Effect of Salt on Growth of Rice Landraces in Vietnam

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Abstract:

In this study, total 41 Vietnamese rice landraces were evaluated for their salt tolerance in the laboratory and field conditions. Amongst them, 15 landraces have shown moderate to high salinity tolerance in both screening conditions. The three landraces Chanh trui, Cuom dang 2 and Nep cuc have revealed the highest salt tolerance which were similar to the Pokkali. However, with time and levels of salt treatments, salt injury symptoms were clearly observed in all landraces with different symptoms. All plants growth parameters were remarkably reduced in all landraces under increasing salt-treated concentrations. By use of molecular marker RM217 linked with salinity tolerance QTL located on the chromosome 4, 11 landraces have been found to carry the allen involving in salt tolerance. This study has provided useful information on salinity tolerance of rice landraces for breeding programs to deal with the climate change in this country.

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[1] N.T. Lang et al., Genetic diversity of salt tolerance rice landraces in Vietnam, J. Plant Bred.Crop Sci. 1 (2009) 230-243.

Google Scholar

[2] L.H. Anh et al., Identification of QTLs tolerance to salinity in rice (Oryza sative L.), International Journal of Development Research. 4 (2015) 2113-2118.

Google Scholar

[3] L.T. Nghia, L.T.T. Trang, Study on salt tolerance and genetic diversity of some local Vietnamese rice varieties, J. Agric Rural Dev. 12 (2012) 11-26.

Google Scholar

[4] L.H. Linh et al., Molecular breeding to improve salt tolerance of rice (Oryza sativa L.) in the red river delta of Vietnam, International Journal of Plant Genomics. 2012 (2012) Article ID 949038.

DOI: 10.1155/2012/949038

Google Scholar

[5] R. Munns, Genes and salt tolerance: bringing them together, New Phytologist. 167(3) (2005) 645-663.

DOI: 10.1111/j.1469-8137.2005.01487.x

Google Scholar

[6] S. Bado et al., Protocol for screening for salt tolerance in rice, in: S. Bado et al (Eds.), Protocols for pre-field screening of mutants for salt tolerance in rice, wheat and barley, Springer International Publishing AG., Switzerland, 2016, pp.21-31.

DOI: 10.1007/978-3-319-26590-2_4

Google Scholar

[7] P. Schmidt-Thome et al., Climate change in Vietnam, in: P. Schmidt-Thome et al (Eds.), Climate change adaptation measures in Vietnam Development and Implementation. Spinger International Publishing., Cham Heidelberg New York Dordredcht London, 2015, pp.7-14.

DOI: 10.1007/978-3-319-12346-2_2

Google Scholar

[8] L.H. Ham, T.D. Khanh, Applying molecular breeding for rice improvement, Agric Pub, Vietnam, 2015, pp.25-40.

Google Scholar

[9] MARD-Ministry of Agricultural and Rural Development, Workshop on drought, salinity intrusion affected provinces in Cuu Long river delta; held in Can Tho city, Feb 17, 2016.

Google Scholar

[10] L. Zeng, M.C. Shannon, C.M. Grieve, Evaluation of salt tolerance in rice genotypes by multiple agronomic parameters, Euphytica. 127 (2002) 235–245.

Google Scholar

[11] IRRI-International Rice Research Institute, Screening rice for salinity tolerance, IRRI Discussion paper Series, 1997.

DOI: 10.19103/as.2016.0003.18

Google Scholar

[12] T.H. Linh et al., Improving submergence tolerance of Vietnamese rice cultivar by molecular breeding, Journal of Plant Breeding and Genetics. 1(3) (2013) 157-168.

Google Scholar

[13] N.KQuoc, H.T. Hue, L.T. Nghia, Mapping salt tolerance QTL of rice, J. Agric. Rural Dev. 22 (2014) 3-9.

Google Scholar

[14] Standard Evaluation System for rice (SES), International Rice Research Institute - IRRI (2002), Metro Manila, Philippines.

Google Scholar

[15] M.Z. Alam et al., Effect of salinity on growth of some modern rice cultivars, Journal of Agronomy. 3 (2004) 1-10.

Google Scholar

[16] A.R. Dadkhad, W.S. Stewart, H. Griffiths, Effects of salinity on yield and root quality of sugar beet (Beta vulgaris L.). J. Exp. Bot. 52 (2001) 31.

Google Scholar

[17] H.B. Azaizeh, B. Gunse, E. Steudle, Effects of NaCL and CaCl2 on water transport across root cells of maize (Zea mays L) seedling, Plant Physiol. 99 (1992) 886-894.

DOI: 10.1104/pp.99.3.886

Google Scholar

[18] G.R. Cramer, E. Epstein, A. Lauchli, Effects of sodium, postassium and calcium on salt stressed barley. II. Elemental analysis, Physiol Planta. 82 (1991) 197-202.

DOI: 10.1111/j.1399-3054.1991.tb02129.x

Google Scholar

[19] S. Yoshida, Salinity, In: Fundamentals of rice production, IRRI, Philippines, 1981, pp.30-39.

Google Scholar