293
Views
15
CrossRef citations to date
0
Altmetric
Articles

The Use of Coal Gangue as a Cultivation Bed Conditioner in Forage Maize Inoculated with Arbuscular Mycorrhizal Fungi

, , &
Pages 1266-1279 | Received 06 Apr 2015, Accepted 06 Jan 2017, Published online: 22 Aug 2017

References

  • Abbott, L. K., and A. D. Robson. 1979. A quantitative study on the spores and anatomy of mycorrhizas formed by a species of Glomus, with special reference to its taxonomy. Australian Journal of Botany 27:363–75. doi:10.1071/BT9790363.
  • Abo-Ghalia, H. H., and A. A. Khalafallah. 2008. Responses of wheat plants associated with arbuscular mycorrhizal fungi to short-term water stress followed by recovery at three growth stages. Journal of Applied Sciences Research 4 (5):570–80.
  • Aghababaee, F., and F. Raesi. 2007. Substrate ecology effect on Soil microbial activity, 2Th National Conference of Iranian agricultural ecosystem.
  • Alexander, M. 1982. Most- probable-number method for microbial populations. Methods of Soil Analysis. Part 2. Chemical and Microbiological Properties 1467–72.
  • Alipour, H., and S. J. Hoseini-Fard. 2003. Mineral Nutrition deficiency in pistachio. Rafsanjan, Iran: Pistachio Research Institute.
  • Alvey, S., and D. E. Crowley. 1995. Influence of organic amendments on biodegradation of atrazine as a nitrogen source. Journal of Environmental Quality 24:1156–62. doi:10.2134/jeq1995.00472425002400060015x.
  • Azam, F. 2002. Studies on organic matter dynamics and nitrogen availability using 14C and 15N. Pakistan Agronomy Journal 1:20–24.
  • Azcón, R. 1989. Selective interaction between free-living rhizosphere bacteria and vesiculararbuscular mycorrhizal fungi. Soil. Biology and Biochemistry 21 (5):639–44. doi:10.1016/0038-0717(89)90057-6.
  • Barbarick, K. A. 1996. Using organic materials as nitrogen fertilizer. Service In Action. No. 546. Colorado, USA: University Cooperative Extension Service.
  • Bárzana, G., R. Aroca, G. Patrick Bienert, F. Chaumont, and J. M. Ruiz-Lozano. 2014. New insights into the regulation of aquaporin’s by the arbuscular mycorrhizal symbiosis in Maize plants under drought stress and possible implications for plant performance. Molecular Plant-Microbe Interactions 27:349–363. doi:10.1094/MPMI-09-13-0268-R.
  • Baum, C., W. El-Tohamy, and N. Gruda. 2015. Increasing the productivity and product quality of vegetable crops using arbuscular mycorrhizal fungi: A review. Scientia Horticulturae 187:131–141. doi:10.1016/j.scienta.2015.03.002.
  • Bompadre, M. J., V. A. Silvani, L. F. Bidondo, M. D. Carmen, R. Molina, R. P. Colombo, A. G. Pardo, and A. Margarita Godeas. 2014. Arbuscular mycorrhizal fungi alleviate oxidative stress in pomegranate plants growing under different irrigation conditions. Botany 92:187–193. doi:10.1139/cjb-2013-0169.
  • Cardoso, I. M., and T. W. Kuyper. 2006. Mycorrhizas and tropical soil fertility. Agriculture Ecosystems & Environment 116 (1):72–84. doi:10.1016/j.agee.2006.03.011.
  • Chen, L., W. A. Warren, and J. G. Streeter. 2000. Production of aerobactin by microorganisms forms compost enrichment culture and soybean utilization. Journal of Plant Nutrition 23:2047–60. doi:10.1080/01904160009382164.
  • Cheng, Q., W. Ma, and Q. Cai. 2008. The relative importance of soil crust and slope angle in runoff and soil loss: A case study in the hilly areas of the Loess Plateau. North China. Geology Journal 71 (2–3):117–25.
  • Da Costa, J. C. D., P. Prasad, and R. J. Pagan. 2004. Modern environmental improvement pathways for the coal power generation industry in Australia. Process Safety and Environmental Protection 82:191–99. doi:10.1205/095758204323065957.
  • Dabkowska-Naskret, H. 2003. The role of organic matter in association with zinc in selected arable soils from Kujawy Region, Poland. Organic Geochemistry 34:645–649. doi:10.1016/S0146-6380(03)00019-6.
