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Original Articles

Effects of Intercropping Peanut on Soil Nutrient Status and Microbial Activity within Young Camellia oleifera Plantation

, ORCID Icon &
Pages 1232-1238 | Received 14 May 2018, Accepted 29 Apr 2019, Published online: 09 May 2019

References

  • Allen, S. E., H. M. Grimshaw, J. A. Parkinson, and C. Quarmby. 1974. In Chemical analysis of ecological materials, ed. S. E. Allen. Oxford: Blackwells.
  • Begheyn, L. T. 1987. A rapid method to determine cation exchange capacity and exchangeable bases in calcareous, gypsiferous, saline and sodic soils. Communications in Soil Science and Plant Analysis 18 (9):911–32. doi:10.1080/00103628709367872.
  • Castro, S., M. Permigiani, M. G. Vinocur, and A. Fabra. 1999. Nodulation in peanut (Arachis hypogaea L.) roots in the presence of native and inoculated rhizobia strains. Applied Soil Ecology 13 (1):39–44. doi:10.1016/S0929-1393(99)00016-5.
  • Chen, R. F., R. F. Shen, P. Gu, H. Y. Wang, and X. H. Xu. 2008. Investigation of aluminum-tolerant species in acid soils of south China. Communications in Soil Science and Plant Analysis 39 (9–10):1493–506. doi:10.1080/00103620802006610.
  • Dai, C. C., Y. Chen, X. X. Wang, and P. D. Li. 2013. Effects of intercropping of peanut with the medicinal plant Atractylodes lancea on soil microecology and peanut yield in subtropical China. Agroforestry Systems 87 (2):417–26. doi:10.1007/s10457-012-9563-z.
  • Eastin, E. F. 1978. Total nitrogen determination for plant material containing nitrate. Analytical Biochemistry 85 (2):591–94.
  • Ehrmann, J., and K. Ritz. 2014. Plant: Soil interactions in temperate multi-cropping production systems. Plant and Soil 376 (1–2):1–29. doi:10.1007/s11104-013-1921-8.
  • Fustec, J., F. Lesuffleur, S. Mahieu, and J.-B. Cliquet. 2010. Nitrogen rhizodeposition of legumes. A review. Agronomy for Sustainable Development 30 (1):57–66. doi:10.1051/agro/2009003.
  • Głąb, T., and B. Kulig. 2008. Effect of mulch and tillage system on soil porosity under wheat (Triticum aestivum). Soil and Tillage Research 99 (2):169–78. doi:10.1016/j.still.2008.02.004.
  • Guerrero, C., I. Gómez, J. Mataix-Solera, R. Moral, J. M. Beneyto, and M. T. Hernández. 2000. Effect of solid waste compost on microbiological and physical properties of a burnt forest soil in field experiments. Biology and Fertility of Soils 32 (5):410–14. doi:10.1007/s003740000270.
  • Iatrou, M., A. Papadopoulos, F. Papadopoulos, O. Dichala, P. Psoma, and A. Bountla. 2014. Determination of soil available phosphorus using the Olsen and Mehlich 3 methods for Greek soils having variable amounts of calcium carbonate. Communications in Soil Science and Plant Analysis 45 (16):2207–14. doi:10.1080/00103624.2014.911304.
  • Li, Q. S., L. K. Wu, J. Chen, M. A. Khan, X. M. Luo, and W. X. Lin. 2016. Biochemical and microbial properties of rhizospheres under maize/peanut intercropping. Journal of Integrative Agriculture 15 (1):101–10. doi:10.1016/S2095-3119(15)61089-9.
  • Li, S., X. Zhu, J. Zhang, G. Li, D. Su, and Y. Shan. 2012. Authentication of pure camellia oil by using near infrared spectroscopy and pattern recognition techniques. Journal of Food Science 77 (4):C374–C380. doi:10.1111/j.1750-3841.2012.02622.x.
  • Li, W., Z. C. Zheng, T. X. Li, X. Z. Zhang, Y. D. Wang, H. Y. Yu, S. Q. He, and T. Liu. 2015. Effect of tea plantation age on the distribution of soil organic carbon fractions within water-stable aggregates in the hilly region of Western Sichuan, China. Catena 133:198–205. doi:10.1016/j.catena.2015.05.017.
