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http://dx.doi.org/10.7745/KJSSF.2014.47.6.571

Effects of Rapid Temperature Change on Growth Response and Yield of Garlic in Greenhouse with Thermostat Control System in Jeonnam Province  

Lee, Kyung Dong (Department of Oriental Medicine Materials, Dongshin University)
Publication Information
Korean Journal of Soil Science and Fertilizer / v.47, no.6, 2014 , pp. 571-578 More about this Journal
Abstract
The garlic cultivation area is moved by change of grown environment due to global warming. It is important to predict changes in cultivation area, quantity and quality of each crop. This study was carried out to estimate the yield and response of garlic growth by the rapid temperature changes in the greenhouse with thermostat control system. Seedlings of Namdo garlic were planted on September 27, 2012 and harvested on May 30, 2013. The used treatments for a rapid temperature change in March-April-May were T0 (control): $6.0-10.4-17.2^{\circ}C$, T1: $6.0-5.4(-5)-17.2^{\circ}C$, T2: $6.0-10.4-22.2(+5)^{\circ}C$ and T3: $6.0-5.4(-5)-22.2(+5)^{\circ}C$. Total dried weight per plant of garlic significantly increased by 5.0% for T2, but T1 and T3 decreased by 12.5 and 4.6%, respectively, compared to T0. Total yields of bulb within the temperature change as T2 and T0 increased significantly (p<0.05), as compared to T1. Decreasing temperature significantly (p<0.05) reduced plant height, SPAD reading, crude protein and fiber contents etc., as compared to T0 and T2. ABA contents gradually increased with time but IAA content rapidly decreased. Conclusively, growth and yield of garlic were more affected by decreased temperature than increased temperature at bulb development stage.
Keywords
Climate change; Garlic; Yield; Physiological response;
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Times Cited By KSCI : 13  (Citation Analysis)
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1 Ahn, Y.K., and M.K. Yoon. 2010. Effect of short day length and temperature control on garlic florogenesis. Kor. J. Hort. Sci. Technol. 28:180-185.
2 A.O.A.C. 1995. Official method of analysis of AOAC Intl. 16th ed. Method 991.43. Association of official analytical communities, Arlington, VA, USA.
3 Brewster, J.L. 1990. The influence of cultural and environmental factors on the time of maturity of bulb onion crops. Acta Hort. 267:289-296.
4 Chon, S.U., K.D. Lee, D.H. Lee, and B.G. Heo. 2014. Vulnerability evaluation of garlic productivity against climate change using CCGIS program at 232 cities and counties in Korea. J. Korean Soc. People Plants Environ. 17:219-227.   DOI
5 Heo, I.H., W.T. Kwon, Y.M. Chun, and S.H. Lee. 2006. The impact of temperature rising on the distribution of plant: in case of bamboos and garlics. J. Environ. Impact 15:67-78.
6 Hwang, J.M., and G.S. Tae. 2000. Changes of microclimates and garlic growth in outdoor by mulching and tunnel treatments. J. Kor. Soc. Hort. Sci. 41:27-30.
7 Jackson, S.D. 1999. Multiple signaling pathways control tuber induction in potato. Plant Physiol. 119:1-8.   DOI   ScienceOn
8 Jang, H.I., H.H. Seo, and S.J. Park. 2002. Strategy for fuji cultivation research under the changing climate. Korean J. Hort. Sci. Technol. 20:270-275.
9 Jeong, H., C. Kim, and D. Moon. 2014. An analysis of impacts of climate change on rice damage occurrence by insect pests and disease. Korean J. Environ. Agric. 33:52-56.   과학기술학회마을   DOI
10 Kato, T., K. Yamata, T. Haioka, S. Kawajaki, and A. Shoma. 1999. Vegetable encyclopedia 11. Onion, asparagus and Japanese angelica tress. 4th ed. p. 121-140. Rural Cult. Ass. Tokyo, Japan.
11 Kim, C.B, C.Y. Kim, M. Park, D.H. Lee, and J. Choi. 2000. Effect of chemical properties of cultivation soils on the plant growth and quality of garlic. Korean J. Soil Sci. Fert. 33:333-339.
12 Kim, D., S. Kim, K. Moon, and J.I. Yun. 2012. An outlook on cereal grains production in South Korea based on crop growth simulation under the RCP8.5 climate condition. Korean J. Agri. For. Meteorol. 14:132-141.   DOI   ScienceOn
13 Kim, Y.J., W.Y. Lee, and J.N. Kim. 2008. Sustainable development strategies to cope with climate change. J. Kor. Rural Eco. Inst. 43-44.
