Have a personal or library account? Click to login
Effect of supplementary lighting on selected physiological parameters and yielding of tomato plants Cover

Effect of supplementary lighting on selected physiological parameters and yielding of tomato plants

Open Access
|Jan 2014

References

  1. Blain J., Gosselin A., Trudel M.J., 1987. Influence of HPS supplementary lighting on growth and yield of greenhouse cucumbers. HortSci. 22: 36-38.10.21273/HORTSCI.22.1.36
  2. Blom T.J., Ingratta F.J., 1984.The effect of high pressure sodium lighting on the production of tomatoes, cucumbers and roses. Acta Hort. 148: 905-914.10.17660/ActaHortic.1984.148.118
  3. Blom T.J., and Zheng Y., 2009. The response of plant growth and leaf gas exchange to the speed of lamp movement in greenhouse. Sci. Hort. 119: 188-192.10.1016/j.scienta.2008.07.014
  4. Dorias M., Gosselin A., Trudel M.J., 1991. Annual greenhouse tomato production under a sequential intercropping system using supplemental light. Sci. Hort. 45: 225-234.10.1016/0304-4238(91)90067-9
  5. Gunnlaugsson B., Adalsteinsson S., 2006. Interlight and plant density in year-round production of tomato at northern latitudes. Acta Hort. 711: 71-75.10.17660/ActaHortic.2006.711.6
  6. Fierro A., Tremb lay N., Gosselin A., 1994. Supplemental carbon dioxide and light improvement tomato and pepper seedling growth and yield. HortSci. 29: 152-154.10.21273/HORTSCI.29.3.152
  7. Hendriks J. 1992. Supplementary lighting for greenhouse. Acta Hort. 312: 65-76.10.17660/ActaHortic.1992.312.8
  8. Hernandez R., Kubota C., 2012. Tomato seedlings growth and morphological responses to supplemental LED lighting Red:Blue ratios under varied daily solar light intervals. Acta Hort. 956: 187-193.10.17660/ActaHortic.2012.956.19
  9. Hovi T., Nakkila J., Tahvonen R., 2004. Interlighting improves year-round cucumber production. Sci. Hort. 102: 283-294.10.1016/j.scienta.2004.04.003
  10. Hovi T., Nakkila J., Tahvonen R., 2006. Increasing productivity of sweet pepper with intracanopy lighting. Acta Hort. 711: 165-170.10.17660/ActaHortic.2006.711.19
  11. Hovi-Pekkanen T., Tahvonen R., 2008. Effects of intracanopy lighting on yield and external fruit quality in year-round cultivated cucumber. Sci. Hort. 116: 152-161.10.1016/j.scienta.2007.11.010
  12. Johkan M., Shoji K., Goto F., Hahida S., Yoshihara T., 2012. Effect of green light wavelength and intensity on photomorphogenesis and photosynthesis in Lactuca sativa. Environ. Exp. Bot. 75: 128-1313.10.1016/j.envexpbot.2011.08.010
  13. Karami E., Weaver J.B., 1972. Growth analysis of American upland cotton, Gossypium hirsutum L. with different leaf shapes and colours. Crop Sci. 12: 317-320.10.2135/cropsci1972.0011183X001200030018x
  14. Kim S., Hahn E., Heo J., Paek K., 2004. Effects of LEDs on net photosynthetic rate, growth and leaf stomatal of chrysanthemum plantlets in vitro. Sci. Hort. 101: 143-151.10.1016/j.scienta.2003.10.003
  15. Kopsell D.A., Kopsell D.E. 2008. Genetic and environmental factors affecting plant lutein/ zeaxantin. Agro Food Ind. Hi Tec. 19: 44-46.
  16. Li Q., Kubota Ch., 2009. Effects of supplemental light quality on growth and phytochemicals of baby leaf lettuce. Environ. Exp. Bot.: 1-27.10.1016/j.envexpbot.2009.06.011
  17. Masson J., Tremb lay N., Gosselin A., 1991. Nitrogen fertilization and HPS supplementary lighting influence vegetable transplant production. I. Transplant growth. J. Am. Soc. Hort. Sci. 116: 594-598.10.21273/JASHS.116.4.594
