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2022 Vol.55, Issue 4 Preview Page

Original research article

30 November 2022. pp. 380-389
Abstract
References
1
Abdulla, I. and M.S. Smith. 1963. Influence of chelating agents on the concentration of some nutrients for plants growing in soil under acid and under alkaline conditions. J. Sci. Food Agric. 14:98-109. 10.1002/jsfa.2740140206
2
Bergmann, W. 1993. Nutritional disorders of plants. Gustav Fischer Verlag, Jena-Stuttgart, Germany.
3
Brady, N.C. and R.P. Weil. 2008. The nature and properties of soils (14th ed.). Prentice Hall, Upper Saddle River, New Jersey, USA.
4
Chen, H. and T. Cutright. 2001. EDTA and HEDTA effects on Cd, Cr, and Ni uptake by Helianthus annuus. Chemosphere 45:21-28. 10.1016/S0045-6535(01)00031-511572587
5
Cho, H.J., E.H. Han, D.C. An, J.H. Kwon, and J.Y. Heo. 2021. Comparison of conventional and recommemded rate of fertilizer for major crops under greenhouse condition in Gyeongnam. p. 127. In Proceedings of the Conference of the Korean Society of Soil Sciences and Fertilizer, Buan, Korea.
6
Epeldea, L., J. Hernández-Allica, J.M. Becerrilb, F. Blancoa, and C. Garbisua. 2008. Effects of chelates on plants and soil microbial community: Comparison of EDTA and EDDS for lead phytoextraction. Sci. Total Environ. 401:21-28. 10.1016/j.scitotenv.2008.03.02418499230
7
Goodfellow, M., A.M. Brown, J. Cai, J. Chu, and M.D. Collins. 1997. Amycolatopsis japonicum sp. nov., an actinomycete producing (S,S)-ethylenediamine-N,N’-disuccinic acid. Syst. Appl. Microbiol. 20:78-84. 10.1016/S0723-2020(97)80051-3
8
Heo, J.Y., H.J. Cho, E.H. Han, D.C. Ahn, Y.H. Lee, and J.H. Kwon. 2021. Effect of biochar application on improvement of soil environment. Annual Research Report of Gyeongnam Agricultural Research and Extension Services, Jinju, Korea.
9
Hovsepyan, A. and S. Greipsson. 2005. EDTA-enhanced phytoremediation of lead contaminated soil by corn. J. Plant Nutr. 28:2037-2048. 10.1080/01904160500311151
10
Jeffreys, R.A. and A. Wallace. 1968. Detection of iron ethylenediamine di(o-hydroxylacetate) in plant tissue. Agron. J. 60(6):613-616. 10.2134/agronj1968.00021962006000060008x
11
Jun, H.S., W.C. Park, and J.S. Jung. 2002. Effects of soil addition and subsoil plowing on the change of soil chemical properties and the reduction of root-knot nematode in continuous cropping field of oriental melon (Cucumis melo L.). Korean J. Environ. Agric. 21(1):1-6. 10.5338/KJEA.2002.21.1.001
12
Kim, M.S. 2014. Assessment of critical concentration of phosphate adsorption-precipitation and phytoavailability of residual phosphate. Ph.D. Thesis, Kangwon National University, Chuncheon, Korea.
13
Kim, M.S., M.Y. Rho, N.J. Gang, Y.I. Gang, and K.H. Han. 2013. Development of control techniques for soil salts by fertigation and electrokinetic remediation technology. p. 59-81. Annual Report of Rural Development Administration, Jeonju, Korea.
