1,889
Views
1
CrossRef citations to date
0
Altmetric
Research Articles

Phytoremediation efficacy of native vegetation for nutrients and heavy metals on soils amended with poultry litter and fertilizer

ORCID Icon, , , &

References

  • [AOAC] Association of Official Analytical Chemists 1984. Official methods of analysis. 14th ed. Washington (DC): AOAC. p. 249–252.
  • [SAS] Statistical Analysis System 2021. SAS 9.4 help and documentation. Cary (NC): SAS Institute Inc.
  • [US-EPA] United States -Environmental Protection Agency. 2022. National primary drinking water regulations. [accessed 2022 Dec 9]. https://www.epa.gov/ground-water-and-drinking-water/national-primary-drinking-water-regulations
  • [US-NRCS] United States-Natural Resources Conservation Service. 2014. Keys to soil taxonomy. Washington (DC): Government Printing Office.
  • Adamczyk-Szabela D, Wolf WM. 2022. The impact of soil pH on heavy metals uptake and photosynthesis efficiency in Melissa officinalis, Taraxacum officinalis, Ocimum basilicum. Molecules. 27(15):4671–4671. doi:10.3390/molecules27154671.
  • Antoniadis V, Shaheen SM, Stärk HJ, Wennrich R, Levizou E, Merbach I, Rinklebe J. 2021. Phytoremediation potential of twelve wild plant species for toxic elements in a contaminated soil. Environ Int. 146:106233. doi:10.1016/j.envint.2020.106233.
  • Bado VB, Bationo A. 2018. Integrated management of soil fertility and land resources in Sub-Saharan Africa: involving local communities. Adv Agronomy. 150:1–33. doi:10.1016/bs.agron.2018.02.001.
  • Baldantoni D, Morra L, Zaccardelli M, Alfani A. 2016. Cadmium accumulation in leaves of leafy vegetables. Ecotoxicol Environ Saf. 123:89–94. doi:10.1016/j.ecoenv.2015.05.019.
  • Bourret MM, Brummer JE, Leininger WC. 2009. Establishment and growth of two willow species in a riparian zone impacted by mine tailings. J Environ Qual. 38(2):693–701. doi:10.2134/jeq2008.0153.
  • Browne GT, Schneider SM, Trout TJ. 2004. Effects of pre-plant fallow and crop rotations on severity of Prunus replant disease. Phytopathology. 94:S11–S12.
  • Busby RR, Douglas TA, LeMonte JJ, Ringelberg DB, Indest KJ. 2020. Metal accumulation capacity in indigenous Alaska vegetation growing on military training lands. Int J Phytoremediation. 22(3):259–266. doi:10.1080/15226514.2019.1658708.
  • Campbell JW, Smithers C, Irvin A, Kimmel CB, Stanley-Stahr C, Daniels JC, Ellis JD. 2017. Trap nesting wasps and bees in agriculture: a comparison of sown wildflower and fallow plots in Florida. Insects. 8(4):107. doi:10.3390/insects8040107.
  • Cempel M, Nikel G. 2006. Nickel: a review of its sources and environmental toxicology. Pol J Environ Stud. 15:375–382.
  • Clemens S, Ma JF. 2016. Toxic heavy metal and metalloid accumulation in crop plants and foods. Annu Rev Plant Biol. 67:489–512. doi:10.1146/annurev-arplant-043015-112301.
  • Codling EE. 2019. Effects of phosphorus amended low phosphorus soil on soybean (Glycine max L.) and wheat (Titicum aestivum L.) yield and phosphorus uptake. J Plant Nutr. 42(8):891–899. doi:10.1080/01904167.2019.1589506.
  • Codling EE, Chaney RL, Mulchi CL. 2000. Use of aluminum‐and iron‐rich residues to immobilize phosphorus in poultry litter and litter‐amended soils. J Environ Qual. 29(6):1924–1931. doi:10.2134/jeq2000.00472425002900060027x.
  • Codling EE, Jaja N. 2022. Effects of amendments on soil chemical properties, alfalfa yield and nutrient uptake. J Plant Nutr. 45(1):33–48. doi:10.1080/01904167.2021.1943678.
  • Dao TH. 1999. Coamendments to modify phosphorus extractability and nitrogen/phosphorus ratio in feedlot manure and composted manure. J Environ Qual. 28(4):1114–1121. doi:10.2134/jeq1999.00472425002800040008x.