  • Li, Y. B., X. M. Xiao, Y. Chen, and X. F. Shen. 2017. Silicon effect on nutrient acquisition of peanut (Arachis hypogaea L.) under aluminum stress. Communications in Soil Science and Plant Analysis 48 (21):2526–33. doi:10.1080/00103624.2017.1416131.
  • Liao, T., D. Y. Yuan, F. Zou, C. Gao, Y. Yang, L. Zhang, and X. F. Tan. 2014. Self-sterility in Camellia oleifera may be due to the Prezygotic late-acting self-incompatibility. PLoS One 9:e99639. doi:10.1371/journal.pone.0099639.
  • Maheswarappa, H. P., M. R. Hegda, R. Dhanapal, and C. C. Biddappa. 1998. Mixed forming in coconut garden: Its impact on soil physical, chemical properties, coconut nutrition, and yield. Journal of Plantation Crops 26 (2):139–43.
  • Manna, M. C., and M. V. Singh. 2001. Long-term effects of intercropping and bio-litter recycling on soil biological activity and fertility status of sub-tropical soils. Bioresource Technology 76 (2):143–50.
  • Midmore, D. J. 1993. Agronomic modification of resource use and intercrop productivity. Field Crops Research 34 (3–4):357–80. doi:10.1016/0378-4290(93)90122-4.
  • Morris, R. A., and D. P. Garrity. 1993. Resource capture and utilization in intercropping: Water. Field Crops Research 34 (3–4):303–17. doi:10.1016/0378-4290(93)90119-8.
  • Nambiar, E. K., and R. Sands. 1992. Effects of compaction and simulated root channels in the subsoil on root development, water uptake and growth of radiata pine. Tree Physiology 10 (3):297–306.
  • Olsen, R. A., and L. R. Bakken. 1987. Viability of soil bacteria: Optimization of plate-counting technique and comparison between total counts and plate counts within different size groups. Microbial Ecology 13 (1):59–74. doi:10.1007/BF02014963.
  • Ryan, P. R., S. D. Tyerman, T. Sasaki, T. Furuichi, Y. Yamamoto, W. H. Zhang, and E. Delhaize. 2011. The identification of aluminium-resistance genes provides opportunities for enhancing crop production on acid soils. Journal of Experimental Botany 62 (1):9–20. doi:10.1093/jxb/erq272.
  • Shen, X. F., Y. Fang, W. J. Tan, S. M. Liu, and Y. Chen. 2014. Effects of intercropping Camellia oleifera with soybean on the growth, soil physico-chemical properties and inner canopy micro-climate. Journal of Agriculture Biotechnology and Ecology 7 (1):20–28.
  • Tan, D. S., J. Y. Jin, L. H. Jiang, S. W. Huang, and Z. H. Liu. 2012. Potassium assessment of grain producing soils in North China. Agriculture, Ecosystems and Environment 148:65–71. doi:10.1016/j.agee.2011.11.016.
  • USDA. (1998). Soil quality – Agronomy technical note, 30 August 2011, available from: https://www.nrcs.usda.gov/Internet/FSE_DOCUMENTS/nrcs142p2_053276.pdf
  • Walkley, A., and I. A. Black. 1934. An examination of the Degtjareff method for determining soil organic matter, and a proposed modification of the chromic acid titration method. Soil Science 37 (1):29–38. doi:10.1097/00010694-193401000-00003.
  • Yang, C. Y., X. M. Liu, Z. Y. Chen, Y. S. Lin, and S. Y. Wang. 2016. Comparison of oil content and fatty acid profile of ten new Camellia oleifera cultivars. Journal of Lipids 2016: 3982486. http://dx.doi.org/10.1155/2016/3982486.
  • Zahran, H. H. 1999. Rhizobium-legume symbiosis and nitrogen fixation under severe conditions and in an arid climate. Microbiology and Molecular Biology Reviews 63 (4):968–89.
  • Zhang, F., and L. Li. 2003. Using competitive and facilitative interactions in intercropping systems enhances crop productivity and nutrient-use efficiency. Plant and Soil 248 (1–2):305–12. doi:10.1023/A:1022352229863.
  • Zhong, H. Y., D. R. Bedgood Jr, A. G. Bishop, P. D. Prenzler, and K. Robards. 2007. Endogenous biophenol, fatty acid and volatile profiles of selected oils. Food Chemistry 100 (4):1544–51. doi:10.1016/j.foodchem.2005.12.039.

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