14
Kim, M.S., Y.H. Kim, C.H. Lee, S.J. Park, B.G. Ko, S.G. Yun, and B.K. Hyun. 2015. Effects of DTPA application on growth of red pepper (Capsicum annuum L.) and chemical properties of nutrient accumulated soil in plastic film house. Korean J. Soil Sci. Fert. 48(4):312-317. 10.7745/KJSSF.2015.48.4.312
15
Kim, M.S., Y.H. Kim, M.Y. Roh, S.S. Kang, H.B. Yoon, and H.Y. Lee. 2012. Effect of chelating agents on the growth of Chinese cabbage and availability of nutrients in plastic film house soils. Korean J. Soil Sci. Fert. 45(6):1-6. 10.7745/KJSSF.2012.45.6.949
16
Kim, Y.S., K.H. Kim, J.W. Han, T.G. Jeong, M.J. Kim, and I.J. Kim. 2022. Effect of rice hull biochar application on watermelon growth and soil physico-chemical properties under greenhouse. Korean J. Soil Sci. Fert. 55(3):175-184. 10.7745/KJSSF.2022.55.3.175
17
Kim, Y.S., K.H. Kim, T.G. Jeong, J.W. Han, I.J. Kim, Y.H. Kim, Y.H. Kim, and Y.S. Song. 2021. Effect of cultivation of ratation crops on soil physico-chemical properties and yield of watermelon in greenhouse. Korean J. Soil Sci. Fert. 54(2):193-203. 10.7745/KJSSF.2021.54.2.193
18
Lee, C.K., K.W. Seo, G.J. Lee, S.U. Choi, B.K. Ahn, M.S. Ahn, D.S. Seo, and S.I. Yoon. 2019. Nutrient uptake and growth of watermelons in DTPA-treated saline soil in a plastic film greenhouse. Hortic. Sci. Technol. 37(1):32-41. 10.12972/kjhst.20190004
19
Lee, J.L., S.I. Kwon, Y.U. Yun, and S.H. Choi. 2020. Monitoring the amount of fertilizer used for facility cultivation fields in Chungnam. p. 59. In Proceeding of the Conference of the Korean Society of Soil Sciences and Fertilizer, Muju, Korea.
20
Lee, S.T., M.K. Kim, Y.H. Lee, Y.S. Kim, and Y.B. Kim. 2011. Analysis of Fe-deficient inducing enzyme and required time for recovery of nutritional disorder by Fe-DTPA treatment in the Fe-deficient induced tomato cultivars. Korean J. Soil Sci. Fert. 44(5):767-772. 10.7745/KJSSF.2011.44.5.767
21
Lee, Y.H., M.S. Yang, and H.D. Yun. 1996. Effect of plant-growth-promoting-bacteria inoculation on the growth and yield of red pepper (Capsicum annuum L.) with different soil electrical conductivity level. Korean J. Soil Sci. Fert. 29:396-402.
22
Lindsay, W.L. and W.A. Norvell. 1969. Equilibrium relationships of Zn2+, Fe3+, Ca2+, and H+ with EDTA and DTPA in soils. Soil Sci. Soc. Am. J. 33:62-68. 10.2136/sssaj1969.03615995003300010020x
23
Lindsay, W.L. and W.A. Norvell. 1978. Development of a DTPA soil test for zinc, iron, manganese, and copper. Soil Sci. Soc. Am. J. 42:421-428. 10.2136/sssaj1978.03615995004200030009x
24
Lombi, E., F.J. Zhao, S.P. McGrath, S.D. Young, and G.A. Sacchi. 2001. Physiological evidence for a high-affinity cadmium transporter highly expressed in a Thlaspi caerulescens ecotype. New Phytol. 149:53-60. 10.1046/j.1469-8137.2001.00003.x33853240
25
Means, J.L., T. Kucak, and D. Crerar. 1980. Relative degradation rates of NTA, EDTA and DTPA and environmental implications. Environ. Pollut. B 1(1):45-60. 10.1016/0143-148X(80)90020-8
26
Meers, E., A. Ryttebsm, M.J. Hopgood, D. Samson, and F.M.G. Tack. 2005. Comparison of EDTA and EDDS as potential soil amendments for enhanced phytoextraction of heavy metal. Chemosphere 58:1011-1022. 10.1016/j.chemosphere.2004.09.04715664609
27
Meers, E., M. Hopgood, E. Lesage, P. Vervaeke, F.M.G. Tack, and M.G. Verloo. 2004. Enhanced phytoextraction: In search of EDTA alternatives. Int. J. Phytorem. 6:95-110. 10.1080/1622651049045477715328977
28
NAAS. 2010. Methods of soil analysis. National Institute of Agricultural Science, RDA, Suwon, Korea.
29
NAS. 2019. Fertilizer recommendation for crops (4th revision). National Institute of Agricultural Science, RDA, Wanju, Korea.
30
NAS. 2021. Monitoring project on agri-environment quality in Korea for 22 years. National Institute of Agricultural Science, RDA, Wanju, Korea.
31
NAS. 2022. Environmental improvement of salt-accumulated soil and farm-scale application of alternative resources for oilcake. National Institute of Agricultural Science, RDA, Wanju, Korea.
