DOI QR코드

DOI QR Code

Classification of Garlic Germplasms Based on Agronomic Characteristics and Multivariative Analysis

마늘 유전자원의 작물학적 특성과 다변량 분석에 의한 품종군 분류

  • Lee, Jae Sun (Chungcheongbuk-do Agricultural Research & Extension Services) ;
  • Park, Young Uk (Chungcheongbuk-do Agricultural Research & Extension Services) ;
  • Jeong, Jae Hyun (Chungcheongbuk-do Agricultural Research & Extension Services) ;
  • Kwon, Young Hee (Chungcheongbuk-do Agricultural Research & Extension Services) ;
  • Chang, Who Bong (Chungcheongbuk-do Agricultural Research & Extension Services) ;
  • Lee, Hee Du (Chungcheongbuk-do Agricultural Research & Extension Services)
  • Received : 2020.07.25
  • Accepted : 2020.10.20
  • Published : 2021.02.01

Abstract

This research was conducted to investigate the genetic diversity and select useful accession with agronomic characteristics of garlic (Allium sativum L.). germplasms at Garlic Research Institute in Chungbuk Agricultural Research and Extension Service. Morphological diversity and relationships among 160 germplasms collected from 26 countries were assessed by methods of clustering and principal component analysis. Among 11 types of leaves and bulbs characteristics, emergence days of leaf showed the highest variation with coefficient of variation of 84.8%, and the bulb weight and the number of scales showed higher variability with 24.3%. Correlation analysis based on 11 quantitative traits showed that bulb weight and bulb length have very high positive correlation with bulb quantity. Plant height, leaf length, and number of leaves showed positive correlation with bulb weight as collections with better performance in growth produced large bulb with higher quality. The cluster analysis based on 5 principal components generated 6 clusters with an average distance of 1.6 among clusters. Domestic genetic resources were the largest with 36 species (22.5%) in group II.

본 연구는 국내·외 수집 유전자원의 작물학적 특성과 다변량 분석을 통한 품종군을 분석하여 고품질 마늘 품종육성의 기초 자료로 이용하고자 수행하였다. 마늘 수집 유전자원 160종에 대한 엽 특성 중에서 출현일수의 변이계수가 84.8%로 가장 높았고, 초장과 엽수의 변이계수는 10.1 ~ 10.2%로 다른 형질에 비해 변이가 적었다. 중국 유전자원은 출현일수가 다른 국가의 유전자원 보다 빠른 경향을 보였고, 엽 특성이 다른 국가보다 가장 양호하였다. 구의 특성 중에서 구중과 인편수가 각각 24.3%, 25.7%로 수집종간에 높은 변이를 보였고, 구고와 구경은 각각 7.5%, 11.1%로 수집종 간에서 변이차가 상대적으로 낮았다. 엽의 양적 형질 중에서 가장 양호한 생육을 보였던 중국 유전자원이 구 특성에서도 가장 우수하였다. 마늘의 12개 양적형질의 상관 분석에서 수량과 밀접히 관계하는 구중과 구경은 고도의 정의 상관관계(r = 9.0)를 보였다. 지상부의 초장, 엽초장 및 엽수가 구중과 정의 상관을 나타내어 지상부의 생육이 양호할수록 지하부의 생육도 양호하였다. 양적형질에 대하여 주성분 분석한 결과, 고유값1이상을 기준으로 상위 제 5주성분까지의 5개의 주성분으로 전체변이의 77.11%를 설명할 수 있었고, 제 1 ~ 5주성분까지의 주성분 점수를 이용하여 6개의 군집으로 분류되었다. II군집이 가장 많은 유전자원이 포함되었으며, 특히 국내 수집종 39자원 중에서 36자원이 포함되었다.

