222
Views
0
CrossRef citations to date
0
Altmetric
Reviews

Research Progress on Tissue Culture and Genetic Transformation of Ramie

, , , , &

References

  • An, X., J. Chen, J. Zhang, Y. Liao, L. Dai, B. Wang, L. Liu, and D. Peng. 2015a. Transcriptome profiling and identification of transcription factors in ramie (Boehmeria nivea L. Gaud) in response to PEG treatment, using illumina paired-end sequencing technology. International Journal of Molecular Sciences 16 (2):3493–511. doi:10.3390/ijms16023493.
  • An, X., Y. Liao, J. Zhang, L. Dai, N. Zhang, B. Wang, L. Liu, and D. Peng. 2015b. Overexpression of rice NAC gene SNAC1 in ramie improves drought and salt tolerance. Plant Growth Regulation 76 (2):211–23. doi:10.1007/s10725-014-9991-z.
  • An, X., B. Wang, L. Liu, H. Jiang, J. Chen, S. Ye, L. Chen, P. Guo, X. Huang, and D. Peng. 2014. Agrobacterium-mediated genetic transformation and regeneration of transgenic plants using leaf midribs as explants in ramie [Boehmeria nivea (L.) Gaud]. Molecular Biology Reports 41 (5):3257–69. doi:10.1007/s11033-014-3188-4.
  • An, X., J. Zhang, L. Dai, G. Deng, Y. Liao, L. Liu, B. Wang, and D. Peng. 2016. Isobaric Tags for Relative and Absolute Quantitation (iTRAQ)-based comparative proteome analysis of the response of ramie under drought stress. International Journal of Molecular Sciences 17 (10):1607. doi:10.3390/ijms17101607.
  • An, X., J. Zhang, Y. Liao, L. Liu, D. Peng, and B. Wang. 2017. Senescence is delayed when ramie (Boehmeria nivea L.) is transformed with the isopentyl transferase (ipt) gene under control of the SAG12 promoter. FEBS Open Bio 7 (5):636–44. doi:10.1002/2211-5463.12191.
  • Chen, D., and X. Chen. 1998. Preliminary report on the study of somatic embryogenesis in fiber crops. Chinese Bulletin of Botany 15 (3):65–68.
  • Chen, D., X. Chen, P. Zhou, and Z. Li. 1996. Study on diversity and somatic embryo callus occurred. Journal of Hunan Agricultural University 3:239–49.
  • Chen, J., and Q. Guo. 1998. Culture and rapid propagation method of new Ramie variety Xiangzhu No. 3. Hunan Agricultural Sciences (6):18–19.
  • Chen, J., X. Zhang, Q. Guo, X. Tang, and Y. Yang. 2005. Construction of antisense expression vector of CCoAOMT gene and study on transformation of Ramie. Journal of Natural Science of Hunan Normal University 28:1.
  • Chen, X. 1994. Tissue culture and protoplast culture of Ramie. Crop Investigations 8 (S):85–88.
  • Chen, X., D. Chen, P. Zhou, and Z. Li. 1995a. Preliminary isolation and culture and plantlet from cotyledon protoplasts. Journal of Hunan Agricultural College 21 (2):11–14.
  • Chen, X., and D. Chen. 1995b. Comparative study on isolation and culture of protoplasts from different sources of Ramie. Plant Fiber Sciences in China 17 (3):1–5.
  • Chen, X., D. Chen, P. Zhou, and Z. Li. 1996a. Protoplast culture and plantlet regeneration of Ramie. Botany Gazette 38 (2):43–46.
  • Chen, X., D. Chen, P. Zhou, and Z. Li. 1996b. Plant regeneration from protoplast culture of ramie suspension cells. Acta Agronomica Sinica 22 (1):112–16.
  • Cui, K. 2000. Plant hormones on induction and regulation of somatic embryogenesis. Genetic 22 (5):349–54.
  • Dusi, D. M. A., M. Dubald, E. R. P. De Almeida, L. S. Caldas, and E. S. Gander. 1993. Transgenic plants of ramie (Boehmeria nivea Gaud.) obtained by Agrobacterium mediated transformation. Plant Cell Reports 12 (11):625–28. doi:10.1007/BF00232812.