32
Neugschandtner, R.W., P. Tlustoš, J. Száková, M. Komárek, and L. Jakoubková. 2017. Monitoring of mobilization and uptake of nutrients in response to EDTA additions to a contaminated agricultural soil. Environ. Eng. Manage. J. 26(11):2475-2483. 10.30638/eemj.2017.256
33
NIAST. 2000. Methods of soil and plant analysis. National Institute of Agricultural Science and Technology, RDA, Suwon, Korea.
34
Nishikiori, T., A. Okuyama, T. Naganawa, Takita, M. Hamada, T. Takeuchi, T. Aoyagi, and H. Umezawa. 1984. Production by actinomycetes of (S,S)-ethylenediamine-N,N’-disuccinic acid an inhibitor of phospholipidase C. J. Antibiot. 37:426-427. 10.7164/antibiotics.37.4266327594
35
Nowack, B., I. Schwyzer, and R. Schulin. 2008. Uptake of Zn and Fe by wheat (Triticum aestivum var. Greina) and transfer to the grains in the presence of chelating agents (ethylenediaminedisuccinic acid and ethylenediaminetetraacetic acid). J. Agric. Food Chem. 56:4643-4649. 10.1021/jf800041b18512939
36
Oh, S.E., J.S. Son, Y.S. Ok, and J.H. Joo. 2010. A modified methodology of salt removal through flooding and drainage in a plastic film house soil. Korean J. Soil Sci. Fert. 43(5):443-449.
37
Peacock, A.D., M.D. Mullen, D.B. Ringelberg, D.D. Tyler, D.B. Hedrick, P.M. Gale, and D.C. White. 2001. Soil microbial community responses to dairy manure or ammonium nitrate applications. Soil Biol. Biochem. 33:1011-1019. 10.1016/S0038-0717(01)00004-9
38
Ruley, A.T., N.C. Sharma, S.V. Sahi, S.R. Singh, and K.S. Sajwan. 2006. Effects of lead and chelators on growth, photosynthetic activity and Pb uptake in Sesbania drummondii grown in soil. Environ. Pollut. 144:11-18. 10.1016/j.envpol.2006.01.01616522347
39
Safari Sinegani, A.A. and F. Khalilikhah. 2008. Phytoextraction of lead by Helianthus annuus: Effect of mobilizing agent application time. Plant Soil Environ. 54:434-440. 10.17221/400-PSE
40
Schowanek, D., T.C.J. Feijtel, C.M. Perkins, F.A. Hartman, T.W. Federele, and R.J. Larson. 1997. Biodegradation of [S,S], [R,R] and mixed stereoisomers of ethylene diamine disuccininc acid (EDDS) a transition metal chelator. Chemosphere 34:2375-2391. 10.1016/S0045-6535(97)00082-99192467
41
Suh, J.S., J.S. Kwon, and H.J. Noh. 2010. Effect of the long-term application of organic matters on microbial diversity in upland soils. Korean J. Soil Sci. Fert. 43(6):987-994.
42
Tuntiwiwut, S.N. 1982. Effects of chelating agents on plant growth. Ph.D. Thesis, Washington State University, Washington, D.C., USA.
43
Vassil, A.D., Y. Kapulnik, I. Raskin, and D.E. Salt. 1998. The role of EDTA in lead transport and accumulation by Indian mustard. Plant Physiol. 117:447-453. 10.1104/pp.117.2.4479625697PMC34964
44
Weinstein, L.H., W.R. Robbins, and H.F. Perkins. 1954. Chelating agents and plant nutrition. Science 129:41-43. 10.1126/science.120.3106.4117843199
45
Yang, S.K., Y.W. Seo, Y.S. Lee, H.W. Kim, K.C. Ma, K.H. Lim, H.J. Kim, J.G. Kim, and W.J. Jung. 2011. Effects of green manure crops on red-pepper yields and soil physico-chemical properties in the vinyl house. Korean J. Org. Agric. 19(2):215-228.
Information
  • Publisher :Korean Society of Soil Science and Fertilizer
  • Publisher(Ko) :한국토양비료학회
  • Journal Title :Korean Journal of Soil Science and Fertilizer
  • Journal Title(Ko) :한국토양비료학회 학회지
  • Volume : 55
  • No :4
  • Pages :380-389
  • Received Date : 2022-10-11
  • Revised Date : 2022-11-26
  • Accepted Date : 2022-11-28