• Reference :1

    Andaya, V.C., Mackill, D.J., 2003a. Mapping of QTLs associated with cold tolerance during the vegetative stage in rice. Journal of Experimental Botany 54, 2579–2585.

    Andaya, V.C., Mackill, D.J., 2003b. QTLs conferring cold tolerance at the booting stage of rice using recombinant inbred lines from a japonica x indica cross. Theoretical and Applied Genetics 106, 1084–1090.

    Andaya, V.C., Tai, T.H., 2006. Fine mapping of the qCTS12 locus, a major QTL for seedling cold tolerance in rice. Theoretical and Applied Genetics 113, 467–475.

    Chhun, T., Aya, K., Asano, K., Yamamoto, E., Morinaka, Y., Watanabe, M., Kitano, H., Ashikari, M., Matsuoka, M., Ueguchi-Tanakaa, M., 2007. Gibberellin regulates pollen viability and pollen tube growth in rice. The Plant Cell 19, 3876–3888.

    Cui, D., Xu, C., Tang, C., Yang, C., Yu, T., Cao, G., Xu, F., Zhang, J., Han, L., 2013. Genetic structure and association mapping of cold tolerance in improved japonica rice germplasm at the booting stage. Euphytica 193, 369–382.

    da Cruz, R.P., Milach, S.C.K., 2000. Breeding for cold tolerance in irrigated rice. Ciencia Rural 30, 909–917.

    da Cruz, R.P., Milach, S.C.K., Federizzi, L.C., 2006. Rice cold tolerance at the reproductive stage in a controlled environment. Scientia Agricola 63, 255–261.

    Gao, J.P., Chao, D.Y., Lin, H.X., 2008. Toward understanding molecular mechanisms ofabiotic stress responses in rice. Rice 1, 36–51.

    Ghadirnezhad, R., Fallah, A., 2014. Temperature effect on yield and yield components of different rice cultivars in flowering stage. International journal of Agronomy doi: org/10.1155/2014/846707.

    Imin, N., Kerim, T., Rolfe, B.G., Weinman, J.J., 2004. Effect of early cold stress on the maturation of rice anthers. Proteomics 4, 1873–1882.

    Jena, K.K., Kim, S.M., Suh, J.P., Kim, Y.G., 2010. Development of cold-tolerant breeding lines using QTL analysis in rice. Proceeding of second Africa Rice Congress on Innovation and Partnerships to Realize Africa’s Rice Potential, 22–26, May, 2010, Bamako, Mali.

    Jiang, W., Lee, J., Chu, S., Ham, T., Woo, M., Cho, Y., Chin, J., Han, L., Xuan, Y., Yuan, D., Xu, F., Dai, L., Yea, J., Koh, H., 2010. Genotype × Environment interaction for chilling tolerance of rice recombinant inbred lines under different low temperature environments. Field Crops Research 117, 226–236.

    Kim, S.I., Andaya, V.C., Tai, T.H., 2011. Cold sensitivity in rice (Oryza sativa L.) is strongly correlated with a naturally occurring I99V mutation in the multifunctional glutathione transferase isoenzyme GSTZ2. Biochemistry Journal 435, 378–380.

    Kuroki, M., Saito, K., Matsuba, S., Yokogami, N., Shimizu, H., Ando, I., Sato, Y., 2007. A quantitative trait locus for cold tolerance at the booting stage on rice chromosome 8. Theoretical and Applied Genetics 115, 593–600.

    Kuroki, M., Saito, K., Matsuba, S., Yokogami, N., Shimizu, H., Ando, I., Sato, Y., 2009. Quantitative trait analysis for cold tolerance at the booting stage in a rice cultivar, Hatsushizuku. JARQ 43, 115–121.

    Mori, M., Onishi, K., Tokizono, Y., Shinada, H., Yoshimura, T., Numao, Y., Miura, H., Sato, T., 2011. Detection of a novel quantitative trait locus for cold tolerance at the booting stage derived from a tropical japonica rice variety Silewah. Breeding Science 61, 61–68.

    Morsy, M.R., Jouve, L., Hausman, J.F., Hoffmann, L., Stewart, J.D., 2007. Alteration of oxidative and carbohydrate metabolism under abiotic stress in two rice (Oryza sativa L.) genotypes contrasting chilling tolerance. Journal of Plant Physiology 164, 157–167.

    Oliver, S.N., Dongen, J.T.V., Alfred, S.C., Mamun, E.A., Zhao, X., Saini, H.S., Fernandes, S.F., Blanchard, C.L., Sutton, B.G., Geigenberger, P., Dennis, E., Dolferus, R., 2005. Cold-induced repression of the rice anther specific cell wall invertase gene OSINV4 is correlated with sucrose accumulation and pollen sterility. Plant Cell Environment 28, 1534–1551.

    Pandey, D.K., Gupta, H.S., 1993. Genetics of panicle exsertion in cold-tolerant rice (Oryza sativa L.). Plant Breeding 111, 82–85.

