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Articles

Molecular cloning of potassium transporter gene, MaHAK5 of mulberry (Morus alba L.) and gene expression and biochemistry analysis under potassium stress

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Pages 130-136 | Accepted 25 Apr 2018, Published online: 16 May 2018

References

  • Ahn, S.J., Shin, R., & Schachtman, D.P. (2004). Expression of KT/KUP genes in Arabidopsis and the role of root hairs in K+ uptake. Plant Physiology, 134, 1135–1145.
  • Aleman, F., Nieves-Cordones, M., Martinez, V., & Rubio, F. (2009). Differential regulation of the HKA5 genes encoding the high-affinity K+ transporters of Thellungiella halophila and Arabidopsis thaliana. Environmental and Experimental Botany, 65, 263–269.
  • Chao, M.N., Wen, Q.Y., Zhang, J.Y., Zhang, Z.Y., Dong, J., & Yu, Y.X. (2017). Identification and expression analysis of soybean KUP/HAK/KT potassium transporter gene family. Acta Botanica Boreali-Occidentalia Sinica, 37, 239–249.
  • Chao, M.N., Wen, Q.Y., Zhang, Z.Y., Hu, G.H., Zhang, J.B., Wang, G., & Wang, Q.L. (2018). Sequence characteristics and expression analysis of GhHAK5 gene in potassium transporter in upland cotton. Acta Agronomica Sinica, 44, 236-244.
  • Chen, J.Y., Zeng, X.Q., & Tan, L. (2011). Using ClustalX2.0 software analysis of China’s hepatitis B virus genotypes and subtypes of the ratio and recombination. China Journal of Modern Medicine., 21, 3121–3124.
  • Fang, R.J., Qi, J.L., Huo, D.Q., Zhao, W.G., Wang, W., Zhang, L., … Yang, Y.H. (2008). Construction and primary analysis of cDNA library from young mulberry leaves. Science of Sericulture, 34, 581–586.
  • Francisco, R., Mario, F., Reyes, R., Manuel, N.C., Fernando, A., Rosa, M.R., &Vicente, M. (2014). A low K+ signal is required for functional high-affinity K+ uptake through HAK5 transporters. Physiologia Plantarum, 152, 558–570.
  • Gierth, M., &Maser, P. (2007). Potassium transporters in plants-Involvement in K+ acquisition, redistribution and homeostasis. FEBS Letters, 581, 2348–2356.
  • Grabel, O.I., Kolesnichenko, A.V., Pobezhimova, T.P., Zykova, V.V., & Voinikov, V.K. (2006). Mechanisms and functions of nonphosphorylating electron transport in respiratory chain of plant mitochondria. Russian Journal of Plant Physiology, 53, 418–429.
  • Han, T.L., Wang, M., & Li, Z.M. (2011). Detection of transcriptional level of target gene by qRT - PCR. Journal of Anhui Agricultural Sciences, 39, 18432–18434.
  • Ji, J., Wang, T.T., Wang, G., Wu, J., & Guan, C.F. (2013). Genetic transformation of HAK gene to maize and its salt tolerance. Journal of Tianjin University(Science and Technology), 46, 659–665.
  • Larionov, A., Krause, A., & Miller, W. (2005). A standard curve based method for relative real time PCR data processing. BMC Bioinformatics, 6, 62.
  • Li, K.L., Wang, Y.T., Han, X.X., & Jiang, J. (2013). Effects of low potassium stress on active oxygen and antioxidant enzymes in tomato leaves. Acta Botanica Boreali-Occidentalia Sinica, 33, 0066–0073.
  • Li, R.X., Zhang, J., Qian, J., Li, L., & Zhao, W.G. (2016). Molecular cloning and sequence analysis of the kaurene oxidase (MmKO) gene in mulberry (Morus multicaulis) and patterns of MmKO gene expression under abiotic stress conditions. The Journal of Horticultural Science and Biotechnology, 91, 456–465.