Keywords

References

  1. Baghalian, K., M.R. Naghavi, S.A. Ziai and H.N. Badi. 2006. Post-planting evaluation of morphological characters and allicin content in Iranian garlic (Allium sativum L.) ecotypes. Sci. Hortic. 107(4):405-410. https://doi.org/10.1016/j.scienta.2005.11.008
  2. Baghalian, K., S.A. Ziai, M.R. Naghavi, H.N. Badi and A. Khalichi. 2005. Evaluation of allicin content and botanical traits in Iranian garlic (Allium sativum L.) ecotypes. Sci. Hortic. 103(2):155-166. https://doi.org/10.1016/j.scienta.2004.07.001
  3. Camargo, A., R. Masuelli and J. Burba. 2005. Characterization of Argentine garlic cultivars for their allicin content. Acta Hort. 688:309-312. https://doi.org/10.17660/actahortic.2005.688.44
  4. Cheshmedhiev, I. 1973. A cytotaxonomic investigation of the cultivated Allium species in Bulgaria. Genetikai Selektsiya 6:283-294.
  5. Figliuolo, G., V. Candido, G. Logozzo, V. Miccoli and P.L. Spagnoletti-Zeuli. 2001. Genetic evaluation of cultivated garlic germplasm (Allium sativum L. and A. ampeloprasum L.). Euphytica 121:325-334. https://doi.org/10.1023/A:1012069532157
  6. Hwang, J.M. 1993. Genetic divergence and classification of garlic cultivars by multivariate analysis. J. Korean Soc. Hortic. Sci. 34(4):257-264 (in Korean).
  7. Hwang, J.M. 1994. Effects of seed garlic storage before seeding and soil temperature during winter on the growth and bulb development in garlic (Allium sativum L.). Bulletin of Institute of Agricultural Science and Technology 1:45-54 (in Korean).
  8. Hwang, J.M. and B.Y. Lee. 1990. Effect of temperature and humidity conditions on rooting and sprouting of garlic. J. Korean Soc. Hortic. Sci. 31:15-21 (in Korean).
  9. Jabbes, N., I. Arnault, J. Auger, B. Al Mohandes Dridi and C. Hannachi. 2012. Agro-morphological markers and organosulphur compounds to assess diversity in Tunisian garlic landraces. Sci. Hortic. 148:47-54. https://doi.org/10.1016/j.scienta.2012.08.013
  10. Janmohammadi, M., Z. Movahedi, and N. Sabaghnia. 2014. Multivariate statistical analysis of some traits of bread wheat for breeding under rainfed conditions. Journal of Agricultural Sciences Belgrade 59(1):1-14. https://doi.org/10.2298/JAS1401001J
  11. Kamenetsky, R., I.L. Shafir, M. Baizerman, F. Khassanov, C. Kik and H.D. Rabinowitch. 2004. Garlic (Allium sativum L.) and its wild relatives from Central Asia: evaluation for fertility potential. Acta Hort. 637:83-91. https://doi.org/10.17660/actahortic.2004.637.9
  12. Keim, P., W. Beavis, J. Schupp and R. Freetstone. 1992. Evaluation of soybean RFLP marker diversity in adapted germplasm. Theor. Appl. Genet. 85:205-212. https://doi.org/10.1007/bf00222861
  13. Lee, W.S. 1974. Studies on dormancy of Korean local garlics. J. Korean. Soc. Hort. Sci. 15:119-141 (in Korean).
  14. Mirzaei, R., H. Liaghati and A.M. Damghani. 2007. Evaluating yield quality and quantity of garlic as affected by different farming systems and garlic clones. Pak. J. Biol. Sci. 10(13):2219-2224. https://doi.org/10.3923/pjbs.2007.2219.2224
  15. Ogawa, T., N. Mori and N. Matsubara. 1975. The studies on the ecological distribution and bulbing habit of garlic plant. Bull. of Nagasaki Agri. and For. Exp. Stat. 3:9-15.
  16. Panse, R., P.K. Jain, A. Gupta and D.S. Sasode. 2013. Morphological variability and character association in diverse collection of garlic germplasm. Africa. J. Agric. Res. 8(23):2861-2869.
  17. Panthee, D.R., H.N. Regmi, P.P. Subedi, S. Bhattarai and J. Dhakal. 2006. Diversity analysis of garlic (Allium sativum L.) germplasms available in Nepal based on morphological characters. Genetic Resources and Crop Evolution 53:205-212. https://doi.org/10.1007/s10722-004-6690-z
  18. Pooler, M.R. and P.W. Simon. 1993. Characterization and classification of isozyme and morphological variation in a diverse collection of garlic clones. Euphytica 68:121-130. https://doi.org/10.1007/BF00024161
  19. Raju, P., P.K. Jain, G. Avneesh and D.S. Sasode. 2013. Morphological variability and character association in diverse collection of garlic germplasm. Africa. J. Agric. Res. 8(23):2861-2869.
  20. Rural Development Administration (RDA). 2014. Manual for agricultural investigation. RDA, Jeonju, Korea. p. 86 (in Korean).
  21. Wang, H., X. Li, D. Shen, Y. Oiu and J. Song. 2014. Diversity evaluation of morphological traits and allicin content in garlic (Allium sativum L.) from China. Euphytica 198:243-254. https://doi.org/10.1007/s10681-014-1097-1