CsmiR396d targeting of <i>CsGS2</i> plays an important role in glutamine metabolism of tea plant (<i>Camellia sinensis</i>)
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Maximum Academic Press
Subject
Ocean Engineering
Reference36 articles.
1. Bernard SM, Habash DZ. 2009. The importance of cytosolic glutamine synthetase in nitrogen assimilation and recycling. New Phytologist 182:608−20
Bernard SM, Habash DZ. 2009. The importance of cytosolic glutamine synthetase in nitrogen assimilation and recycling. New Phytologist 182:608−20
2. Kissen R, Winge P, Tran DHT, Jørstad TS, Størseth TR, et al. 2010. Transcriptional profiling of an Fd-GOGAT1/GLU1 mutant in Arabidopsis thaliana reveals a multiple stress response and extensive reprogramming of the transcriptome. BMC Genomics 11:190
Kissen R, Winge P, Tran DHT, Jørstad TS, Størseth TR, et al. 2010. Transcriptional profiling of an Fd-GOGAT1/GLU1 mutant in Arabidopsis thaliana reveals a multiple stress response and extensive reprogramming of the transcriptome. BMC Genomics 11:190
3. Lea PJ, Miflin BJ. 1974. Alternative route for nitrogen assimilation in higher plants. Nature 251:614−16
Lea PJ, Miflin BJ. 1974. Alternative route for nitrogen assimilation in higher plants. Nature 251:614−16
4. Swarbreck SM, Defoin-Platel M, Hindle M, Saqi M, Habash DZ. 2011. New perspectives on glutamine synthetase in grasses. Journal of Experimental Botany 62:1511−22
Swarbreck SM, Defoin-Platel M, Hindle M, Saqi M, Habash DZ. 2011. New perspectives on glutamine synthetase in grasses. Journal of Experimental Botany 62:1511−22
5. Wang Y, Wang YM, Lu YT, Qiu QL, Fan DM, et al. 2021. Influence of different nitrogen sources on carbon and nitrogen metabolism and gene expression in tea plants (Camellia sinensis L.). Plant Physiology and Biochemistry 167:561−66
Wang Y, Wang YM, Lu YT, Qiu QL, Fan DM, et al. 2021. Influence of different nitrogen sources on carbon and nitrogen metabolism and gene expression in tea plants (Camellia sinensis L.). Plant Physiology and Biochemistry 167:561−66
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