  • Dueck, T. A., A. Zuin, and J. Elderson. 1998. Influence of ammonia and ozone on growth and drought sensit ivity of (Pinus sylvestris(. Atmospheric Environment 32 (3):545–50. doi:10.1016/S1352-2310(97)00163-5.
  • Fernandez-Romero, L. 2005. Topography and land use change effects on the soil organic carbon stock of forest soils in Mediterranean natural areas. Agriculture, Ecosystem and Environment 195:1–9. doi:10.1016/j.agee.2014.05.015.
  • Gandomkar, A., and M. Kalbasi. 2006. Effect of compost leachate on growth and yield of corn, 5th Soil Science Iranian Congress, 7–16.
  • Gholamhoseini, M., A. Ghalavand, A. Dolatabadian, E. Jamshidi, and A. Khodaei-Joghan. 2013. Effects of arbuscular mycorrhizal inoculation on growth, yield, nutrient uptake and irrigation water productivity of sunflowers grown under drought stress. Agricultural Water Management 117:106–114. doi:10.1016/j.agwat.2012.11.007.
  • Ghorchiyani, M., A. Gh, H. A. Akbari, A. A. Alikhani, Dadi, and M. Zaree. 2011. Effect of Arbuscular mycorriza and Psedomonas flurescence on some growth characteristics of corn. Journal of Water and Soil Science 21 (1):97–114.
  • Habibzadeh, Y., A. R. Pirzad, M. R. Zardashti, J. Jalilian, and O. Eini. 2013. Effects of arbuscular mycorrhizal fungi on seed and protein yield under water-deficit stress in mung bean. Agronomy Journal 105. doi:10.2134/agronj2012.0069.
  • Haibin, L., and L. Zhenling. 2010. Recycling utilization patterns of coal mining waste in China. Resources, Conservation and Recycling 54:1331–40. doi:10.1016/j.resconrec.2010.05.005.
  • Haluschak, P. 2006. Laboratory methods of soil analysis, 3–133. Canada-Manitoba soil survey.
  • He, X., and K. Nara. 2007. Element biofortification: Can mycorrhizas potentially offer a more effective and sustainable pathway to curb human malnutrition? Trends of Plant Science 12 (8):331–33. doi:10.1016/j.tplants.2007.06.008.
  • Hemantaranjan, A. 1996. Advancements in Micronutrient Research. Jodhpur, India: Scientific Publishers.
  • Igwe, C. A. 2005. Soil physical properties under different management systems and organic matter effects on soil moisture along soil catena in southeastern Nigeria. Tropical and Subtropical Agro-Ecosystems 5:57–66.
  • Jafari, S., M. Chorom, N. Enayati-Zamir, and H. Motamedi. 2012. Study of the effect of Bacillus subtilis on some soil microbial indices in in different level of salinity. Journal of Agronomy and Crop Science 35 (2):13–18.
  • Jenkinson, D. S., and D. S. Powelson. 1976. The effect of biocidal treatments of metabolism in soil: A method for measuring soil biomass. Soil, Biology and Biochemistry 8:209–13. doi:10.1016/0038-0717(76)90005-5.
  • Koide, R. T. 1991. Nutrient supply, nutrient demand and plant response to mycorrhizal infection. New Phytology 117:365–86. doi:10.1111/j.1469-8137.1991.tb00001.x.
  • Kumar, K., and K. M. Goh. 2002. Management practices of antecedent leguminous and non–leguminous crop residues in relation to winter wheat yields, nitrogen uptake, soil nitrogen mineralization and simple nitrogen balance. European Journal of Agronomy 16:295–308. doi:10.1016/S1161-0301(01)00133-2.
  • Kwiatkowska, J., M. R. Provenzano, and N. Senesi. 2008. Long term effects of a brown coal-based amendment on the properties of soil humic acids. Geoderma 148:200–205. doi:10.1016/j.geoderma.2008.10.001.
  • Lazcano, C., F. H. Barrios-Masias, and E. J. Louise. 2014. Arbuscular mycorrhizal effects on plant water relations and soil greenhouse gas emissions under changing moisture regimes. Soil Biology and Biochemistry 74:184–192. doi:10.1016/j.soilbio.2014.03.010.
  • Lee, H., H. S. Ha, C. H. Lee, Y. B. Lee, and P. J. Kim. 2006. Fly ash effect on improving soil properties and rice productivity in Korean paddy soils. Bioresource Technology 97:1490–1497. doi:10.1016/j.biortech.2005.06.020.
