of two winter cover crops and their impacts on soil properties and two subsequent rice crops in Dongting Lake Plain, Hunan, China. Soil & Tillage Research 124:95–101. doi: 10.1016/j.still.2012.05.007.

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