DOI QR코드

DOI QR Code

Effect of Ferric and Ferrous Iron Irrigation on Brown-Colored Symptom of Leaf in Panax ginseng C. A. Meyer

산화철과 환원철이 인삼의 갈반형 황증 발생에 미치는 영향

  • Lee, Sung Woo (Ginseng Research Division, Department of Herbal Crop Research, NIHHS, RDA) ;
  • Park, Kee Choon (Ginseng Research Division, Department of Herbal Crop Research, NIHHS, RDA) ;
  • Lee, Seung Ho (Ginseng Research Division, Department of Herbal Crop Research, NIHHS, RDA) ;
  • Jang, In Bok (Ginseng Research Division, Department of Herbal Crop Research, NIHHS, RDA) ;
  • Park, Kyung Hoon (Ginseng Research Division, Department of Herbal Crop Research, NIHHS, RDA) ;
  • Kim, Mi Lan (Ginseng Research Division, Department of Herbal Crop Research, NIHHS, RDA) ;
  • Park, Jin Myeon (Horticultural and Herbal Crop Environment Division, NIHHS, RDA) ;
  • Kim, Ki Hong (Ginseng Research Division, Department of Herbal Crop Research, NIHHS, RDA)
  • 이성우 (농촌진흥청 국립원예특작과학원 인삼특작부) ;
  • 박기춘 (농촌진흥청 국립원예특작과학원 인삼특작부) ;
  • 이승호 (농촌진흥청 국립원예특작과학원 인삼특작부) ;
  • 장인복 (농촌진흥청 국립원예특작과학원 인삼특작부) ;
  • 박경훈 (농촌진흥청 국립원예특작과학원 인삼특작부) ;
  • 김미란 (농촌진흥청 국립원예특작과학원 인삼특작부) ;
  • 박진면 (농촌진흥청 국립원예특작과학원 원예특작환경과) ;
  • 김기홍 (농촌진흥청 국립원예특작과학원 인삼특작부)
  • Received : 2014.01.10
  • Accepted : 2014.01.23
  • Published : 2014.02.28

Abstract

To study the cause of physiological disorder in leaf of ginseng cultivated at paddy soil, the degree of brown-colored symptom (BCS) and the contents of inorganic matter in leaf were investigated by irrigating the solution of ferric and ferrous iron of 0.1 ~ 2.0%, and citric acid of 1.0 ~ 4.0% on bed soil, respectively. Ratio of BCS by variety was as high as 85.0% in Yoenpoong, while it was as low as 5.4%, 7.5% in Chunpoong and Hwangsook, respectively. The contents of inorganic matter of leaf in Yoenpoong were lower in $P_2O_5$, Ca, and Mg, while it were higher in K, Fe, and Mn than other variety. Iron solution caused BCS more distinctly when each ferric and ferrous iron were dissolved with 1.0% citric acid than when each iron was dissolved without citric acid. Ferric iron caused BCS more effectively than ferrous iron. BCS occurred in 4.0% citric acid was as same as 2.0% ferric iron mixed with 1.0% citric acid. Low $P_2O_5$ and high Fe content in leaf appeared in both of artificial and natural symptoms. We concluded that excessive Fe uptake caused BCS to leaf because the solubility of iron was increased in condition of low soil pH.

