Genotype x environment interaction, stability analysis for yield and quality traits in turmeric (Curcuma longa L.)
الموضوعات :Ritu Mishra 1 , Anil K. Gupta 2 , Raj Kishori Lal 3
1 - Division of Genetics and Plant Breeding, CSIR-Central Institute of Medicinal and Aromatic Plants, Lucknow-226015 (U.P.) India
2 - Division of Genetics and Plant Breeding, CSIR-Central Institute of Medicinal and Aromatic Plants, Lucknow-226015 (U.P.) India|Academy of Scientific and Innovative Research (AcSIR), CSIR-Human Resource Development Centre Campus, Ghaziabad-201002 (U.P.) India
3 - Division of Genetics and Plant Breeding, CSIR-Central Institute of Medicinal and Aromatic Plants, Lucknow-226015 (U.P.) India
الکلمات المفتاحية: Stability parameter, <i>Curcuma longa </i>L, Genotype x environment interaction, variability, Turmeric,
ملخص المقالة :
Genotype x environment interaction and stability were analyzed through Eberhart and Russell model among seventeen accessions/germplasms of turmeric (Curcuma longa L.) during three environments/years. For rhizome yield the mean performance over three environments showed that yield ranged from 241.41 q/ha (CIMCH14127) to 579.67 q/ha (CIMCH14229). Six genotypes namely CIMCH14107, CIMCH14171, CIMCH14165, CIMCH14130, CIMCH14208 and CIMCH14229 had significantly higher mean for rhizome yield as compared to the general mean. Among seventeen genotypes, five genotypes had more than 1 regression coefficient, while eight genotypes had less than 1 regression coefficient and four genotypes showed bi=1. For CIMCH14101, CIMCH14144, CIMCH14159, CIMCH14190, CIMCH14152, CIMCH14123 and CIMCH14164 S2di was significant. The stability parameters for rhizome yield revealed that CIMCH14171 and CIMCH14229 were stable for all environments. Three genotypes viz., CIMCH14107, CIMCH14130 and CIMCH14208 genotypes were suitable for unfavorable environments having mean values, bi
Ashraf, K., Sultan, S., 2017. A comprehensive review on Curcuma longa Linn.: Phytochemical, pharmacological, and molecular study. Int. J. Green Pharm. 11(4), S672.
Burton, G.W., de Vane, E.W., 1953. Estimating heritability in tall fescue (Festuca arundinacea) from replicated clonal materials. Agric. J. 45, 178-181.
Dewey, D.R., Lu, K.H., 1959. A correlation and path-coefficient analysis of components of crested wheatgrass seed production. Agron. J. 51, 515-518.
Dhanalakshmi, K., Chitra, K., Manimekalai, R., Balisasikumar, C., Karthikeyani K., Vijayakumari, 2018. Production and Economics of Turmeric Cultivation. Int. J. Curr. Microbiol. App. Sci. 7(11), 3496-3502. doi: https://doi.org/10.20546/ijcmas.2018.711.399.
Dyab, A.K., Yones, D.A., Ibraheim, Z.Z., Hassan, T.M., 2016. Anti-giardial therapeutic potential of dichloromethane extracts of Zingiber officinale and Curcuma longa in vitro and in vivo. Parasitol. Res. 115(7), 2637-2645.
Eberhart, S.A. and Russell, W.A., 1966. Stability parameters for comparing varieties. Crop Sci.6, 36-40.
Ghasemi Pirbalouti, A., Malekpoor, F., Salimi, A., 2017. Chemical composition and yield of essential oil from two Iranian species of basil (Ocimum ciliatum and Ocimum basilicum). Trends Phytochem. Res. 1(1), 3-8.
Gupta, A.K. Mishra, R. Lal, R.K., 2015. Genetic resources, diversity, characterization and utilization of agronomical traits in turmeric (Curcuma longa L.). Ind. Crops Prod. 77, 708-712.
Gupta, V.P., Khera, A.S., Bains, B.S., 1977. Concepts in stability analysis. In: Genetic and Wheat Improvement, Gupta, A.K. (ed.) Oxford and ISH Publishing Co., New Delhi.