  • Fang, J., H. Huang, and S. Li. 2002. Effects of sugar and acid content in fruit development of CPPU symmetrical peach trees. Journal of Fruit Science 19 (4):235–39.
  • Fu, J., B. Wang, L. Liu, J. Yang, X. Wang, X. Xing, and D. Peng. 2009. Transgenic ramie with Bt gene mediated by Agrobacterium tumefacien and evaluation of its pest-resistance. Acta Agron Sinica 35 (10):1771–77. doi:10.3724/sp.j.1006.2009.01771.
  • Guo, Q., and J. Chen. 1998. Ramie (Boehmeria Nivea L) on the induction and regeneration of callus. Plant Fiber Sciences in China 20 (2):1–5.
  • Guo, Y., A. Guo, E. Liu, H. Kong, and L. He. 2006. Ramie stem tip tissue culture and plantlet regeneration. Chinese Journal of Tropical Crops 27 (1):73–76.
  • Hu, J. 1991. Cytological observation on the leaf bud of ramie plantlets in vitro. Acta Agronomica Sinica 17 (3):192–96.
  • Huang, J., R. Mo, and C. Ye. 1980. Ramie cotyledon and hypocotyl regeneration research briefing. Guangxi Agricultural Sciences 7:005.
  • Kong, H., P. Guo, X. Zhang, Q. Yao, and L. He. 2006. The establishment of genetic transformation system in ramie (Boehmeria nivea). Molecular Plant Breeding 4 (2):233–37.
  • Li, S. 1992. Study on low temperature preservation technique of stem tip tissue of Ramie. Plant Fiber Sciences in China 1:7–11.
  • Liu, G., M. Deng, S. Zheng, L. He, L. Zhou, and Z. Li. 1994a. In vitro culture of anther and unpollinated ovary. Crop Investigations (S1):73–78.
  • Liu, G., M. Deng, S. Zheng, L. He, L. Zhou, and Z. Li. 1994b. Ramie (Boehmeria Nivea L.) from cytological studies on in vitro culture of I. androgenesis in anther. Journal of Hainan University (Natural Sciences Edition) 2.
  • Liu, L., Z. Meng, B. Wang, X. Wang, J. Yang, and D. Peng. 2009. Genetic diversity among wild resources of the genus Boehmeria jacq. from west China determined using inter-simple sequence repeat and rapid amplification of polymorphic DNA markers. Plant Production Science 12:88–96. doi:10.1626/pps.12.88.
  • Liu, T., S. Zhu, Q. Tang, Y. Yu, and S. Tang. 2013. Identification of drought stress-responsive transcription factors in Ramie (Boehmeria nivea L. Gaud). BMC Plant Biology 13 (1):130. doi:10.1186/1471-2229-13-130.
  • Ma, X., C. Yu, S. Tang, S. Guo, R. Zhang, Y. Wang, A. Zhu, S. Zhu, and H. Xiong. 2010. Genetic transformation of the bast fiber plant Ramie (Boehmeria nivea Gaud.) via. Agrobacterium Tumefaciens. Plant Cell, Tissue and Organ Culture (PCTOC) 100 (2):165–74. doi:10.1007/s11240-009-9633-8.
  • Mo, R., and J. Huang. 1982. Effect of plant hormones on Ramie stem, leaf explant differentiation. Plant Physiology Communications 3:39–41.
  • Pang, C., and S. Li. 1995. Study on the factors of Ramie plant regeneration of somatic cell and its influence. Plant Fiber Sciences in China 17 (1):1–6.
  • Pang, C., and S. Li. 1996. Study on variation of Ramie somatic clones and its rules. Plant Fiber Sciences in China 18 (1):1–6.
  • Qin, X., J. Qi, and P. Fang. 2012. Research progress in tissue culture and genetic transformation of hemp crops. Journal of Plant Genetic Resources 13 (4):589–95.
  • Ramamoorthy, S., M. Skrifvars, and A. Persson. 2015. A review of natural fibers used in biocomposites: Plant, animal and regenerated cellulose fibers. Polymer Reviews 55:107–62. doi:10.1080/15583724.2014.971124.
