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Physiological Characteristics of Zelkova serrata Street Trees in Goyang and Paju, South Korea

  • Songhee Lee (Department of Smart Farm, Kyungmin University) ;
  • Sora Lee (Forest Biomaterials Research Center, National Institute of Forest Science) ;
  • Seonghun Lee (Department of Forest Science, Sangji University) ;
  • Wonwoo Cho (Division of Garden and Plant Resources, Korea National Arboretum) ;
  • Su Young Woo (Department of Environmental Horticulture, University of Seoul) ;
  • Hoduck Kang (Department of Biological Environmental Science, Dongguk University) ;
  • Tae Kyung Yoon (Department of Forest Science, Sangji University)
  • 투고 : 2022.11.01
  • 심사 : 2023.02.23
  • 발행 : 2023.03.31

초록

Street trees have been incorporated into urban forests to regulate the microclimate and provide shade as well as provide aesthetic and environmental functions and to evaluate their physiological characteristics. Zelkova serrata is a major tree species that has been planted on various South Korean streets. We determined the physiological characteristics of Z. serrata in street trees of Goyang and Paju in Gyeonggi Province. According to survey sites, net CO2 assimilation rates was 13.9-16.4 µmol CO2 m-2s-1, chlorophyll fluorescence (Fv/Fm) was 0.80-0.82, and proline contents was showed 3.4-3.7 mg g-1 FW. The studied trees were assumed to be physiologically stressed, but it was found that Z. serrata was planted as street trees were not significantly stressed when compared to chlorophyll fluorescence responses and proline contents. In the future, the continuous monitoring system is needed to evaluate the physiological characteristics of urban trees.

키워드

과제정보

This work is supported by the Korea Agency for Infrastructure Technology Advancement (KAIA) grant funded by the Ministry of Land, Infrastructure, and Transport (Grant 22UMRG-C158194-03). The authors would like to express our thanks to Younghun Seo, Minhyeok Song (Sangji Universtiy) and Seungwoo Shin (Dongguk University) for field research.

