Impact of phosphorus amendments on cadmium uptake by sunflower inoculated with Rhizophagus irregularis mycorrhizae in a contaminated soil

Publish Year: 1401
نوع سند: مقاله ژورنالی
زبان: English
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JR_AET-8-3_003

تاریخ نمایه سازی: 30 آبان 1401

Abstract:

Immobilization of heavy metals (HMs) by phosphorus compounds is an efficient and cheap technique in decreasing their phytoavailability in soil, depending highly on the type and rate of HMs. Greenhouse research was performed to evaluate the impact of various amendments on cadmium (Cd) absorbed by sunflower plants in HM-contaminated soil collected from a mining area. The experiment was performed as a randomized complete block design with two factors, namely mycorrhizal fungi (Rhizophagus irregularis) and amendments (di-ammonium phosphate, humic acid, bone meal, and humic acid +bone meal), in three replications. The results showed that applying all the amendments reduced the amount of soluble Cd and Cd۲+ species in the soil. The highest decreases occurred with the di-ammonium phosphate treatment (۵۱% for soluble Cd), probably through decreasing pH and increasing phosphorus solubility, as a consequence, forming insoluble Cd phosphates. Mycorrhizal inoculation significantly decreased (p≤۰.۰۵) the Cd in the soil solution and the plant shoot but increased it in the plant root, probably through Cd accumulation in the fungal hyphae as Cd phosphates. The use of phosphate compounds is strongly recommended in order to immobilize Cd in highly contaminated sites. 

Authors

Mahdieh Amouzegar

Department of Soil and Water Sciences, Faculty of Agriculture, Shahrood University of Technology, Shahrood, Semnan Province, Iran

Ali Abbaspour

Department of Soil and Water Sciences, Faculty of Agriculture, Shahrood University of Technology, Shahrood, Semnan Province, Iran

Hamid Reza Asghari

Department of Agronomy, Faculty of Agriculture, Shahrood University of Technology, Shahrood, Semnan Province, Iran

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  • Tian, J., Li, Z., Wang, L., Qiu, D., Zhang, X., ...
  • Mar, S.S. (۲۰۱۲). Characterization of phosphate rocks/fertilizers and their effects ...
  • Niad, M., Zarei, S. (۲۰۲۰). Application of fuzzy modeling and ...
  • Safari, Y., Karimi, M. (۲۰۱۹). Environmental risk assessment and source ...
  • Knox, A.S., Kaplan, D.I., Paller, M.H. (۲۰۰۶). Phosphate sources and ...
  • Beggi, F., Hamidou, F., Hash, C. T., Buerkert, A. (۲۰۱۶). ...
  • Yoon, J.K., Cao, X., Ma, L.Q. (۲۰۰۷). Application methods affect ...
  • Rasool, B., Ramzani, P. M. A., Zubair, M., Khan, M. ...
  • Abbaspour, A., Golchin, A. (۲۰۱۱). Immobilization of heavy metals in ...
  • Azeem, M., Ali, A., Jeyasundar, P. G. S. A., Li, ...
  • Wang, Y., Huang, J., Gao, Y. (۲۰۱۲). Arbuscular mycorrhizal colonization ...
  • Yao, Q., Yang, R., Long, L., Zhu, H. (۲۰۱۴). Phosphate ...
  • Yazici, M.A., Asif, M., Tutus, Y., Ortas, I., Ozturk, L., ...
  • USDA, N. (۲۰۱۰). Keys to soil taxonomy. Soil Survey Staff, ...
  • Dane, J. H., Topp, C. G. (Eds.). (۲۰۲۰). Methods of ...
  • Sims, J. T. (۲۰۰۰). Soil test phosphorus: Olsen P. Methods ...
  • Giovannetti, M., Mosse, B. (۱۹۸۰). An evaluation of techniques for ...
  • Duineveld, B.M., Rosado, A.S., van Elsas, J.D., van Veen, J.A. ...
  • McLaughlin, M.J., Tiller, K.G., Smart, M.K. (۱۹۹۷). Speciation of cadmium ...
  • Gustafsson, J.P. (۲۰۱۰). Visual MINTEQ ver. ۳.۰. Http://Www۲. Lwr. Kth. ...
  • Sarker, A., Kashem, M.A., Osman, K.T. (۲۰۱۴). Phosphorus availability, uptake ...
  • McBride, M.B. (۱۹۹۴). Environmental chemistry of soils Oxford University Press. ...
  • Dheri, G.S., Singh Brar, M., Malhi, S.S. (۲۰۰۷). Influence of ...
  • Xiao, Y., Liu, M., Chen, L., Ji, L., Zhao, Z., ...
  • Sneddon, I.R., Orueetxebarria, M., Hodson, M.E., Schofield, P.F., Valsami-Jones, E. ...
  • Lu, K., Yang, X., Gielen, G., Bolan, N., Ok, Y.S., ...
  • Abbas, T., Rizwan, M., Ali, S., Zia-ur-Rehman, M., Qayyum, M.F., ...
  • Ferrol, N., Tamayo, E., Vargas, P. (۲۰۱۶). The heavy metal ...
  • Chen, B., Nayuki, K., Kuga, Y., Zhang, X., Wu, S., ...
  • Cui, G., Ai, S., Chen, K., Wang, X. (۲۰۱۹). Arbuscular ...
  • Lindsay, W. L. (۱۹۷۹). Chemical equilibria in soils. John Wiley ...
  • Peng, S., Eissenstat, D.M., Graham, J.H., Williams, K., Hodge, N.C. ...
  • Jifon, J.L., Graham, J.H., Drouillard, D.L., Syvertsen, J.P. (۲۰۰۲). Growth ...
  • Raklami, A., Tahiri, A., Bechtaoui, N., Pajuelo, E., Baslam, M., ...
  • Jin, C., Nan, Z., Wang, H., Li, X., Zhou, J., ...
  • Brown, S., Christensen, B., Lombi, E., McLaughlin, M., McGrath, S., ...
  • Janoušková, M., Vosátka, M., Rossi, L., Lugon-Moulin, N. (۲۰۰۷). Effects ...
  • aghaie, A.H., Aghili, F., Jafarinia, R. (۲۰۱۹). Soil-indigenous arbuscular mycorrhizal ...
  • Zhong, W., Li, J., Chen, Y., Shu, W., Liao, B. ...
  • Andrade, S.A.L., Abreu, C.A., De Abreu, M.F., Silveira, A.P.D. (۲۰۰۴). ...
  • Hijikata, N., Murase, M., Tani, C., Ohtomo, R., Osaki, M., ...
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