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Research Articles

Phosphorus fertilization affects cation balance in cool-season grasses associated with grass tetany

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Pages 2838-2849 | Received 13 Aug 2021, Accepted 03 Nov 2021, Published online: 29 Mar 2022

References

  • Asay, K. H., H. F. Mayland, and D. H. Clark. 1996. Response to selection for reduced grass tetany potential in crested wheatgrass. Crop Science 36 (4):895–900. doi: 10.2135/cropsci1996.0011183X0036000400013x.
  • Aydin, I., and F. Uzun. 2008. Potential decrease of grass tetany risk in rangelands combining N and K fertilization with MgO treatments. European Journal of Agronomy 29 (1):33–7. doi: 10.1016/j.eja.2008.02.003.
  • Claassen, A. S., and W. J. Folscher. 1988. The influence of different P, NH/and N03 - supply levels on the yield and P and Ca relationships in wheat. South African Journal Plant and Soil 5:127–30.
  • Duvick, D. N. 2005. The contribution of breeding to yield advances in maize (Zea mays L.). Advances in Agronomy 86:83–145.
  • Fageria, V. D. 2001. Nutrient interaction in crop plants. Journal of Plant Nutrition 24 (8):1269–90. doi: 10.1081/PLN-100106981.
  • Fontenot, J. P. 1979. Animal nutrition aspects of grass tetany. In Grass tetany, eds. V. V. Rendig and D. L. Grunes, 51–62. Madison, WI: ASA Spec. Pub. 35.
  • Frei, O. M. 2000. Changes in yield physiology of corn as a result of breeding in northern Europe. Maydica 45:173–83.
  • Greene, L. W., J. F. Baker, and P. F. Hardt. 1989. Use of animal breeds and breeding to overcome the incidence of grass tetany. Journal of Animal Science 67 (12):3463–9. doi: 10.2527/jas1989.67123463x.
  • Grunes, D. L., P. R. Stout, and J. R. Brownell. 1970. Grass tetany of ruminants. Advances in Agronomy 22:331–74.
  • Grunes, D. L., and R. M. Welch. 1989. Plant contents of magnesium, calcium and potassium in relation to ruminant nutrition. Journal of Animal Science 67 (12):3485–94. doi: 10.2527/jas1989.67123485x.
  • Hallmark, W. B., and S. A. Barber. 1984. Root growth and morphology of early growth of soybeans as affected by soil P and K. Agronomy Journal 76 (2):209–12. doi: 10.2134/agronj1984.00021962007600020010x.
  • Hides, D. H., and T. A. Thomas. 1981. Variation in the magnesium content of grasses and its improvement by selection. Journal of the Science of Food Agriculture 32:990–1.
  • Hoagland, D. R., and D. I. Arnon. 1950. The water culture method for growing plants without soil. In California Agricultural Experimental Station Circular, vol. 347, 2nd ed., 1–32. Berkeley: University of California.
  • Horst, W. J., C. Currle, and A. H. Wissemeier. 1992. Differences in calcium efficiency between cowpea (Vigna unguiculata (L.) Walp.) cultivars. Plant and Soil 146 (12):45–54. doi: 10.1007/BF00011994.
  • Hutton, J. T., and K. Norrish. 1977. Plant analyses by x-ray spectrometry. II Elements of atomic number greater than 20. X-Ray Spectrometry 6 (1):12–7. doi: 10.1002/xrs.1300060105.
  • Jefferson, P. G., H. F. Mayland, K. H. Asay, and J. D. Berdahl. 2001. Variation in mineral concentration and grass tetany potential among Russian wildrye accessions. Crop Science 41 (2):543–8. doi: 10.2135/cropsci2001.412543x.
  • Jerri, L. H., E. M. William, and A. R. Melissa. 2019. Phosphorus improves leaf nutrient concentrations in wheat, oat, and cereal rye. Agrosystems, Geosciences and Environment 2:1–6.
