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2020 Vol.29, Issue 4 Preview Page

Original Articles

30 October 2020. pp. 324-364
Abstract
References
1
Ache, P., D. Becker, R. Deeken, L. Dreyer, H. Weber, J. Fromm, and R. Hedrich. 2001. VFK1, a Vicia faba K+ channel involved in phloem unloading. The Plant Journal. 27:571-580.
10.1046/j.1365-313X.2001.t01-1-01116.x11576440
2
Acosta Motos, J.R., M.F. Ortuño, A. Bernal Vicente, P. Diaz Vivancos, M.J. Sanchez Blanco, and J.A. Hernandez. 2017. Plant responses to salt stress: adaptive mechanisms. Agronomy 7, p. 18.
10.3390/agronomy7010018
3
Agehara, S. and D.I. Leskovar. 2017. Growth suppression by exogenous abscisic acid and uniconazole for prolonged marketability of tomato transplants in commercial conditions. HortScience. 52:606-611.
10.21273/HORTSCI11518-16
4
Alem, P., P.A. Thomas, and M.W. van Iersel. 2015. Controlled water deficit as an alternative to plant growth retardants for regulation of poinsettia stem elongation. HortScience. 50:565-569.
10.21273/HORTSCI.50.4.565
5
Álvarez, S. and M. Sánchez‐Blanco. 2014. Long‐term effect of salinity on plant quality, water relations, photosynthetic parameters and ion distribution in Callistemon citrinus. Plant Biology. 16:757-764.
10.1111/plb.1210624118672
6
Anschütz, U., D. Becker, and S. Shabala. 2014. Going beyond nutrition: regulation of potassium homoeostasis as a common denominator of plant adaptive responses to environment. Journal of plant physiology.171:670-687.
10.1016/j.jplph.2014.01.00924635902
7
Cakmak, I. 2005. The role of potassium in alleviating detrimental effects of abiotic stresses in plants. Journal of Plant Nutrition and Soil Science. 168:521-530.
10.1002/jpln.200420485
8
Choi, J.M., J.W. Ahn, J.H. KU, and Y.B. Lee. 1997. Effect of medium composition of physical properties of soil and seedling growth of red-pepper in plug system. J. Kor. Soc. Hort. Sci. 38:618-624 (in Korean).
9
Erwin J.E. and R.D. Heins. 1995. Thermomorphogenic responses in stem and leaf development. HortScience. 30:940-949.
10.21273/HORTSCI.30.5.940
10
Fan, X.X., Z.G. Xu, X.Y. Liu, C.M. Tang, L.W. Wang, and X.I. Han. 2013. Effects of light intensity on the growth and leaf development of young tomato plants grown under a combination of red and blue light. Scientia horticulturae. 153:50-55.
10.1016/j.scienta.2013.01.017
11
FAO. 2019. World fertilizer trends and outlook to 2022. Rome. http://www.fao.org.
12
Gajdanowicz, P., E. Michard, M. Sandmann, M. Rocha, L.G.G. Corrêa, S.J. Ramírez-Aguilar, J.L. Gomez-Porras, W. González, J.B. Thibaud, and J.T. Van Dongen. 2011. Potassium (K+) gradients serve as a mobile energy source in plant vascular tissues. Proceedings of the National Academy of Sciences. 108:864-869.
10.1073/pnas.100977710821187374PMC3021027
13
Herrera, F., J. Castillo, A. Chica, and L.L. Bellido. 2008. Use of municipal solid waste compost (MSWC) as a growing medium in the nursery production of tomato plants. Bioresource technology. 99:287-296.
10.1016/j.biortech.2006.12.04217344043
14
Kafkafi, U. 1990. The functions of plant K in overcoming environmental stress situations. 22nd Colloquium, International Potash Institute, Switzerland. p. 81-93.
15
Kanai, S., J. Adu Gymfi, K. Lei, J. Ito, K. Ohkura, R.E. Moghaieb, H. El-Shemy, R. Mohapatra, P.K. Mohapatra, and H. Saneoka. 2008. N-deficiency damps out circadian rhythmic changes of stem diameter dynamics in tomato plant. Plant science. 174:183-191.
10.1016/j.plantsci.2007.11.006
16
Kim, I.S., C.H. Zhang, H.M. Kang, and M. Bruce. 2008. Control of stretching of cucumber and tomato plug seedlings using supplemental light . Hort. Environ. Biotechnol. 49: 287-292.
17
Latimer, J.G. and P.A. Thomas. 1991. Application of brushing for growth control of tomato transplants in a commercial setting HortTechnology. 1:109-110.
10.21273/HORTTECH.1.1.109
18
Liptay, A, P. Sikkema, and W. Fonteno. 1998. Transplant growth control through water deficit stress-a review. HortTechnology. 8:540-543.
10.21273/HORTTECH.8.4.540
19
Munns, R. and M. Tester. 2008, Mechanisms of salinity tolerance. Annu. Rev. Plant Biol. 59:651-681.
10.1146/annurev.arplant.59.032607.09291118444910
20
Negrão, S., S. Schmöckel, and M. Tester. 2017. Evaluating physiological responses of plants to salinity stress. Annals of botany. 119:1-11.
10.1093/aob/mcw19127707746PMC5218372
21
Wang, M., Q. Zheng, Q. Shen, and S. Guo. 2013, The critical role of potassium in plant stress response. International journal of molecular sciences. 14:7370-7390.
10.3390/ijms1404737023549270PMC3645691
22
Zörb, C., M. Senbayram, and E. Peiter. 2014. Potassium in agriculture-status and perspectives. Journal of plant physiology. 171:656-669.
10.1016/j.jplph.2013.08.00824140002
Information
  • Publisher :The Korean Society for Bio-Environment Control
  • Publisher(Ko) :(사)한국생물환경조절학회
  • Journal Title :Protected Horticulture and Plant Factory
  • Journal Title(Ko) :시설원예ㆍ식물공장
  • Volume : 29
  • No :4
  • Pages :324-364
  • Received Date : 2020-07-28
  • Revised Date : 2020-08-19
  • Accepted Date : 2020-08-21