  • DeLaune PB, Moore PA, Jr, Carman DK, Sharpley AN, Haggard BE, Daniel TC. 2004. Development of a phosphorus index for pastures fertilized with poultry litter—factors affecting phosphorus runoff. J Environ Qual. 33(6):2183–2191. doi:10.2134/jeq2004.2183.
  • Ding J, Jiang X, Ma M, Zhou B, Guan D, Zhao B, Zhou J, Cao F, Li L, Li J. 2016. Effect of 35 years inorganic fertilizer and manure amendment on structure of bacterial and archaeal communities in black soil of northeast China. Appl. Soil Ecol. 105:187–195. doi:10.1016/j.apsoil.2016.04.010.
  • Dorner J. 2002. An introduction to using native plants in restoration projects. Bureau of Land Management. [accessed 2022 Dec 5]. https://www.ser-rrc.org/resource/an-introduction-to-using-native/https://www.fs.fed.us/wildflowers/Native_Plant_Materials/documents/intronatplant.pdf
  • Dou Z, Zhang GY, Stout WL, Toth JD, Ferguson JD. 2003. Efficacy of alum and coal combustion by-products in stabilizing manure phosphorus. J Environ Qual. 32(4):1490–1497. doi:10.2134/jeq2003.1490.
  • Dutta A, Patra A, Jatav HS, Jatav SS, Singh SK, Sathyanarayana E, Verma S, Singh P. 2020. Toxicity of cadmium in soil-plant-human continuum and its bioremediation techniques. In: Larramendy ML, Soloneski S, editors. Soil contamination - threats and sustainable solutions. IntechOpen. p. 59–80. doi:10.5772/intechopen.94307. London (UK): IntechOpen Limited.
  • Epstein E, Bloom AJ. 2005. Mineral nutrition of plants: principles and perspectives. 2nd ed. Sunderland (MA): Sinauer Associates.
  • Fasani E, Manara A, Martini F, Furini A, DalCorso G. 2018. The potential of genetic engineering of plants for the remediation of soils contaminated with heavy metals. Plant Cell Environ. 41(5):1201–1232. doi:10.1111/pce.12963.
  • Gaspar AP, Laboski CA, Naeve SL, Conley SP. 2017. Dry matter and nitrogen uptake, partitioning, and removal across a wide range of soybean seed yield levels. Crop Sci. 57(4):2170–2182. doi:10.2135/cropsci2016.05.0322.
  • Haider FU, Liqun C, Coulter JA, Cheema SA, Wu J, Zhang R, Wenjun M, Farooq M. 2021. Cadmium toxicity in plants: impacts and remediation strategies. Ecotoxicol Environ Saf. 211:111887. doi:10.1016/j.ecoenv.2020.111887.
  • Haque MM, Biswas JC, Islam MR, Islam A, Kabir MS. 2019. Effect of long-term chemical and organic fertilization on rice productivity, nutrient use-efficiency, and balance under a rice-fallow-rice system. J Plant Nutr. 42(20):2901–2914. doi:10.1080/01904167.2019.1659338.
  • Hatfield JL, Prueger JH. 2015. Temperature extremes: effect on plant growth and development. Weather Clim Extremes. 10:4–10. doi:10.1016/j.wace.2015.08.001.
  • Hauchhum R, Tripathi SK. 2020. Impact of rhizosphere microbes of three early colonizing annual plants on improving soil fertility during vegetation establishment under different fallow periods following shifting cultivation. Agric Res. 9(2):213–221. doi:10.1007/s40003-019-00422-w.
  • Ismael MA, Elyamine AM, Moussa MG, Cai M, Zhao X, Hu C. 2019. Cadmium in plants: uptake, toxicity, and its interactions with selenium fertilizers. Metallomics. 11(2):255–277. doi:10.1039/c8mt00247a.
  • Jaja N, Codling EE, Rutto LK, Timlin D, Reddy VR. 2022. Poultry litter and inorganic fertilization: effects on biomass yield, metal and nutrient concentration of three mixed-season perennial forages. Agronomy. 12(3):570. doi:10.3390/agronomy12030570.
  • Jenkinson DS. 1990. An introduction to the global nitrogen cycle. Soil Use Manag. 6(2):56–61. doi:10.1111/j.1475-2743.990.tb00800.x.
  • Jinadasa N, Collins D, Holford P, Milham PJ, Conroy JP. 2016. Reactions to cadmium stress in a cadmium-tolerant variety of cabbage (Brassica oleracea L.): is cadmium tolerance necessarily desirable in food crops? Environ Sci Pollut Res Int. 23(6):5296–5306. doi:10.1007/s11356-015-5779-6.