참고문헌

  1. Arnon DI. 1949. Copper Enzymes in Isolated Chloroplasts. Polyphenoloxidase in Beta vulgaris. Plant Physiol 24: 1-15. https://doi.org/10.1104/pp.24.1.1
  2. Ashraf M. 2002. Salt Tolerance of Cotton: Some New Advances. Crit Rev Plant Sci 21: 1-30. https://doi.org/10.1080/0735-260291044160
  3. Bialecki MB, Fahey RT, Scharenbroch B. 2018. Variation in Urban Forest Productivity and Response to Extreme Drought Across a Large Metropolitan Region. Urban Ecosyst 21: 157-169. https://doi.org/10.1007/s11252-017-0692-z
  4. Chaudhary IJ, Rathore D. 2019. Dust pollution: Its Removal and Effect on Foliage Physiology of Urban Trees. Sustain Cities Soc 51: 101696.
  5. Cho SB, Lee HS, Lee JK, Park SH, Kim HD, Kwak MJ, Lee KA, Lim YJ, Woo SY. 2020. Air Pollution Tolerance Index (APTI) of Main Street Trees Following Ozone Exposure. J Korean Soc For Sci 109: 50-61.
  6. de Santana TA, Oliveira PS, Silva LD, Laviola BG, F. de Almeida AA, Gomes FP. 2015. Water Use Efficiency and Consumption in Different Brazilian Genotypes of Jatropha curcas L. Subjected to Soil Water Deficit. Biomass Bioenergy 75: 119-125. https://doi.org/10.1016/j.biombioe.2015.02.008
  7. Franck N, Vaast P. 2009 Limitation of Coffee Leaf Photosynthesis by Stomatal Conductance and Light Availability Under Different Shade Levels. Trees 23: 761-769. https://doi.org/10.1007/s00468-009-0318-z
  8. Hamerlynck E, Knapp AK. 1996. Photosynthetic and Stomatal Responses to High Temperature and Light in Two Oaks at the Western Limit of Their Range. Tree Physiol 16: 557-565. https://doi.org/10.1093/treephys/16.6.557
  9. Heschel MS, Donohue K, Hausmann N, Schmitt J. 2002. Population Differentiation and Natural Selection for Water-Use Efficiency in Impatiens capensis (Balsaminaceae). Int J Plant Sci 163: 907-912. https://doi.org/10.1086/342519
  10. Hwang DK, Kim DY. 2016. Assessment of Landscape Tree Vigor Using Cambial Electrical Resistance. Ecol Resil Infrastruct 3: 302-306. https://doi.org/10.17820/eri.2016.3.4.302
  11. Je SM, Kim SH. 2016. Effects of CaCl2 on Gas Exchange and Stomatal Responses in the Leaves of Prunus serrulata. J Korean For Soc 105: 303-308. https://doi.org/10.14578/jkfs.2016.105.3.303
  12. Jin EJ, Cho MG, Bae EJ, Park J, Lee KS, Choi MS. 2017. Physiological Responses to Drought Stress of Seven Evergreen Hardwood Species. J Korean For Soc 106: 397-407.
  13. Jo HK, Kim JY, Park HM. 2018. Carbon Storage and Uptake by Street Trees in Seoul. J For Environ Sci 34: 162-164.
  14. Kim HE, Song U. 2015. Eco-physiological Responses of Roadside Tree Species to Contamination of Soil with Lead. Ecol Resil Infrastruct 2: 237-246. https://doi.org/10.17820/eri.2015.2.3.237
  15. Kim IS, Lee JH. 2013. Geographic Variation of Seed Characteristics and 1-year-old Seedling Growth of Zelkova serrata. Korean J Agric For Meteorol 15: 234-244. https://doi.org/10.5532/KJAFM.2013.15.4.234
  16. Kim YJ, Yoo G. 2021. Suggested Key Variables for Assessment of Soil Quality in Urban Roadside Tree Systems. J Soils Sediments 21: 2130-2140. https://doi.org/10.1007/s11368-020-02827-5
  17. Korea Meteorological Administration. 2022. Weather Resources Database. https://www.weather.go.kr/. Accessed 4 Jan 2023.
  18. Kwak MJ, Lee J, Kim H, Park S, Lim Y, Kim JE, Baek SG, Seo SM, Kim KN, Woo SY. 2019. The Removal Efficiencies of Several Temperate Tree Species at Adsorbing Airborne Particulate Matter in Urban Forests and Roadsides. Forests 10: 960.
  19. Kycko M, Zagajewski B, Lavender S, Romanowska E, Zwijacz-Kozica M. 2018. The Impact of Tourist Traffic on the Condition and Cell Structures of Alpine Swards. Remote Sens 10: 220.
  20. Lee HJ, Choi KY, Chiang MH, Choi EY. 2022. Photosynthesis, Growth and Yield Characteristics of Peucedanum japonicum T. Grown under Aquaponics in a Plant Factory. J Bio-Environ Control 31: 67-76. https://doi.org/10.12791/KSBEC.2022.31.1.067
  21. Lee KC, Wang MH, Song JM. 2013. Physiological Responses Bupleurum latissimum Nakai, Endangered Plants to Changes in Light Environment. Prot Hortic Plant Fact 22: 154-161. https://doi.org/10.12791/KSBEC.2013.22.2.154
  22. Lee KC. 2018. Changes in Photosynthetic Performance and Water Relation Parameters in the Seedlings of Korean Dendropanax Subjected to Drought Stress. Korean J Med Crop Sci 26: 181-187. https://doi.org/10.7783/KJMCS.2018.26.2.181
  23. Lee KJ, Han SH, Kim GB, Kim TK. 1999. A Study on the Correlation between Ambient Ozone Concentration and Tree Health of Zelkova serrata Makino Street Trees in Seoul. Bull Seoul Natl Univ Arbor 19: 54-65.
  24. Lee SB, Choe HY, Jo HK, Yun YJ, Kil SH. 2021. The Effects of Street Tree's Vertical Structures on Thermal Comfort. J Korean Environ Res Technol 24: 15-29.
  25. Lee SH, Woo SY, Je SM. 2015. Effects of Elevated CO2 and Water Stress on Physiological Responses of Perilla frutescens var. japonica HARA. Plant Growth Regul 75: 427-434. https://doi.org/10.1007/s10725-014-0003-0
