Salinity and drought tolerance conferred by in planta transformation of SNAC1 transcription factor into a high-yielding rice variety of Bangladesh

Author:

Parvin Shanaz,Biswas Sudip,Razzaque Samsad,Haque Taslima,Elias Sabrina M.,Tammi Rumana S.,Seraj Zeba I.

Publisher

Springer Science and Business Media LLC

Subject

Plant Science,Agronomy and Crop Science,Physiology

Reference45 articles.

1. Abdullah-Al-Emran RM, Amin M, Chakraborty D, Ferdousi A, Seraj ZI (2010) Cloning and transformation of the transcription factor SNAC1 from rice (Oryza sativa L.) Landrace Pokkali. In: Islam AS, Haque MM, Sarker RH Hoque MI (eds) Proceeding of sixth international plant tissue culture & biotechnology conference, 3–5 Dec 2010. Role of biotechnology in food security and climate change. Bangladesh Association for Plant Tissue Culture & Biotechnology, Dhaka, pp 155–164

2. Amin M, Elias SM, Hossain A, Ferdousi A, Rahman MS, Tuteja N, Seraj ZI (2012) Over-expression of a Dead-box helicase, PDH45, confers both seedling and reproductive stage salinity tolerance to rice (Oryza sativa L.). Mol Breed 30:345–354

3. Birch RG (1997) Plant transformation: problems and strategies for practical application. Annu Rev Plant Biol 48:297–326

4. Brown ME, Funk CC (2008) Food security under climate change. Science 319:580-581

5. Cao WH, Liu J, He XJ, Mu RL, Zhou HL, Chen SY, Zhang JS (2007) Modulation of ethylene responses affects plant salt-stress responses. Plant Physiol 143:707–719

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