  • Karlen DL, Varvel GE, Bullock DG, Cruse RH. 1994. Crop rotations for the 21st century. Adv Agron. 53:1–45.
  • Kearney LJ, Dutilloy E, Rose TJ. 2019. Nitrogen fixation in summer-grown soybean crops and fate of fixed-N over a winter fallow in subtropical sugarcane systems. Soil Res. 57(8):845–850. doi:10.1071/SR19044.
  • Lawniczak AE, Zbierska J, Nowak B, Achtenberg K, Grześkowiak A, Kanas K. 2016. Impact of agriculture and land use on nitrate contamination in groundwater and running waters in central-west Poland. Environ Monit Assess. 188(3):1–17. doi:10.1007/s10661-016-5167-9.
  • Lovell ST, Dupraz C, Gold M, Jose S, Revord R, Stanek E, Wolz KJ. 2018. Temperate agroforestry research: considering multifunctional woody polycultures and the design of long-term field trials. Agroforest Syst. 92(5):1397–1415. doi:10.1007/s10457-017-0087-4.
  • Malhi SS, Johnston AM, Schoenau JJ, Wang ZL, Vera CL. 2006. Seasonal biomas acumulación and nutrient uptake of wheat, barley, and oat on a Black Chernozem soil in Saskatchewan. Can J Plant Sci. 86(4):1005–1014. doi:10.4141/P05-116.
  • Malhi SS, Sahota TS, Gill KS. 2012. Potential of management practices and amendments for preventing nutrient deficiencies in field crops under organic cropping systems. In: Bullar GS, Bhullar NK, editors. Agricultural sustainability: progress and prospects in crop research. Acadamic Press. p. 77. doi:10.1016/B978-0-12-404560-6.00005-8. Ontario (Canada): Canadian Science Publishing.
  • Markert B. 1989. Multi-element analysis in ecosystems: basic conditions for representative sampling of plant materials. Z Anal Chem. 335(6):562–565. doi:10.1007/BF00474249.
  • Matanzas N, Afif E, Día TE, Gallego JR. 2021. Phytoremediation potential of native herbaceous plant species growing on a paradigmatic brownfield site. Water Air Soil Pollut. 232:1–14. doi:10.1007/s11270-021-05234-9.
  • Nieder R, Benbi DK, Scherer HW. 2011. Fixation and defixation of ammonium in soils: a review. Biol Fertil Soils. 47(1):1–14. doi:10.1007/s00374-010-0506-4.
  • Nielsen DC, Calderón FJ. 2011. Fallow effects on soil. In: Hatfield JL, Sauer TJ, editors. Soil management: building a stable base for agriculture. Madison (WI): SSSA. p. 287–300. doi:10.2136/2011.soilmanagement.c19.
  • Oliveira BRM, De Almeida AAF, de Almeida Santos N, Pirovani CP. 2022. Tolerance strategies and factors that influence the cadmium uptake by cacao tree. Sci Hortic. 293:110733. doi:10.1016/j.scienta.2021.110733.
  • Partey ST, Zougmoré RB, Ouédraogo M, Thevathasan NV. 2017. Why promote improved fallows as a climate-smart agroforestry technology in sub-Saharan Africa? Sustainability. 9(11):1887. doi:10.3390/su9111887.
  • Read JJ. 2012. Spring nitrogen fertilization of ryegrass–bermudagrass for phytoremediation of phosphorus‐enriched soils. Agron J. 104(4):908–916. doi:10.2134/agronj2011.0385.
  • Rhoades JD. 1996. Salinity: electrical conductivity and total dissolved solids. In: Sparks DL, editor. Methods of soil analysis. Madison (WI): SSSA. p. 417–435.
  • Robertson GP, Harwood RR. 2013. Agriculture, sustainable. In: S. A. Levin, editor. Encyclopedia of biodiversity. 2nd ed. Academic Press. p. 111–118. ISBN 9780123847201. doi:10.1016/B978-0-12-384719-5.00287-2. ScienceDirect. Elsevier B.V.
  • Runck BC, Khoury CK, Ewing PM, Kantar M. 2020. The hidden land use cost of upscaling cover crops. Commun Biol. 3(1):1–4. doi:10.1038/s42003-020-1022-1.
