Sun H, Huang QM, Su J. Highly effective expression of glutamine synthetase genes GS1 and GS2 in transgenic rice plants increases nitrogen-deficiency tolerance [J]. Journal of Plant Physiology and Molecular Biology, 2005, 31(5):492-498.
[3]
Man HM, Boriel R, El-Khatib R, Kirby EG. Characterization of transgenic poplar with ectopic expression of pine cytosolic glutamine synthetase under conditions of varying nitrogen availability [J]. New Phytologist, 2005, 167(1):31-39.
[4]
Fuentes SI, Allen DJ, Ortiz-Lopez A, et al. Overexpression of cytosolic glutamine synthetase increases photosynthesis and growth at low nitrogen concentrations [J]. Exp Bot, 2001, 52:1071-1081.
[5]
Rana NK, Mohanpuria P, Yadav SK. Expression of tea cytosolic glutamine synthetase is tissue-specific and induced by cadmium and salt stress [J]. Biologia Plantarum, 2008, 52(2):361-364.
[6]
Lee HJ, Abdula SE, Jang DW, et al. Overexpression of the glutamine synthetase gene modulates oxidative stress response in rice after exposure to cadmium stress [J]. Plant Cell Rep, 2013, 32:1521-1529.
[7]
Pascual MB, Jing ZP, Kirby EG, et al. Response of transgenic poplar overexpressing cytosolic glutamine synthetase to phosphinothricin [J]. Phytochemistry, 2008, 69:382-389.
[8]
Tabuchi M, Sugiyama K, Ishiyama K, et al. Severe reduction in growth rate and grain filling of rice mutants lacking OsGS1;1, a cytosolic glutamine synthetase1;1 [J]. The Plant Jounal, 2005, 42:641-651.
[9]
Ishiyama K, Inoue E, Tkahashi AW, et al. Kinetic properties and ammonium-dependent regulation of cytosolic isoenzymes of glutam-ine synthetase in Arabidopsis [J]. Biol Chem, 2004, 279(16):16598-16605.
[10]
Martin A, Lee J, Kichey T, et al. Two cytosolic glutamine synthetase isoforms of maize are specifically involved in the control of grain production [J]. The Plant Cell, 2006, 18:3252-3274.
[11]
Teixeira J, Pereira S, Cánovas F, et al. Glutamine synthetase of potato(Solanum tuberosum L. cv. Désirée)plants:cell- and organ-specific expression and differential developmental regulation reveal specific roles in nitrogen assimilation and mobilization [J]. Experimental Botany, 2005, 56(412):663-671.
[12]
Castro-Rodríguez V, García-Gutiérrez A, Canales J, et al. The glutamine synthetase gene family in Populus [J]. BMC Plant Biology, 2011, 11:119.
[13]
Seabra AR, Vieira CP, Cullimore JV, et al. Medicago truncatula contains a second gene encoding a plastid located glutamine synthetase exclusively expressed in developing seeds [J]. BMC Plant Biology, 2010, 10:183-198.
Paula MM, Lígia ML, Isabel MS, et al. Expression of the plastid-located glutamine synthetase of Medicago truncatula accumulation of the precursor in root nodules reveals an in vivo control at the level of protein import into plastids [J]. Plant Physiol, 2003, 132(1):390-399.
[25]
Llorca O, Betti M, González JM, et al. The three-dimensional structure of an eukaryotic glutamine synthetase:Functional implications of its oligomeric structure [J]. J Struct Biol, 2006, 156:469-479.
[26]
Sakamoto A, Ogawa M, Masumura T, et al. Three cDNA sequences coding for glutamine synthetase polypeptides in Oryza sativa L. [J]. Plant Molecular Biology, 1989, 13:611-614.
[27]
Ochs G, Schock G, Trischler M, et al. Complexity and expression of the glutamine synthetase multigene family in the amphidiploid crop Brassica napus [J]. Plant Molecular Biology, 1999, 39:395-405.
[28]
Rana NK, Mohanpuria P, Yadav SK. Cloning and characterization of a cytosolic glutamine synthetase from Camellia sinensis(L.)O. Kuntze that is upregulated by ABA, SA, and H22O2 [J]. Mol Biotechnol, 2008, 39:49-56.