387
Views
12
CrossRef citations to date
0
Altmetric
Articles

Effects of nitrogen, phosphorus, and potassium on SPAD-502 and atLEAF sensor readings of Salvia

, , &
Pages 1674-1683 | Received 17 May 2017, Accepted 07 Dec 2017, Published online: 15 May 2018

References

  • Anderson, D., D. Bullock, G. Johnson, and C. Taets. 1993. Evaluation of the Minolta SPAD meter for on farm N management of corn in Illinois. Fertilizer Conference Proceedings, Illinois, January 25–27.
  • Blackmer, T. M., and J. S. Schepers. 1995. Use of a chlorophyll meter to monitor nitrogen status and schedule fertigation for corn. Journal of Production Agriculture 8:56–60. doi:10.2134/jpa1995.0056.
  • Chapman, S. C., and H. J. Barreto. 1997. Using a chlorophyll meter to estimate specific leaf nitrogen of tropical maize during vegetative growth. Agronomy Journal 89:557–62. doi:10.2134/agronj1997.00021962008900040004x.
  • Chai, C. S., J. Lu, G. J. Cai, B. R. Mo, H. B. Yu, T. F. Zou, and Z. T. Wang. 2011. Effect of fertilizer, irrigation, and pinching on growth and development of Lavender. Pratacultural Science 28:1681–1684.
  • Dunn, B. L., and C. Goad. 2015. Effect of foliar nitrogen and optical sensor sampling method and location for determining ornamental cabbage fertility status. HortScience 50:74–77.
  • Dai, Y., Z. Shen, Y. Liu, L. Wang, D. Hannaway, and H. Lu. 2009. Effects of shade treatments on the photosynthetic capacity, chlorophyll fluorescence, and chlorophyll content of Tetrastigma hemsleyanum Diels et Gilg. Environmental and Experimental Botany 65:177–82. doi:10.1016/j.envexpbot.2008.12.008.
  • Fox, R. H., W. P. Piekielek, and K. M. Macneal. 1994. Using a chlorophyll meter to predict nitrogen fertilizer needs of winter wheat. Communications in Soil Science & Plant Analysis 25:171–81. doi:10.1080/00103629409369027.
  • Follett, R. H., R. F. Follett, and A. D. Halvorson. 1992. Use of a chlorophyll meter to evaluate the nitrogen status of dryland winter wheat. Communications in Soil Science & Plant Analysis 23 (7–8):687–97. doi:10.1080/00103629209368619.
  • Gibson, J. L., and B. E. Whipker. 2000. Revising the fertilization strategy for ornamental cabbage. North Carolina State University State Horticulture Research Series 143:1–4.
  • Gond, V., D. G. de Pury, F. Veroustraete, and R. Ceulemans. 1999. Seasonal variations in leaf area index, leaf chlorophyll, and water content; scaling-up to estimate fAPAR and carbon balance in a multilayer, multispecies temperate forest. Tree Physiology 19:673–79. doi:10.1093/treephys/19.10.673.
  • Himelrick, D. G., W. A. Dozier, Jr., C. W. Wood, and R. R. Sharpe. 1993. Determination of strawberry nitrogen status with SPAD chlorophyll meter. Advances in Strawberry Research 12:49–53.
  • Hawkins, J. A., J. E. Sawyer, D. W. Barker, and J. P. Lundvall. 2007. Using relative chlorophyll meter values to determine nitrogen application rates for corn. Agronomy Journal 99:1034–40. doi:10.2134/agronj2006.0309.
  • Jongschaap, R. E., and R. Booij. 2004. Spectral measurements at different spatial scales in potato: relating leaf, plant and canopy nitrogen status. International Journal of Applied Earth Observation and Geoinformation 5:205–18. doi:10.1016/j.jag.2004.03.002.
  • Lea-Cox, J. 2000. The role of environmental risk assessment in developing nutrient management plans for nursery and greenhouse operations. Proceedings from Southern Nurserymen's Association Research Conference 45:77–80.
  • Loh, F. C., J. C. Grabosky, and N. L. Bassuk. 2002. Using the SPAD 502 meter to assess chlorophyll and nitrogen content of benjamin fig and cottonwood leaves. HortTechnology 12:682–86.
  • Linder, S. 1980. Chlorophyll as an indicator of nitrogen status of coniferous seedlings. New Zealand Journal of Forestry Science 1:166–75.
  • Monje, O. A., and B. Bugbee. 1992. Inherent limitations of nondestructive chlorophyll meters: a comparison of two types of meters. HortScience 271:69–71.
  • Muñoz-Huerta, R. F., R. G. Guevara-Gonzalez, L. M. Contreras-Medina, I. Torres-Pacheco, J. Prado-Olivarez, and R. V. Ocampo-Velazquez. 2013. A review of methods for sensing the nitrogen status in plants: advantages, disadvantages and recent advances. Sensors 13:10823–43. doi:10.3390/s130810823.