  • Wang, B., L. Liu, X. Wang, J. Yang, Z. Sun, N. Zhang, S. Gao, X. Xing, and D. Peng. 2009. Transgenic Ramie [Boehmeria nivea (L.) Gaud.]: Factors affecting the efficiency of agrobacterium tumefaciens-mediated transformation and regeneration. Plant Cell Reports 28:1319–27. doi:10.1007/s00299-009-0732-0.
  • Wang, B., D. Peng, L. Liu, Z. Sun, N. Zhang, and S. Gao. 2007. An efficient adventitious shoot regeneration system for Ramie (Boehmeria nivea Gaud) using thidiazuron. Botanical Studies 48:173–80.
  • Wang, B., D. Peng, Z. Sun, N. Zhang, and S. Gao. 2008. In vitro plant regeneration from seedling-derived explants of Ramie [Boehmeria nivea (L.) Gaud]. Vitro Cellular & Developmental Biology-Plant, 44: 105–11.
  • Wang, G., and H. Fang. 1998. Principles and techniques of plant genetic engineering, 393.
  • Wang, X., and D. Peng. 2005a. Effects of different genotypes on callus induction and differentiation of Ramie. Journal of Yangtze University: Natural Science Edition 2 (8):64–66.
  • Wang, X., and D. Peng. 2005b. Effects of three kinds of cytokinins on callus induction and differentiation. Hubei Agricultural Sciences 2005 (1):17–19.
  • Wang, X., D. Peng, and X. Chen. 2003. Effects of basic medium on Ramie callus induction of different explants and differentiation. Journal of Huazhong Agricultural University 22 (5):431–35.
  • Wu, X., H. Xing, Y. Jie, and Q. Xu. 2009. Study on tissue culture and plantlet regeneration of Ramie leaves. Chinese Agricultural Science Bulletin (23):86–89.
  • Xiong, W., and K. Li. 2006. Medicinal value of Ramie. Journal of Jiangxi University of Traditional Chinese Medicine 18 (3):51–52.
  • Xiong, X. 2000. Somatic hybridization of Ramie. Doctoral diss., Agricultural University Of Hunan.
  • Xiong, X., and L. Gan. 1996. A preliminary study on the regeneration plant and influence factors of Ramie protoplasts. Journal of Agricultural Biotechnology 4 (2):147–52.
  • Yan, C., Q. Zhao, J. Hu, P. Zhou, and Z. Li. 1981. Rapid propagation of improved varieties of Ramie by tissue culture. Plant Fiber Sciences in China (3):28–33.
  • Yang, C., J. Huang, and R. Lu. 1986. Preliminary study on Ramie anther culture. Shanghai Agriculture Science 4:13–17.
  • Yang, C., J. Huang, and R. Lu. 1988. Study on micropropagation technology of Ramie. Shanghai Agriculture Science 2:023.
  • Yang, J. 2009. Agrobacterium tumefaciens mediated transformation of male sterility gene (barnase) of Ramie Master’s thesis. Huazhong agricultural university.
  • Yi, Z., X. Li, J. Jiang, Z. Wang, and Q. Liu. 2006. The establishment of regeneration system of Ramie and obtain transgenic Ramie. Plant Fiber Sciences in China 28 (2):61–66.
  • Yuan, J., Y. Yu, Q. Wang, X. Fan, S. Chen, and P. Wang. 2013. Modification of Ramie with 1-butyl-3-methylimidazolium chloride ionic liquid. Fiber Polym 14:1254–60. doi:10.1007/s12221-013-1254-5.
  • Zhang, N. 2007. Study on Cultivation Technology of ramie protoplasts. Doctoral diss., Huazhong Agricultural University.
  • Zhao, Q., C. Yan, C. Pan, M. Yang, C. Wang, and Z. Li. 1984. Study on tissue culture of Ramie leaves. Plant Fiber Sciences in China (4):9–13.
  • Zhu, C. 1978. Embryoid bodies in plant tissue culture. Journal of Genetics and Genomics 5 (1):79–86.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.