Hazara, P., Roy, A., Sandopadhyay, A., 2000. Growth characters as rhizome yield components of turmeric (Curcuma longa L.). Crop Res. J.19(2), 235-240.
Inafuku, M., 1996. Ukon (rhizome of Curcuma longa) for preparation of food. Japanese Patent Jpn. Kokai Tokkyo Koho JP 08,214,825 (96,214,825). (CA. Vol 125/1996, 274339a).
Indiresh, K.M., Uthaiah, B.C., Reddy, M.J., Rao, B., 1992. Genetic variability and heritability studies in turmeric (Curcuma longa L.). Indian Cocoa, Arecanut Spices J. 16(2), 52-54.
Jalgoankar, R., Jamdagni, B.M., 1989. Evaluation of turmeric genotypes for yield and yield determining characters. Annals Plant Physiol. 33 (2), 222-228.
Johnson, H.W., Robinson, H.F., Comstock, R.E., 1955. Estimates of genetic and environmental variability in soybean, Agron. J. 47, 314-318.
Karvy Comtrade Limited. Annual Commodity Report, Turmeric, Karvy Ltd. 2017.
Kim, D.W., Lee, S.M., Woo, H.S., Park, J.Y., Ko, B.S., Heo, J.D., Ryu, Y.B., Lee, W.S., 2016. Chemical constituents and anti-inflammatory activity of the aerial parts of Curcuma longa. J. Funct. Food. 26, 485-493.
Kress, W.J., Prince, L.M., Williams. K.J., 2002. The phylogeny and a new classification of the gingers (Zingiberaceae): evidence from molecular data. Am. J. Bot. 89, 1682-1696.
Kumar, N.A., Sankaran, P.G., 1998. Instability in turmeric (Curcuma longa L.) production in India. J. Spices Aromat. Crops7(1), 19-22.
Lal RK, Gupta Pankhuri, Chanotiya CS, Mishra Anand, Maurya Ranjana 2020. Genetics of essential oil yield and their component traits in vetiver (Chrysopogon zizanioides (L.) Roberty). J. Med. Plants. Studies. 8 (4), 56-64.
Lal, S.D., Shah, A., Phogat, K.P.S., 1986. Path analysis of productivity in turmeric. Progressive Hort.18(1-2), 101-103.
Lerner, I.M., 1958. The Genetic Basis of Selection. John Wiley and Sons, New York, pp. 114.
Lynrah, P.G., Barua, P.K., Chakrabarty, B.K., 1998. Pattern of genetic variability in a collection of turmeric (Curcuma spp.) genotypes. Indian J. Gnet. Plant Breeding58(2), 201-207.
Mehta, K.G., Patel, R.H., 1983. Stability parameters for rhizome yield in Curcuma longa. Indian Cocoa, Arecanut and Spices J. 6, 77-80.
Mishra, R., Gupta, A.K., Kumar, A., Lal., R.K., Saikia, D. Chanotiya, C., 2018. Genetic diversity, essential oil composition, and in-vitro antioxidant and antimicrobial activity of Curcuma longa L. germplasm collections. JARMAP 10, 75-84.
Mishra, R., Gupta, A.K., Lal, R.K., Jhang, T., Banerjee, N., 2015. Genetic variability, analysis of genetic parameters, character associations and contribution for agronomical traits in turmeric (Curcuma longa L.). Ind. Crops Prod. 76, 204-208.
Mohadjerani, M., Asadollahi, S., 2019. Veronica crista-galli Steven and Veronica persica Poir. as anticancer and antioxidant plants in-vitro. Trends Phytochem. Res. 3(1), 61-66.
Mohammadhosseini, M., 2017. The ethnobotanical, phytochemical and pharmacological properties and medicinal applications of essential oils and extracts of different Ziziphora species. Ind. Crop Prod. 105, 164-192.
Mohammadhosseini, M., Sarker, S.D., Akbarzadeh, A., 2017. Chemical composition of the essential oils and extracts of Achillea species and their biological activities: A review. J. Ethnopharmacol. 199, 257-315.
Mohammadhosseini, M., Venditti, A., Sarker, S.D., Nahar, L., Akbarzadeh, A., 2019. The genus Ferula: Ethnobotany, phytochemistry and bioactivities - A review. Ind. Crops Prod. 129, 350-394.