  • Li-Ping, W., Q. Kui-Mei, H. Shi-Long, and F. Bo. 2009. Fertilizing reclamation of arbuscular mycorrhizal fungi on coal mine complex substrate. Procedia Earth and Planetary Science 1:1101–1106. doi:10.1016/j.proeps.2009.09.169.
  • Macilwain, C. 2004. Is organic farming better for the environment? Nat 428:797–98. doi:10.1038/428792a.
  • Maiksteniene, S., and A. Arlauskiene. 2004. Effect of preceding crops and green manure on the fertility of clay loam soil. Agronomy Research 2:1.87–97.
  • Mansfield, T. A., A. M. Hetherington, and C. J. Atkinson. 1990. Some current aspects of stomatal physiologi. Ann Rev Plant Physiol. Plant Molecular Biology 41:55–75. doi:10.1146/annurev.pp.41.060190.000415.
  • Mardani, A., M. Hodaji, and M. Afyouni. 2011. Effect of different levels of phosphorous and zinc on zinc concentration of corn leaf. First National Conference Modern Topic in Agriculture, 27–39.
  • Marschner, H., and B. Dell. 1994. Nutrient uptake in mycorrhizal symbiosis. Plant and Soil 159:89–102. doi:10.1007/BF00000098.
  • Matos, E. D. S., E. D. S. Mendonce, P. C. D. Lima, M. S. Coelho, R. F. Mateus, and I. M. Cardoso. 2008. Green manure in coffee system in the region of Zonada Mata, Minas Gerais: Characteristics and kinetics of carbon and nitrogen mineralization. Brazilian Journal of Soil Science 32:2027–35.
  • Mohamadi, Z., H. Roosta, A. Tajabadipour, and H. Hokmabadi. 2013. Effect of nitrogen, organic matter, potassium and iron on yield, quality and nutrient concentration of leaf in pistachio badami-zarandi cultivar. Horticultural Science 27 (2):117–29.
  • Mohammad, M. J., W. L. Pan, and A. C. Kennedy. 1991. Wheat responses to vesicular and arbuscular mycorrhizal fungi inoculation of soil from eroded top sequence. Soil Science Society of America Journal 59:1086. doi:10.2136/sssaj1995.03615995005900040020x.
  • Momeni, A., and A. Zinck. 1999. Data integration for assessing agricultural soil degradation in south central Iran. Proceeding of sixth international conference on the development of dry lands. 22-27 August. Cairo, Egypt.
  • Nhan, C. T., J. W. Graydon, and D. W. Kirk. 1996. Utilizing coal fly ash as a landfill barrier material. Waste Management 16:587–595. doi:10.1016/S0956-053X(96)00108-0.
  • Oehl, F., E. Sieverding, P. Mäder, D. Dubois, K. Ineichen, T. Boller, and A. Wiemken. 2004. Impact of long-term conventional and organic farming on the diversity of arbuscular mycorrhizal fungi. Oecologia 138:574–83. doi:10.1007/s00442-003-1458-2.
  • Omirou, M., A. Ioannides, and C. Ehaliotis. 2013. Mycorrhizal inoculation affects arbuscular mycorrhizal diversity in watermelon roots, but leads to improved colonization and plant response under water stress only. Applied Soil Ecology 63:112–119. doi:10.1016/j.apsoil.2012.09.013.
  • Parab, N., S. Mishra, and S. R. Bhonde. 2013. Mycorrhizal dependency, yield and biochemical parameters of onion in response to fly ash amendment with different biofertilizers. International Journal of Environmental Science 2 (1):34–41.
  • Parab, N., S. Sinha, and S. Mishra. 2015. Coal fly ash amendment in acidic field: Effect on soil microbial activity and onion yield. Applied Soil Ecology 96:211–216. doi:10.1016/j.apsoil.2015.08.007.
  • Pearson, J., and G. R. Stewart. 1993. The deposition of atmospheric ammonia and its effects on plants. New Phytologist 125 (2):283–305. doi:10.1111/nph.1993.125.issue-2.
  • Pinamonti, F. 1998. Compost mulch effects on soil fertility, nutritional status and performance of grapevine. Nutrient Cycling in Agroecosystems 51:239–48. doi:10.1023/A:1009701323580.