  26. Lichtenthaler HK. 1987. Chlorophyll Fluorescence Signatures of Leaves during the Autumnal Chlorophyll Breakdown. J Plant Physiol 131: 101-110. https://doi.org/10.1016/S0176-1617(87)80271-7
  27. Lim JH, Woo SY, Kwon MJ, Chun JH, Shin JH. 2006. Photosynthetic Capacity and Water Use Efficiency under Different Temperature Regimes on Healthy and Declining Korean Fir in Mt. Halla. J Korean For Soc 95: 705-710.
  28. Liu J, Zhu JK. 1997. Proline Accumulation and Salt-StressInduced Gene Expression in a Salt-Hypersensitive Mutant of Arabidopsis. Plant Physiol 114: 591-596. https://doi.org/10.1104/pp.114.2.591
  29. Manghwar H, Hussain A, Ali Q, Saleem MH, Abualreesh MH, Alatawi A, Ali S, Munis MFH. 2021. Disease Severity, Resistance Analysis, and Expression Profiling of Pathogenesiselated Protein Genes after the Inoculation of Fusarium equiseti in Wheat. Agronomy 11: 2124.
  30. Maxwell K, Johnson GN. 2000. Chlorophyll fluorescence--a practical guide. J Exp Bot 51: 659-668. https://doi.org/10.1093/jexbot/51.345.659
  31. Ministry of Environment. 2021. Monthly Report of Air Quality, July, 2021. Ministry of Environment, Sejong.
  32. Missanjo E, Ndalama E, Sikelo D, Kamanga-Thole G. 2015. Quarry Dust Emission Effects on Tree Species Diversity in Chongoni Forest Reserve and Vegetation Characteristics in Adjacent Villages, Dedza, Malawi. Int J Inf Res Rev 2: 511-515.
  33. Na SS, Sung JW, Che SH, Kang SK. 2019. Satisfaction Analysis According to Planting Status of Roadside Trees in Gumi. J Korean Inst For Recreat 23: 53-62. https://doi.org/10.34272/forest.2020.23.4.005
  34. Noh NJ, Kwon B, Yang AR, Cho MS. 2020. Effect of Planting Density on Early Growth Performances of Zelkova serrata Trees. J Korean Soc For Sci 109: 281-290.
  35. Oh S, Kim HC, Kang HS, Shin CH, Koh SC. 2020. Seasonal Change in the CO2 Fixation Rate and Water-Use Efficiency of Broad-leaved Tree Species on Jeju Island. J Environ Sci Int 29: 123-132. https://doi.org/10.5322/JESI.2020.29.2.123
  36. Park BJ, Lee CG, Jeong SS, Lim JE, Kim KR, Kim SC, Yang JE, Kim HS. 2021. Assessment of Heavy metal(loid)s Pollution in Urban Soil at Street Tree Planting Sites in Chuncheon. Korean J Soil Sci Fert 54: 78-86. https://doi.org/10.7745/KJSSF.2021.54.1.078
  37. Park EJ, Kang KY. 2010. Estimation of C Storage and Annual CO2 Uptake by Street Trees in Gyeonggi-do. Korean J Environ Ecol 24: 591-600.
  38. Park YM. 2006. Comparison of Tissue Water Relation Parameters in Three Gardening Tree Species. J Ecol Environ 29: 581-584. https://doi.org/10.5141/JEFB.2006.29.6.581
  39. Penuelas J, Filella I, Llusia J, Siscart D, Pinol J. 1998. Comparative Field Study of Spring and Summer Leaf Gas Exchange and Photobiology of the Mediterranean Trees Quercus ilex and Phillyrea latifolia. J Exp Bot 49: 229-238. https://doi.org/10.1093/jxb/49.319.229
  40. Petrova S, Velcheva I, Nikolov B, Vasileva T, Bivolarski V. 2022. Antioxidant Responses and Adaptation Mechanisms of Tilia tomentosa Moench, Fraxinus excelsior L. and Pinus nigra J. F. Arnold towards Urban Air Pollution. Forests 13: 1689.
  41. Purcarea C, Laslo V, Memete AR, Agud E, Miere F, Vicas SI. 2022. Antigenotoxic and Antimutagenic Potentials of Proline in Allium cepa Exposed to the Toxicity of Cadmium. Agriculture 12: 1568.
  42. Sonti NF, Hallett RA, Griffin KL, Trammell TLE, Sullivan JH. 2021. Chlorophyll Fluorescence Parameters, Leaf Traits and Foliar Chemistry of White Oak and Red Maple Trees in Urban Forest Patches. Tree Physiol 41: 269-279. https://doi.org/10.1093/treephys/tpaa121
  43. Strasser BJ, Strasser RJ. 1995. Measuring Fast Fluorescence Transients to Address Environmental Questions: The JIP-Test. In: Photosynthesis: From Light to Biosphere (Mathis P, ed). Kluwer Academic Publishers, Dordrecht, pp 977-980.
  44. Sung H. 2003. A Study on the Present Status of Urban Roadside Trees by Major Road types: Focusing on 7 Cities in Kyonggi Province. J Korea Plan Assoc 38: 245-257.
  45. Takahashi S, Murata N. 2008. How do Environmental Stresses Accelerate Photoinhibition? Trends Plant Sci 13: 178-182. https://doi.org/10.1016/j.tplants.2008.01.005
  46. Tattar TA, Blanchard RO. 1976. Electrophysiological Research in Plant Pathology. Annu Rev Phytopathol 14: 309-325. https://doi.org/10.1146/annurev.py.14.090176.001521
  47. Wunsche JN, Greer DH, Laing WA, Palmer JW. 2005. Physiological and Biochemical Leaf and Tree Responses to Crop Load in Apple. Tree Physiol 25: 1253-1263. https://doi.org/10.1093/treephys/25.10.1253
  48. Yoon TK. 2022. Urban Soil Carbon: Processes and Patterns. In: Soils in Urban Ecosystem (Rakshit A, Ghosh S, Vasenev V, Pathak H, Rajput VD, eds). Springer, Singapore, pp 65-100.
  49. Yoon TK, Park CW, Lee SJ, Ko S, Kim KN, Son Y, Lee KH, Oh S, Lee WK, Son Y. 2013. Allometric Equations for Estimating the Aboveground Volume of Five Common Urban Street Tree Species in Daegu, Korea. Urban For Urban Green 12: 344-349. https://doi.org/10.1016/j.ufug.2013.03.006