  • Li, X.T., Wang, W., Li, C., Wang, X.G., Zhao, H.X., & Cao, M.J. (2011). Differences of photosynthetic characteristics and protective enzymes in low-potassium-tolerant soybean with low potassium stress. Journal of Plant Nutrition and Fertilizer, 17, 384–390.
  • Lin, W.H., Ma, L.Y., Su, Y., Huang, Z.G., Xiao, L.T., & Zhou, Q.M. (2011). Cloning and expression analysis of PaHAK1 gene with high affinity K+ transporter in Phytolacca acinosa Roxb. Plant Physiology Journal, 47, 91–96.
  • Liu, Y.H., Wang, L., Zhang, J.L., & Wang, D. (2011). Growth and physiological indexes of potato plantlets under low potassium stress. Chinese Potato Journal, 25, 152–157.
  • Livak, K.J., & Schmittgen, T.D. (2001). Analysis of relative gene expression data using real-time quantitative PCR and the 2-ΔΔCt method. Methods, 25, 402–408.
  • Markus, G., Pascal, M., & Julian, I. (2005). The potassium transporter AtHAK5 functions in K(+) deprivation-induced high-affinity K(+) uptake and AKT1 K(+) channel contribution to K(+) uptake kinetics in Arabidopsis roots. Plant Physiology, 137, 1105–1114.
  • Shin, R., & Schachtman, D.P. (2004). Hydrogen peroxide mediates plant root cell response to nutrient deprivation. Proceedings of the National Academy of Sciences of the United States of America, 101, 8827–8832.
  • Song, Y.F., Dong, L.H., Jin, Y.R., Shi, S.J., Zhang, L., Liu, C.K., … Liu, H.B. (2014). Subcellular localization and expression analysis of Nicotiana sylvestris KUP/HAK/KT family K~+ transporter gene NsHAK11. Scientia Agricultura Sinica, 47, 1058–1071.
  • Song, Z.Z., Guo, S.L., Ma, R.J., & Yu, M.L. (2015). Expression of KT/HAK/KUP family gene during peach flowering and its response to potash application. Scientia Agricultura Sinica, 48, 1177–1185.
  • Tamura, K., Dudley, J., Nei, M., & Kumar, S. (2007). MEGA4: Molecular evolutionary genetics analysis (MEGA) software version 4.0. Molecular Biology & Evolution, 24, 1596–1599.
  • Tong, W., Zhang, Y.H., Wang, H., Li, F., Liu, Z.Y., Wang, Y.H., … Li, L. (2013). Mulberry (Morus alba L.) methionine sulfoxide reductase gene cloning, sequence analysis, and expression in plant development and stress response. Russian Journal of Bioorganic Chemistry, 39, 522–529.
  • Yang, Z.F., Gao, Q.S., Sun, C.S., Li, W.J., Gu, S.L., & Xu, C.W. (2009). Molecular evolution and functional divergence of HAK potassium transporter gene family in rice (Oryza sativa L.). Journal of Genetics and Genomics, 36, 161–172.
  • Yang, Z.Y., & Wang, Y. (2014). Research progress on the function of KUP/HAK/KT transporter family. Biotechnology, 24, 100–103.
  • Zhang, F.X. (2007). Sequence alignment algorithm CLUSTAL W parallelization of the exploration and research. Weifang University Journal, 4, 112–113.
  • Zhang, Y.T., Wang, X., Qi, Z., & Kang, Y. (2014). Arabidopsis thaliana high-affinity potassium transporter at HAK5 participated in the response to salt stress and ABA in the plant root. Acta Agriculturae Boreali-Sinica, 29, 214–219.
  • Zhao, D.Q., Zhou, C.H., Sheng, Y.L., Liang, G.H., & Tao, J. (2010). Molecular cloning and expression of phytoene synthase, lycopene beta-cyclase, and beta-carotene hydroxylase genes in persimmon (Diospyros kaki L.) fruits. Plant Molecular Biology Reporter, 29, 345–351.
  • Zhao, S. (2016). Molecular mechanism of Arabidopsis transcription factor ARF2 in response to potassium deficiency ( PhD Thesis). China Agricultural University, Beijing, P. R. China.

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