  • Kang, J., D. Hesterberg, and D. L. Osmond. 2009. Soil organic matter effects on phosphorus sorption: A path analysis. Soil Science Society of America Journal 73 (2):360–6. doi: 10.2136/sssaj2008.0113.
  • Kemp, A., and M. L. T'Hart. 1957. Grass tetany in grazing milk cow. Netherlands Journal of Agricultural Science 5 (1):4–17. doi: 10.18174/njas.v5i1.17745.
  • Kumssa, D. B., J. A. Lovatt, N. S. Graham, S. Palmer, R. Hayden, L. Wilson, S. D. Young, R. M. Lark, B. Penrose, E. L. Ander, et al. 2020. Magnesium biofortification of Italian ryegrass (Lolium multiflorum L.) via agronomy and breeding as a potential way to reduce grass tetany in grazing ruminants. Plant and Soil 457 (1):25–41. doi: 10.1007/s11104-019-04337-x.
  • Leamy, M. L. 1984. International Committee on the Classification of Andisols (ICOMAND) Circular letter No. 6. , Lower Hutt, Wellington, New Zealand: New Zealand Soil Bureau, DSIR.
  • Lee, E. A., and M. Tollenaar. 2007. Physiological basis of successful breeding strategies for maize grain yield. Crop Science 47:S-202–15. doi: 10.2135/cropsci2007.04.0010IPBS.
  • Littledike, E. T., J. A. Stuedemann, S. R. Wilkinson, and R. L. Horst. Jr. 1983. Grass Tetany Syndrome. In Role of magnesium in animal nutrition, eds. J. P. Fontenot, G. E. Bunce, K., E. Webb, and V. G. Allen, 173–95. Blacksburg, VA: Virginia Polytechnic Inst. and State University.
  • Mayland, H. F. 1988. Grass tetany. In The ruminant animals: Its nutrition and physiology, ed. D. C. Church, 511–31. Englewood Cliffs, New Jersey: Prentice-Hall Publ.
  • Mayland, H. F., and D. A. Sleper. 1993. Developing a tall fescue for reduced grass tetany risk. Proceedings of XVII International Grassland Congress, Palmerston North, New Zealand, and Australia, vol. 17, pp. 1095–1096.
  • Mayland, H. F., and D. L. Grunes. 1984. Controlling Grass Tetany. Leaflet No. 561, ID 8334, 1-8, Ithaca, NY: USDA-ARS extension Service.
  • Mayland, H. F., and K. H. Asay. 1989. Genetic variability of Mg, Ca, and K in crested wheatgrass. Journal of Range Management 42 (2):109–13. doi: 10.2307/3899305.
  • Moseley, G., and D. H. Baker. 1991. The efficacy of a high magnesium grass cultivar in controlling hypomagnesaemia in grazing animals. Grass and Forage Science 46 (4):375–80. doi: 10.1111/j.1365-2494.1991.tb02397.x.
  • Norrish, K., and J. T. Hutton. 1977. Plant analyses by x-ray spectrometry. I. Low atomic number elements, sodium to calcium. X-Ray Spectrometry 6 (1):6–11. doi: 10.1002/xrs.1300060104.
  • NZ Dairy Board. 1957. Annual report: New Zealand Dairy Board. 33rd Annual Report and Statement of Accounts for Period of 12 Months ended 31st July 1957. 141. Wellington, New Zealand.
  • Ohno, T., and D. L. Grunes. 1985. Potassium-magnesium interactions affecting nutrient uptake by wheat forage. Soil Science Society of America Journal 49 (3):685–90. doi: 10.2136/sssaj1985.03615995004900030032x.
  • Penrose, B., J. A. Lovatt, S. Palmer, R. Thomson, and M. R. Broadley. 2020. Revisiting variation in leaf magnesium concentrations in forage grasses for improved animal health. Plant and Soil 457 (12):43–55. doi: 10.1007/s11104-020-04716-9.
  • Rahman, M. H., and S. Saiga. 2005. Endophytic fungi (Neotyphodium coenophialum) affect the growth and mineral uptake, transport, and efficiency ratios in tall fescue (Festuca arundinacea). Plant and Soil 272 (12):163–17. doi: 10.1007/s11104-004-4682-6.
  • Rahman, M. H., and S. Saiga. 2006. Genetic variability in tetany potential of orchradgrass as influenced by application of dairy manure and chemical fertilizer. International Journal of Soil Science 2 (1):29–39. doi: 10.3923/ijss.2007.29.39.