  • Murdock, L., S. Jones, C. Bowley, P. Needham, J. James, and P. Howe. 1997. Using a chlorophyll meter to make nitrogen recommendations on wheat AGR-170. Cooperative extension services. Lexington: College of Agriculture, University of Kentucky.
  • Neilsen, D., E. J. Hogue, G. H. Neilsen, and P. Parchomchuk. 1995. Using SPAD-502 values to assess the nitrogen status of apple trees. HortScience 30:508–12.
  • Peng, S., F. Garcia, R. Laza, and K. G. Cassman. 1992. Leaf thickness affects the estimation of leaf N using a chlorophyll meter. International Rice Research Newsletter 17:19–20.
  • Peng, S., F. V. Garcia, R. C. Laza, A. L. Sanico, R. M. Visperas, and K. G. Cassman. 1996. Increased N-use efficiency using a chlorophyll meter on high-yielding irrigated rice. Field Crops Research 47:243–52. doi:10.1016/0378-4290(96)00018-4.
  • Peng, S., A. L. Sanico, F. V. Garcia, R. C. Laza, R. M. Visperas, J. P. Descalsota, and K. G. Cassman. 1999. Effect of leaf phosphorus and potassium concentration on chlorophyll meter reading in rice. Plant Production Science 2:227–31. doi:10.1626/pps.2.227.
  • Piekkielek, W. P., and R. H. Fox. 1992. Use of a chlorophyll meter to predict sidedress nitrogen. Agronomy Journal 84:59–65. doi:10.2134/agronj1992.00021962008400010013x.
  • Piekielek, W. P., R. H. Fox, J. D. Toth, and K. E. Macneal. 1995. Use of a chlorophyll meter at the early dent stage of corn to evaluate nitrogen sufficiency. Agronomy Journal 87:403–08. doi:10.2134/agronj1995.00021962008700030003x.
  • Papasavvas, A., V. Triantafyllidis, and G. Zervoudakis. 2008. Content in Beta vulgaris. Journal of Environmental Protection and Ecology 9:351–56.
  • Ristvey, A. G., J. D. Lea-Cox, and D. S. Ross. 2001. Nitrogen uptake, partitioning and loss in container-production systems. Proceedings Southern Nursery Association Research Conference 46:101–07.
  • Sibley, J. L., D. J. Eakes, C. H. Gilliam, G. J. Keever, W. A. Dozier, and D. G. Himelrick. 1996. Foliar SPAD-502 meter values, nitrogen levels, and extractable chlorophyll for red maple selections. HortScience 31:468–70.
  • Sanchez, R. A., A. J. Hall, N. Trapani, and R. C. De Hunau. 1983. Effects of water stress on the chlorophyll content, nitrogen level and photosynthesis of leaves of two maize genotypes. Photosynthesis Research 4:35–47. doi:10.1007/BF00041799.
  • Takebe, M., and T. Yoneyama. 1989. Measurement of leaf color scores and its implication to nitrogen nutrition of rice plants. Japan Agricultural Research Quarterly 23:86–93.
  • Tucker, M. 2004. Primary nutrients and plant growth. Essential Plant Nutrients. North Carolina: Department of Agriculture. 126.
  • Vågen, I. M., R. Moe, and E. Ronglan. 2003. Diurnal temperature alternations (DIF/drop) affect chlorophyll content and chlorophyll a/chlorophyll b ratio in Melissa officinalis L. and Ocimum basilicum L., but not in Viola × Wittrockiana Gams. Scientia Horticulturae 97:153–62. doi:10.1016/S0304-4238(02)00141-3.
  • Víg, R., L. Huzsvai, A. Dobos, and J. Nagy. 2012. Systematic measurement methods for the determination of the SPAD values of maize (Zea mays L.) canopy and potato (Solanum tuberosum L.). Communications in Soil Science and Plant Analysis 43:1684–93. doi:10.1080/00103624.2012.681740.
  • Wood, C. W., D. W. Reeves, and D. G. Himelrick. 1993. Relationships between chlorophyll meter readings and leaf chlorophyll concentration, N status, and crop yield: a review. Proceedings of the Agronomy Society of New Zealand 23:1–9.
  • Yang, H., J. Li, J. Yang, H. Wang, J. Zou, and J. He. 2014. Effects of nitrogen application rate and leaf age on the distribution pattern of leaf SPAD readings in the rice canopy. Public Library of Science One 9:e88421.
  • Yuan, Z., Q. Cao, K. Zhang, S. T. Ata-Ul-Karim, Y. Tian, Y. Zhu, W. Coa, and X. Liu. 2016. Optimal leaf positions for SPAD meter measurement in rice. Frontiers in Plant Science 7:719. doi:10.3389/fpls.2016.00719.
  • Zebarth, B. J., M. Younie, J. W. Paul, and S. Bittman. 2002. Evaluation of leaf chlorophyll index for making fertilizer nitrogen recommendations for silage corn in a high fertility environment. Communications in Soil Science and Plant Analysis 33:665–84. doi:10.1081/CSS-120003058.
  • Zhu, J., N. Tremblay, and Y. Liang. 2012. Comparing SPAD and atLEAF values for chlorophyll assessment in crop species. Canadian Journal of Soil Science 92:645–48. doi:10.4141/cjss2011-100.

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.