  18. Matsuda R., Ohashi-Kaneko K., Fujiwara K., Goto E., Kurata K. 2004. Photosynthetic characteristic of rice leaves grown under red light with or without supplemental blue light. Plant Cell Physiol. 45: 1870-1874.10.1093/pcp/pch203
  19. Mc Call D., 1992. Effect of supplementary light on tomato transplant growth, and the after-effects on yield. Sci. Hort. 51: 65-70.10.1016/0304-4238(92)90104-K
  20. Perez-Balibrea S., Moreno D.A., Garcia-Viguera C., 2008. Influence of light on health-promoting phytochemicals of broccoli sprouts. J. Sci. Food Agr. 88: 904-910.10.1002/jsfa.3169
  21. Pettai H., Oja V., Freiberg A., Laisk A., 2005. Photosynthetic activity of far-red light in green plants. Biochim. Biophys. Acta 1708: 311-321.10.1016/j.bbabio.2005.05.00515950173
  22. Pettersen R.I., Torre S., Gislerod H.R., 2010a. Effect of intracanopy lighting on photosynthetic characteristic in cucumber. Sci. Hort. 125: 77-81.10.1016/j.scienta.2010.02.006
  23. Pettersen R.I., Torre S., Gislerod H.R., 2010b. Effects of leaf aging and light duration on photosynthetic characteristics in a cucumber canopy. Sci. Hort. 125: 82-87.10.1016/j.scienta.2010.02.016
  24. Piszczek P., Głowacka B., 2005. Effect of light quality on growth of cucumber (Cucumis sativus L.) transplants. Veg. Crops Res. Bull. 63: 77-85
  25. Ralph P.J., Gademann R., 2005. Rapid light curves: A powerful tool to assess photosynthetic activity. Aquat. Bot. 82: 222-237.10.1016/j.aquabot.2005.02.006
  26. Raviv M., Blom T., 2001. The effect of water availability and quality of soilless-grown cut roses. Review. Sci. Hort. 88: 257-276.10.1016/S0304-4238(00)00239-9
  27. Tibbitts T., Cao W.W., Wheeler R.M.,1993. Growth of potatos for CELSS. Final Rapport NASA Coop. Agreement NCC: 2-301.
  28. Trouwborst G., Schapendonk H.C.M., Rappoldt K., Pot S., Hogewoning S.W., van Ieperen W., 2011. The effect of intracanopy lighting on cucumber fruit- Model analysis. Sci. Hort. 129: 273-278.10.1016/j.scienta.2011.03.042
  29. Vezina F., Trudel M.J., Gosselin A., 1991. Influence du mode d’utilisation de l’eclairage d’appoint sur la productivite et la physiologie de la tomate de serre. Can. J. Plant Sci. 71: 923-932.10.4141/cjps91-132
  30. Wang H., Gu M., Cui J., Shi K., Zhou Y., Yu J., 2009. Effect of light quality on CO2 assimilation, chlorophyll-fluorescence quenching, expression of Calvin cycle genes and carbohydrate accumulation in Cucumis sativus. J. Phytoch. Photobiol. B 96: 30-37.10.1016/j.jphotobiol.2009.03.01019410482
  31. Xiaoying L., Shirong G., Taotao C. Zhigang X., Tezuka T., 2012. Regulation of the growth and photosynthesis of cherry tomato seedlings by different light irradiations of light emitting diodes (LED). Afr. J. Biotechnol. 11(22): 6169-6177. 10.5897/AJB11.1191
DOI: https://doi.org/10.2478/fhort-2013-0017 | Journal eISSN: 2083-5965 | Journal ISSN: 0867-1761
Language: English
Page range: 153 - 159
Published on: Jan 22, 2014
Published by: Polish Society for Horticultural Sciences (PSHS)
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2014 Janina Gajc-Wolska, Katarzyna Kowalczyk, Agata Metera, Katarzyna Mazur, Dawid Bujalski, Lucyna Hemka, published by Polish Society for Horticultural Sciences (PSHS)
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.