    Perveen, S., Shinwari, K.I., Jan, M., Malook, I., Rehman, S., Khan, M.A., Jamil, M., 2013. Low temperature stress induced changes in biochemical parameters, protein banding pattern and expression of Zat12 and Myb genes in rice seedling. Journal of Stress Physiology and Biochemistry 9, 193–206.

    Saito, K., Hayano-Saito, Y., Kuroki, M., Sato, Y., 2010. Map based cloning of the rice cold tolerance gene Ctb1. Plant Science 179, 97–102.

    Saito, K., Hayano-Saito, Y., Maruyama-Funatsuki, W., Sato, Y., Kato, Y., 2004. Physical mapping and putative candidate gene identification of a quantitative trait locus Ctb1 for cold tolerance at the booting stage of rice. Theoretical and Applied Genetics 109, 515–522. Sanghera, G.S., Wani, S.H., Hussain, W., Singh, N.B., 2011. Engineering cold stress tolerance in crop plants. Current Genomics 12, 30–43. Satake, T., 1989. Male sterility caused by cooling treatment at the young microspore stage in rice plants, XXIX. The mechanism of enhancement in cool tolerance by raising water temperature before the critical stage. Japanse Journal of Crop Science 8, 240–245. Shinada, H., Iwata, N., Sato, T., Fujino, K., 2013. Genetical and morphological characterization of cold tolerance at fertilization stage in rice. Breeding Science 63, 197–204. Shinada, H., Iwata, N., Sato, T., Fujino, K., 2014. QTL pyramiding for improving of cold tolerance at fertilization stage in rice. Breeding Science 63, 483–488. Shirasawa, S., Endo, T., Nakagomi, k., Yamaguchi, M., Nishio, T., 2012. Delimitation of a QTL region controlling cold tolerance at booting stage of a cultivar, ‘Lijiangxintuanheigu’, in rice, Oriza sativa L. Theoretical and Applied Genetics 124, 937–946. Singh, R.P., Brennan, J.P., Farrell, T., Williams, R., Reinke, R., Lewin, L., 2005. Economic analysis of breeding for improved cold tolerance in rice in Australia. Australasian Agribusiness 13, 1–9. Suh, J., Cho, Y., Lee, J., Lee, S., Jung, J., Choi, I., Kim, M., Kim, C., Jena, K. K., 2013. SSR analysis of genetic diversity and cold tolerance in temperate rice germplasm. Plant Breeding and Biotechnology 1, 103–110. Suh, J.P., Jeung, J.U., Lee, J.I., Choi, Y.H., Yea, J.D., Virk, P.S., Mackill, D.J., Jena, K.K., 2010. Identification and analysis of QTLs controlling cold tolerance at the reproductive stage and validation of effective QTLs in cold-tolerant genotypes of rice (Oryza sativa L.). Theoretical and Applied Genetics 120, 985–995. Suzuki, K., Nagasuga, K., Okada, M., 2008. The chilling injury induced by high root temperature in the leaves of rice seedlings. Plant Cell Physiology 49, 433–442. Xiao, N., Huang, W., Zhang, X., Gao, Y., Li, A., Dai, Y., Yu, L., Liu, G., Pan, C., Li, Y., Dai, Z., Chen, J., 2015. Fine mapping of qRC10-2, a quantitative trait locus for cold tolerance of rice roots at seedling and mature stages. Theoretical and Applied Genetics 128, 173–185. Xu, L., Zhou, L., Zeng, Y., Wang, F., Zhang, H., Shen, S., Li, Z., 2008. Identification and mapping of quantitative trait loci for cold tolerance at the booting stage in a Japonica rice near-isogenic line. Plant Science 174, 340–347. Yawen, Z., Xiaoying, P., 2006. Genetic analysis for cold tolerance at booting stage for japonica rice (Oryza sativa L.). Indian Journal of Genetics 66, 100–102. Ye, C., Fukai, S., Godwin, I. D., Koh, H., Reinke, R., Zhou, Y., Lambrides, C., Jiang, W., Snell, P., Redon, E., 2010. A QTL controlling low temperature induced spikelet sterility at booting stage in rice. Euphytica 176, 291–301. Ye, H., Du, H., Tang, N., Li, X., Xiong, L., 2009. Identification and expression profiling analysis of TIFY family genes involved in stress and phytohormone responses in rice. Plant Molecular Biology 71, 291–305. Zhou, L., Zeng, Y., Hu, G., Pan, Y., Yang, S., You, A., Zhang, H., Li, J., Li, Z., 2012. Characterization and identification of cold tolerant near-isogenic lines in rice. Breeding Science 62, 196–201. Zhou, L., Zeng, Y., Zheng, W., Tang, B., Yang, S., Zhang, H., Li, J., Li, Z., 2010. Fine mapping a QTL qCTB7 for cold tolerance at booting stage on rice chromosome 7 using a near-isogenic line. Theoretical and Applied Genetics 121, 895–905.

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