Mohanty, D.C., 1979. Genetic variability and inter-relationship among rhizome yield and yield components in turmeric Andhra Agric. J. 26, 77-80.
Mohanty, D.C., Das, R.C., Sharma, Y.N., 1981. Variability of agronomic characters in ginger (Zingiber officinale Rose). Orissa J. Hart. 9(1), 15-17.
Muralidharan, V.K., Velaydhan, K.C., Thomas, T.C., 1980. Preliminary Studies on the Germplasm Collection of Curcuma, In: Proceeding of the National Seminar on Ginger and Turmeric, Calicut, 8-9 April, p. 55.
Nahar, L., Sarker, S.D., 2019. UPLC in phytochemical analysis. Trends Phytochem. Res. 3(1), 1-2.
Nangue, Y.D., Llorent-Martínez, E.J., Fernández-de Córdova, M.L., Ngangoum, D.A.M., Nguelefack, T.B., Azebaze, A.G.B., Dongmo, A.B., 2019. Phytochemical study and anti-inflammatory activity of the roots of Mangifera indica L. in lipopolysaccharide (LPS)-stimulated peritoneal macrophages. Trends Phytochem. Res. 3(1), 53-60.
Nirmal, S.V., Yamgar, V.T., 1998. Variability in morphological and yield characters of turmeric (Curcuma longa L.) cultivars. Adv. Plant Sci. 11(1), 161-164.
Panja, B. De, O.K. Basak, S., Chattopadhyay, S.B., 2002. Correlation and path analysis in turmeric (Curcuma longa L.).J. Spices Aromat. Crops11(11), 70-73.
Panse, V.G., Sukhatme, P.V., 1989. Statistical Methods for Agricultural Workers. Indian Council of Agricultural Research, New Delhi, India.
Paroda, R.S., Hayes, J.D., 1971. An investigation of genotype environment interactions for rate of ear emergence in spring barley. Heredity26, 157-177.
Park, S.I., Lee, E.H., Kim, S.R., Jang, Y.P., 2017. Antiapoptotic effects of Curcuma longa L. extract and its curcuminoids against blue light-induced cytotoxicity in A2E-laden human retinal pigment epithelial cells. J. Pharm. Pharmacol. 69(3), 334-340.
Ranawat, J.S., Pandey, S.B.S., Singh, J., Nayak, D., Pushpanjali, 2018. Doubling the farmer’s income through intercropping turmeric (Curcuma longa L.) under mandarin based agroforestry system in South Eastern Rajasthan. J. Pharma Phytochem.7 (4), 2560-2563.
Ravindran, P.N., Nirmal Babu, K., Shiva, K.N., 2007. Botany and Crop Improvement of Turmeric. In: Ravindran, P.N, Nirmal Babu, K. And Sivaraman, K. (Eds.), Turmeric The Genus Curcuma, CRC press, Boca Raton. pp. 15-70.
Sabu, M., 1991. A Taxonomic and Phylogenetic Study of South Indian Zingiberaceae. Ph.D. Thesis, University of Calicut, Kerala, India. p. 322.
Saccol, E.M.H., Toni, C., Pes, T.S., Ourique, G.M., Gressler, L.T., Silva, L.V.F., Mourao, R.H.V., Oliveira, R.B., Baldisserotto, B., Pavanato, M.A., 2017. Anaesthetic and antioxidant effects of Myrcia sylvatica (G. Mey.) DC. and Curcuma longa L. essential oils on tambaqui (Colossoma macropomum). Aquac. Res. 48(5), 2012-2031.
Samual, G.J.A., Hill, J., Breese, E.L., Davis, A., 1970. Assessing and predicting environmental response in Lolium perenne L. J. Agric. Sci. Cambridge,75, 1-9.
Sandeep, I.S., Das, S., Nayak, S., Mohanty, S., 2018. Chemometric profile of Curcuma longa L. towards standardization of factors for high essential oil yield and quality. Proc. Natl. Acad. Sci., India, Sect. B Biol. Sci. 88(3), 949-957.
Scotter, M.J., 2009. Synthesis and chemical characterization of curcuminoid colouring principles for their potential use as HPLC standards for the determination of curcumin colour in foods. LWT-Food Sci. Technol. 42, 1345-1351.