Keywords

References

  1. Farhoodi A and Coventry DR. (2008). Field crop responses to lime in the mid-north region of south Australia. Field Crops Research. 108:45-53. https://doi.org/10.1016/j.fcr.2008.02.013
  2. Hong YN. (2012). Introduction to plant physiology(4th Ed.). Worldscience. Seoul, Korea. p.71-73.
  3. Hyun DY, Yeon BY, Lee SW, Kang SW, Hyun GS, Kim YC, Lee KW and Kim SM. (2009). Analysis of occurrence type of physiological disorder to soil chemical components in ginseng cultivated field. Korean Journal of Crop Science. 17:439-444.
  4. Ishimaru Y, Suzuki M, Tsukamoto T, Suzuki K, Nakazono M, Kobayashi T, Wada Y, Watanabe S, Matsuhashi S, Takahashi M, Nakanishi H, Mori S and Nishizawa NK. (2006). Rice plants take up iron as an $Fe^{3+}$-phytosiderophore and as $Fe^{2+}$. Plant Journal. 45:335-346. https://doi.org/10.1111/j.1365-313X.2005.02624.x
  5. Kang SW, Lee SW, Hyun DY, Yeon BY, Kim YC and Kim YC. (2010). Studies on selection of adaptable varieties in paddy field of ginseng culture. Korean Journal of Medicinal Crop Science. 18:416-420.
  6. Kim SA and Guerinot ML. (2007). Mining iron: Iron uptake and transport in plants. Federation of European Biochemical Societies Letters. 581: 2273-2280. https://doi.org/10.1016/j.febslet.2007.04.043
  7. Lee SW, Kim GS, Hyun DY, Kim YB, Yeon BY, Kang SW and Kim YC. (2009a). Comparison of growth characteristics and ginsenoside contents of 3-year-old ginseng(Panax ginseng C. A. Meyer) by drainage class and shade material in paddy soil. Korean Journal of Crop Science. 54:390-396.
  8. Lee SW, Kim GS, Yeon BY, Hyun DY, Kim YB, Kang SW and Kim YC. (2009b). Comparison of growth characteristics and ginsenoside contents by drainage classes and varieties in 3-yearold ginseng(Panax ginseng C. A. Meyer). Korean Journal of Medicinal Crop Science. 17:346-351.
  9. Lee CY, Kim KY, Lee JE, Kim SH, Ryu DK, Choi JE and An GH. (2011). Enzymes hydrolyzing structural components and ferrous ion cause rusty-root symptom on ginseng(Panax ginseng). Journal of Microbiology and Biotechnology. 21:192-196. https://doi.org/10.4014/jmb.1008.08010
  10. Lee SW, Park JM, Kim GS, Park KC, Jang IB, Lee SH, Kang SW and Cha SW. (2012). Comparison of growth characteristics and ginsenosides content of 6-year-old ginseng(Panax ginseng C. A. Meyer) by drainage class in paddy field. Korean Journal of Medicinal Crop Science. 20:177-183. https://doi.org/10.7783/KJMCS.2012.20.3.177
  11. Lee SW, Park KC, Lee SH, Kim GS, Jang IB, Kim YB and Cha SW. (2013a). Growth characteristics and ginsenoside contents of 6-year-old ginseng(Panax ginseng) by shade materials in paddy field. Korean Journal of Medicinal Crop Science. 21:118-123. https://doi.org/10.7783/KJMCS.2013.21.2.118
  12. Lee SW, Park KC, Lee SH, Park JM, Jang IB and Kim KH. (2013b). Soil chemical property and leaf mineral nutrient of ginseng cultivated in paddy field occurring leaf discoloration. Korean Journal of Medicinal Crop Science. 21:289-295. https://doi.org/10.7783/KJMCS.2013.21.4.289
  13. Lee YH, Choi St, Lee ST, Hong KP, Song WD, Lee JH and Cho JS. (2010b). Changes in Fe, and Mn content and lime requirement based on soil pH testing in sweet persimmon fields. Korean Journal of Soil Science Fertilizer. 43:584-589.
  14. Olsen RA, Clark RB and Bennet JH. (1981). The enhancement of soil fertility by plant roots. American Scientist. 69:378-384.
  15. Ryu SH. (2000). Terminology dictionary for soil. Seoul National University. Seoul, Korea. p.336-337.
  16. Taiz L and Zeiger E. (2002). Plant physiology(3th Ed.). Sinauer Associates. Sunderland. MA, USA. p.70-72.
  17. Takahashi M, Nakanish H, Kawasaki S, Nishizawa NK and Mori S. (2001) Enhanced tolerance of rice to low iron availability in alkaline soils using barley nicotianamine aminotransferase genes. Nature Biotechnology. 19:466-469. https://doi.org/10.1038/88143
  18. Ward JT, Lahne RB, Yakubova E, Salt DE and Raghothama KG. (2008). The effect of iron on the primary root elongation of Arabidopsis during phosphate deficiency. Plant Physiology. 147:1181-1191. https://doi.org/10.1104/pp.108.118562

Cited by

  1. Effect of Application Level of Calcium Hydroxide on Brown-Leaf Symptom and Root Yield of Panax ginseng Cultivated in Paddy Soil vol.23, pp.2, 2015, https://doi.org/10.7783/KJMCS.2015.23.2.150
  2. Effect of Ridge Height on Growth Characteristics and Yield of 6 Year Old Panax ginseng in Cultivation of Paddy Soil vol.23, pp.5, 2015, https://doi.org/10.7783/KJMCS.2015.23.5.351
  3. Effect of Irrigation of Sulfur Solution before Sowing on Growth and Root Rot Disease of Seedling in Ginseng Nursery vol.22, pp.5, 2014, https://doi.org/10.7783/KJMCS.2014.22.5.391
  4. Optimal Harvesting Time of Ginseng Seeds and Effect of Gibberellic Acid (GA3) Treatment for improving Stratification Rate of Ginseng (Panax ginseng C. A. Meyer) Seeds vol.22, pp.6, 2014, https://doi.org/10.7783/KJMCS.2014.22.6.423
  5. Correlations between Soil Environment and Bioactive Constituents of Namdo Garlic Harvested in the Non-volcanic Ash Soil Distributed Western Jeju vol.23, pp.2, 2015, https://doi.org/10.7783/KJMCS.2015.23.2.125