  • Rahman, M. H., T. H. Khan, A. Tanaka, and M. Ito. 1998. Properties of some selected soils in northeast Honshu Islands of Japan. Thai Journal Agricultural Science 31:31–46.
  • Rahman, M. H., W. H. Allister, G. M. Alan, and J. S. Steven. 2010. Carbon sequestration in kiwifruit soils of New Zealand. 19th World Congress of Soil Science, Soil Solutions for a Changing World, Brisbane, Australia, August 1–6.
  • Reinbott, T. M., and D. G. Blevins. 1991. Phosphate interaction with uptake and leaf concentrations of magnesium, calcium, and potassium in winter wheat seedlings. Agronomy Journal 83 (6):1043–6. doi: 10.2134/agronj1991.00021962008300060021x.
  • Reinbott, T. M., and D. G. Blevins. 1994. Phosphorus and temperature effects on magnesium, calcium, and potassium in wheat and tall fescue leaves. Agronomy Journal 86 (3):523–9. doi: 10.2134/agronj1994.00021962008600030013x.
  • Reinbott, T. M., and D. G. Blevins. 1997. Phosphorus and magnesium fertilization interaction with soil phosphorus level: Tall fescue yield and mineral element content. Journal of Production Agriculture 10 (2):260–5. doi: 10.2134/jpa1997.0260.
  • Reneau, R. B., G. D. Jones, and J. Friedericks. 1983. Effect of P and K on yield and chemical composition of forage sorghum. Agronomy Journal 75 (1):5–8. doi: 10.2134/agronj1983.00021962007500010002x.
  • Sabreen, S., and S. Saiga. 2004. Potassium level suitable for screening high magnesium containing grass seedlings under solution culture. Journal of Plant Nutrition 27 (6):1015–27. doi: 10.1081/PLN-120037533.
  • Sabreen, S., S. Saiga, H. Saitoh, M. Tsuiki, and H. F. Mayland. 2003. Performance of high-Mg cultivars of three cool-season grasses in nutrient solution culture. Journal of Plant Nutrition 28:589–605.
  • Sabreen, S., S. Saiga, M. Tsuiki, and H. F. Mayland. 2002. Mineral uptake of high-Mg cultivars of Italian ryegrass and tall fescue grown under different level of potassium. Proceedings of Japanese Grassland Science Meeting, Fukuoka, Japan, vol. 6, pp. 314–315, September 21–23.
  • Sackett, D., P. Holmes, K. Abbott, S. Jephcott, and M. Barber. 2006. Assessing the economic cost of endemic disease on the profitability of Australian beef cattle and sheep producers. Project code: AHW.087 ISBN: 1741910021. Meat Livestock Australia Limited.
  • Saiga, S. 1997. Possibility of livestock poisoning caused by endophyte. The Dairy Situation 57:14–21.
  • Saiga, S., H. Saitoh, S. Sabreen, and M. Tsuiki. 2002. Effectiveness of nutrient solution culture for detecting genetic variability in Mg concentration of orchardgrass (Dactylis glomerata L.). Grassland Science 48:209–15.
  • Sjollema, B., and L. Seekles. 1929. On the nature and therapy of grass staggers (Translation published as Sjollema, B. in 1930). The Veterinary Record 10:425–31, 50,·54.
  • Sleper, D. A., K. P. Vogel, K. H. Asay, and H. F. Mayland. 1989. Using plant breeding and genetics to overcome the incidence of grass tetany. Journal of Animal Science 67 (12):3456–62. doi: 10.2527/jas1989.67123456x.
  • Tomas, F. M., and B. J. Potter. 1976. The site of magnesium absorption from the ruminant stomach. British Journal of Nutrition 36 (1):37–45. doi: 10.1079/BJN19760056.
  • Whitaker, D. A. 1983. Hypomagnesaemia in dairy cattle. Outlook on Agriculture 12 (2):77–82. doi: 10.1177/003072708301200205.

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