Shah, J.J., Raju, E.C., 1975. General morphology, growth and branching behaviour of the rhizomes of ginger, turmeric and mango ginger. New Bot. 2, 59-69.
Shahi, R.P., Shahi, B.G., Yadav, H.S., 1994b. Stability analysis for quality characters in turmeric (Curcuma longa L.). Crop Res.Hisar 8 (1), 112-116.
Shahi, R.P., Yadav, H.S., Shahi, B.G., 1994a. Stability analysis for rhizome yield and its determining characters in turmeric. Crop Res. Hisar 7 (1), 72-78.
Shanmugasundaram, K.A., Thangaraj, T., Azhakiamanavalan, R., Ganga, M., 2001. Evaluation and Selection of turmeric (Curcuma longa L.) genotypes. J. Spices Aromat. Crops. 10 (1), 33-36.
Sheikh, S., Chourad, R., Amarapurkar, S., Kondaguri, R., 2014. Economics of turmeric production under conventional and modern methods in Belgaum district of northern Karnataka, IJBMC. 7(1),100-104.
Singh, D.P., 1993. Evaluation and Characterization of Turmeric (Curcuma longa L.) Germplasm. Ph.D. thesis, G.B.P.U.A.T., Pantnagar. pp.157.
Singh, R.K., Chaudhary, B.D., 1985. Biometrics in Quantitative Genetics Analysis. Kalayani Publishers, New Delhi, pp. 39-79.
Singh, D.P., Tiwari, R.S., 1995. Path analysis in turmeric (Curcuma longa L.), Recent Hart.2(2), 113-116.
Singh, J.P., Singh, M.K., Singh, P.K., Singh, R.D., 1995. Phenotypic stability in turmeric (Curcuma longa L.). Indian Cocoa, Arecanut Spices J.19(2), 40-42.
Singh, Y., Mittal, P., Katoch, V., 2003. Genetic variability and heritability in turmeric (Curcuma longa L.). Himachal J. Agric. Res. 29(1/2), 31-34.
Skornickova, J., Reshe, T., Sabu, M., 2007. Other Economically Important Curcuma Species. In: Ravindran, P.N., Nirmal Babu, K. and Sivaraman, K. (Eds.), Turmeric The Genus Curcuma, CRC press, Boca Raton. pp. 451-467.
Tanvir, E.M., Hossen, M.S., Hossain, M.F., Afroz, R., Gan, S.H., Khalil, M.I., Karim, N., 2017. Antioxidant properties of popular turmeric (Curcuma longa) varieties from Bangladesh. J. Food Qual., 8.
Tomar, N.S., Nair, S.K., Gupta, C.R., 2005. Character association and path analysis for yield components in turmeric (Curcuma longa L.). J. Spices Aromat. Crops 14(1), 75-77.
Uchio, R., Higashi, Y., Kohama, Y., Kawasaki, K., Hirao, T., Muroyama, K., Murosaki, S., 2017. A hot water extract of turmeric (Curcuma longa) suppresses acute ethanol-induced liver injury in mice by inhibiting hepatic oxidative stress and inflammatory cytokine production. J. Nutr. Sci. 6, e3.
Wang, Y.D., Li, J.H., Guo, J.Q., Wang, Q.Y., Zhu, S.G., Gao, S.Y., Yang, C., Wei, M., Pan, X.D., Zhu, W., Ding, D.M., Gao, R.P., Zhang, W., Wang, J.Y., Zang, L.Q., 2017. Cytotoxic and antitumor effects of Curzerene from Curcuma longa. Planta Med. 83(1-2), 23-29.
Wright, S., 1921. Correlation and caustion. J. Agric. Res. 20, 557-585.
Yadav, D.S., Singh, R., 1996. Studies on genetic variability in turmeric (Curcuma longa L.). J. Hill Res. 9 (1), 33-36.
Zhou, Y.Q., Wang, C.M., Wang, R.B., Lin, L.G., Yin, Z.Q., Hu, H., Yang, Q., Zhang, Q.W., 2017. Preparative separation of four sesquiterpenoids from Curcuma longa by high-speed counter-current chromatography. Sep. Sci. Technol. 52(3), 497-503.