14 Lee, E., and J. Suh. 2009. Pyruvic acid and sugar contents according to bulb growth stage in onion. Korean J. Hort. Sci. Technol. 27:18-23.   과학기술학회마을
15 Kim, Y.W., S.Y. Hong, and M.W. Jang. 2011. Comparison between spatial interpolation methods of temperature data for garlic cultivation. J. Korean Soc. Agri. Eng. 53:1-7.   과학기술학회마을   DOI
16 Ledesma, A., S.B. Nunez, and J.A. Arguello. 1997. Bulbing physiology in garlic (Allium sativum L.). Characterization of ontogenic stages by shoot growth dynamics and its relation to bulbing. Acta Hort. 433:405-416.
17 Lee, G., Y. Chang, and K. Park. 2012. Comparative analysis on concentration and uptake amount of mineral nutrients in different growth stages and temperatures of Panax ginseng C.A.Meyer grown with hydroponic culture. Korean J. Medicinal Crop Sci. 20:251-258.   과학기술학회마을   DOI   ScienceOn
18 Lee, J.J. and H.J. Lee. 2011. Physicochemical composition of baked garlic. Korean J. Food Preserv. 18:575-583.   과학기술학회마을   DOI
19 Lee, T., J.Y. Choi, S.H. Yoo, S.H. Lee, and Y.G. Oh. 2012. Analyzing consumptive use of water and yields of paddy rice by climate change. J. Korean Soc. Agri. Eng. 54:47-54.   과학기술학회마을   DOI
20 Nam, S.S., I.H. Choi, S.K. Bae, and J.K. Bang. 2007. Effect of irrigation level on plant growth and bulb yield during bulb development stage of garlic plants. Kor. J. Hort. Sci. Technol. 25:169-173.   과학기술학회마을
21 Park, Y., and B. Lee. 1992. Effect of storage temperature on changes in carbohydrate and endogenous hormones in garlic bulbs. J. Kor. Soc. Hort. Sci. 33:442-451.
22 Sakano, K. 1981. Regulation of aspartatekinase isoenzyme levels in cultured cells of Vinca rosea. Plant Cell Physiol. 14: 1343-1353.
23 RDA (Rural Development Administration, Korea). 1995. Standard investigation methods for agricultural experiment, pp. 601, RDA, Suwon, Korea.
24 RDA (Rural Development Administration). 2001. Garlic culture. Suwon, Korea.
25 RDA (Rural Development Administration). 1988. Methods of soil chemical analysis. National Institute of Agricultural Science and Technology, RDA, Suwon, Korea.
26 Shin, D., H. Seog, J. Kim, and Y. Lee. 1999. Flavor composition of garlic from different area. Korean J. Food Sci. Technol. 31:293-300.   과학기술학회마을
27 Shin, J.H., J.C. Ju, O.C. Kwen, S.M. Yang, S.J. Lee, and N.J. Sung. 2004. Physicochemical and physiological activities of garlic from different area. Kor. J. food nut. 17:237-245.   과학기술학회마을
28 Shin, S.L., and W.S. Lee. 1988. Effect of low temperature treatment of seed bulb and planting date on plant growth and yield in garlic. Agric. Res. Bull. Kyungpook Natl. Univ. 6:49-69.   과학기술학회마을
29 Sohn, E., Y. Kim, S. Jang, J. Kim, H. Lee, D. Seo, and I. Lee. 2011. Changes in gibberellin, abscisic acid, jasmonic acid and sugar contents during bulb development and secondary growth period in the southern type of garlic (Allium sativum L.). Korean J. Hort. Sci. Technol. 29:279-287.   과학기술학회마을
30 Steer, B.T. 1980. The bulbing response to day-length and temperature of some Australasion cultivars of onion (Allium cepa L.). Aust. J. Agric Res. 31:511-518.   DOI
31 Yang, J., J. Zhang, Z. Wang, Q. Zhu, and W. Wang. 2001. Hormonal changes in the grains of rice subjected to water stress during grain filling. Plant Physiol. 127:315-323.   DOI   ScienceOn
32 Tae, G.S., and J.M. Hwang. 2000. Changes of microclimates and response of garlic growth by supplemental lighting and tunnel in the plastic film house. J. Kor. Soc. Hort. Sci. 41:589-592.
33 Yamazaki, H., T. Nishijima, and M. Koshioka. 1995. Changes in abscisic acid content and water status in bulbs of Allium wakegi Araki throughout the year. J. Japan. Soc. Hort. Sci. 64:589-598.   DOI
34 Yamazaki, H., T. Nishijima, M. Koshioka, and H. Miura. 2002. Gibberellins do not act against abscisic acid in the regulation of bulb dormancy of Allium wakegi Araki. Plant Growth Regul. 36:223-229.   DOI   ScienceOn