A New Era of CRISPR Technology to Improve Climate Resilience in Rice

Author:

Parab Siddhi,Tiwari Shalini,Rajarammohan Sivasubramanian,Singla-Pareek Sneh Lata,Pareek Ashwani

Publisher

Springer Nature Singapore

Reference69 articles.

1. Alam MS, Kong J, Tao R, Ahmed T, Alamin M, Alotaibi SS, Abdelsalam NR, Xu JH (2022) CRISPR/Cas9 mediated knockout of the OsbHLH024 transcription factor improves salt stress resistance in rice (Oryza sativa L.). Plan Theory 11(9):1184

2. Araki M, Ishii T (2015) Towards social acceptance of plant breeding by genome editing. Trends Plant Sci 20:145–149

3. Barbosa EGG, Leite JP, Marin SR, Marinho JP, de Fatima Correa Carvalho J, Fuganti-Pagliarini R, Farias JR, Neumaier N, Marcelino-Guimaraes FC, de Oliveira MC, Yamaguchi-Shinozaki K (2013) Overexpression of the ABA-dependent AREB1 transcription factor from Arabidopsis thaliana improves soybean tolerance to water deficit. Plant Mol Biol Report 31:719–730

4. Biswal AK, Mangrauthia SK, Reddy MR, Yugandhar P (2019) CRISPR mediated genome engineering to develop climate smart rice: challenges and opportunities. In: Davey J (ed) Seminars in cell and developmental biology, vol 96. Academic Press, USA, pp 100–106

5. Bo W, Zhaohui Z, Huanhuan Z, Xia W, Binglin L, Lijia Y, Xiangyan H, Deshui Y, Xuelian Z, Chunguo W (2019) Targeted mutagenesis of NAC transcription factor gene, OsNAC041, leading to salt sensitivity in rice. Rice Sci 26(2):98–10

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