  • Ryan J, Singh M, Pala M. 2008. Long-term cereal-based rotation trials in the Mediterranean Region: implications for cropping sustainability. Adv Agron. 97:273–319. doi:10.1016/S0065-2113(07)00007-7.
  • Salmani-Ghabeshi S, Fadic-Ruiz X, Miró-Rodríguez C, Pinilla-Gil E, Cereceda-Balic F. 2021. Trace element levels in native plant species around the industrial site of Puchuncaví-Ventanas (Central Chile): evaluation of the phytoremediation potential. Appl Sci. 11(2):713. doi:10.3390/app11020713.
  • Schmidt EL. 1982. Nitrification in soil. Nitr Agric Soils. 22:253–288. doi:10.2134/agronmonogr22.c7.
  • Schmidt R, Gravuer K, Bossange AV, Mitchell J, Scow K. 2018. Long-term use of cover crops and no-till shift soil microbial community life strategies in agricultural soil. PloS ONE. 13(2):e0192953. doi:10.1371/journal.pone.0192953.
  • Shaviv A, Mikkelsen RL. 1993. Controlled-release fertilizers to increase efficiency of nutrient use and minimize environmental degradation—a review. Nutr Cycl Agroecosyst. 35(1–2):1–12. doi:10.1007/BF00750215.
  • Shtangeeva I, Steinnes E, Lierhagen S. 2011. Macronutrients and trace elements in rye and wheat: similarities and differences in uptake and relationships between elements. Environ Exp Bot. 70(2–3):259–265. doi:10.1016/j.envexpbot.2010.09.013.
  • Solís-Domínguez FA, González-Chávez MC, Carrillo-González R, Rodríguez-Vázquez R. 2007. Accumulation and localization of cadmium in Echinochloa polystachya grown within a hydroponic system. J Hazard Mater. 141(3):630–636. doi:10.1016/j.jhazmat.2006.07.014.
  • Sparks DL. 1996. Mehlich III method. In: Sparks DL, editor. Methods of soil analysis. Madison (WI): SSSA. p. 739–768.
  • Steel RGD, Torrie JH. 1980. Duncan’s new multiple range test. Principles and procedures of statistic. New York: McGraw-Hill. p. 187–88.
  • Sterckeman T, Thomine S. 2020. Mechanisms of cadmium accumulation in plants. Crit Rev Plant Sci. 39(4):322–359. doi:10.1080/07352689.2020.1792179.
  • Stewart BA, Thapa S. 2016. Dryland farming: concept, origin and brief history. In: Farooq M, Siddique K, editors. Innovations in dryland agriculture. Springer, Cham. p. 3–29. doi:10.1007/978-3-319-47928-6.
  • Thomas GW. 1996. Soil pH and soil acidity. In: Sparks DL, editor. Methods of soil analysis. Madison (WI): SSSA. p. 475–490.
  • Tong X, He X, Duan H, Han L, Huang G. 2018. Evaluation of controlled release urea on the dynamics of nitrate, ammonium, and its nitrogen release in black soils of Northeast China. IJERPH. 15(1):119. doi:10.3390/ijerph15010119.
  • Vamerali T, Bandiera M, Mosca G. 2010. Field crops for phytoremediation of metal-contaminated land. A review. Environ Chem Lett. 8(1):1–17. doi:10.1007/s10311-009-0268-0.
  • Wang C, Amon B, Schulz K, Mehdi B. 2021. Factors that influence nitrous oxide emissions from agricultural soils as well as their representation in simulation models: a review. Agronomy. 11(4):770. doi:10.3390/agronomy11040770.
  • Yan A, Wang Y, Tan SN, Mohd Yusof ML, Ghosh S, Chen Z. 2020. Phytoremediation: a promising approach for revegetation of heavy metal-polluted land. Front Plant Sci. 11:359. doi:10.3389/fpls.2020.00359.
  • Yang S, Logan J, Coffey DL. 1995. Mathematical formulae for calculating the base temperature for growing degree days. Agric for Meteorol. 74(1–2):61–74. doi:10.1016/0168-1923(94)02185-M.
  • Yanqun Z, Yuan L, Jianjun C, Haiyan C, Li Q, Schvartz C. 2005. Hyper accumulation of Pb, Zn and Cd in herbaceous grown on lead-zinc mining area in Yunnan, China. Environ Int. 31(5):755–762. doi:10.1016/j.envint.2005.02.004.
  • Zhou G, Wang Q. 2018. A new nonlinear method for calculating growing degree days. Sci Rep. 8(1):10149. doi:10.1038/s41598-018-28392-z.