  • Pulleman, M., A. Jongmans, J. Marinissen, and J. Bouma. 2003. Effects of organic versus conventional arable farming on soil structure and organic matter dynamics in a marine loam in the Netherlands. Soil Use Management 19:157–65. doi:10.1079/SUM2003186.
  • Püschel, D., J. Rydlová, R. Sudová, M. Gryndler, and M. Vosátka. 2011. The potential of mycorrhizal inoculation and organic amendment to increase yields of Galega orientalis and Helianthus tuberosus in a spoil-bank substrate. Journal of Plant Nutrition and Soil Science 174:664–672. doi:10.1002/jpln.201000307.
  • Razavi-Tosi, E., and N. A. Karimiyan. 2003. Effect of compost on growth and chemical compounds of Tomato and nutrient concentration, salinity and heavy metals in soil, 3rd Conferences on Fertilizer and biological materials, 63 pp.
  • Shalikar, A., S. Ayobi, F. Khormali, and R. Ghorbani-Nasrabadi. 1999. Evaluation of Soil indices of soil quality in rotation with Oriza sativa. Journal of Agriculture and Natural Science 15 (6):17–25.
  • Sharma, A. K., and B. N. Johri. 2003. Arbscular mycorrhizaee, Intraction in plant. Rhizospher and Soil, 308. New Delhi, India: Oxford and IBH Publishing.
  • Sharma, A. R., and B. N. Mittra. 1988. Effect of green manuring and mineral fertilizer on growth and yield of crops in rice-based cropping system on acid lateritic soil. Journal of Agricultural Science 110:605–08. doi:10.1017/S0021859600082198.
  • Sidhu, A. S., and H. S. Sur. 1993. Effect of incorporation of legumes in straw on soil properties and crop yield in a Maize wheat sequence. Tropical Agriculture (Trinidad) 70:226–29.
  • Singh, A., A. Sarkar, and S. B. Agrawal. 2011. Assessing the potential impact of fly ash amendments on Indian paddy field with special emphasis on growth, yield, and grain quality of three rice cultivars. Environmental Monitoring and Assessment 184:4799–4814. doi:10.1007/s10661-011-2303-4.
  • Smith, S. E., and D. J. Read. 1997. Mycorrhizal symbiosis. Cambridge, UK: Academic.
  • Smith, S. E., and D. J. Read. 2008. Mycorrhizal Symbiosis, third ed. London, UK: Academic Press.
  • Sommer, S. G., and P. Dahl. 1999. Nutrient and carbon balance during the composting of deep litter. Journal of Agricultural Engineering Research 74 (2):145–53. doi:10.1006/jaer.1999.0446.
  • Sparks, D. L., A. L. Page, P. A. Helmke, R. H. Loeppert, P. N. Soltanpour, and M. A. Tabatabai. 2013. Methods of soil analysis, chemical methods. soil analysis. part 3. chemical methods. SSSA Publishing.
  • Subamanian, K. S., P. Santhanakrishnan, and P. Balasubramanian. 2006. Responses of field grown tomato plants to arbuscular mycorrhizal fungal colonization under varying intensities of drought stress. Scientia Horticulturae 107:24–253.
  • Talgre, L., E. Lauringson, H. Roostalu, and A. Astover. 2009. The effects of green manures on yields and yield quality of spring wheat. Agronomy Research 7 (1):125–32.
  • Ukwattage, N. L., P. G. Ranjith, and M. Bouazza. 2013. The use of coal combustion fly ash as a soil amendment in agricultural lands (with comments on its potential to improve food security and sequester carbon). Fuel 109 (400–408). doi:10.1016/j.fuel.2013.02.016.
  • Wade, M. K., and P. A. Sanchez. 1983. Mulching and green manure applications for continuous crop production in the Amazon Basin. Agronomy Journal 75:39–45. doi:10.2134/agronj1983.00021962007500010010x.
  • Zaree, M. 2008. Study on the micorrizha arbuscular diversity in heavy metal contaminated soil and phytoremediation efficiency, Ph.D. Thesis, Soil Science Department, University of Tehran.
  • Zhao, R., W. Guo, N. Bi, J. Guo, L. Wang, J. Zhao, and J. Zhang. 2015. Arbuscular mycorrhizal fungi affect the growth, nutrient uptake and water status of maize (Zea mays L.) grown in two types of coal mine spoils under drought stress. Applied Soil Ecology 88:41–49. doi:10.1016/j.apsoil.2014.11.016.

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.