Kwak K J, Kim Y O, Kang H. Characterization of transgenic Arabidopsis plants overexpressing GR-RBP4 under high salinity, dehydration, or cold stress [J]. J Exp Bot, 2005, 56(421): 3007-3016
[2]
Gómez J, Sánchez-Martínez D, Stiefel V, et al. A gene induced by the plant hormone abscisic acid in response to water stress encodes a glycine-rich protein [J]. Nature, 1988, 334(6179): 262-264
[3]
Van Nocker S, Vierstra R D. Two cDNAs from Arabidopsis thaliana encode putative RNA binding proteins containing glycine-rich domains[J]. Plant Molecular Biology, 1993, 21(4): 695-699
[4]
Carpenter C D, Kreps J A, Simon A E. Genes encoding glycine-rich Arabidopsis thaliana proteins with RNA-binding motifs are influenced by cold treatment and an endogenous circadian rhythm[J]. Plant Physiology, 1994, 104(3): 1015-1025
[5]
Hirose T, Sugita M, Sugiura M. cDNA structure, expression and nucleic-acid binding properties of three RNA-binding proteins in tobacco: occurrence of tissue alternative splicing[J]. Nucleic Acids Research, 1993, 21(17): 3981-3987
[6]
Moriguchi K, Sugita M, Sugiura M. Structure and subcellular localization of a small RNA-binding protein from tabacco[J]. The Plant Journal, 1997, 12(1): 215-212
[7]
Dunn M A, Brown K, Lightowlers R, et al. A lowtemperature-responsive gene from barley encodes a protein with single-stranded nucleic acid-binding activity which is phosphorylatedin vitro[J]. Plant Molecular Biology, 1996, 30(5): 947-959
[8]
Molina A, Mena M, Carbonero P, et al. Differential expression of pathogen-responsive genes encoding two types of glycine-rich proteins in barley[J]. Plant Molecular Biology, 1997, 33(5): 803-810
[9]
Bergeron D, Beauseigle D, Bellemare G. Sequence and expression of a gene encoding a protein with RNA-binding and glycine-rich domains in Brassica napus[J]. Biochimica et Biophysca Acta, 1993, 1216(1):123-125
[10]
Horvath D P, Olson P A. Cloning and characterization of coldregulated glycine-rich RNA-binding protein genes from leafy spurge (Euphorbia esula L.) and comparison to heterologous genomic clones[J]. Plant Molecular Biology, 1998, 38(4):531-538
[11]
Richard S, Drevet C, Jouanin L, et al. Isolation and characterization of a cDNA clone encoding a putative white spruce glycine-rich RNA binding protein[J]. Gene, 1999, 240(2): 379-388
[12]
Stephen J R, Dent K C, Finch-Savage W E. A cDNA encoding a cold-induced glycine-rich RNA binding protein from Prunus avium expressed in embryonic axes[J]. Gene, 2003, 320(27): 177-183
[13]
Ferullo J M, Ve\'zina L P, Rail J, et al.. Differential accumulation of two glycinerich proteins during cold-acclimation alfalfa[J]. Plant Molecular Biology, 1997, 33(4): 625-633
Livak K J, Schmittgen T D. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method [J]. Methods, 2001, 25(4): 402-408
Ringli C, Keller B, Ryser U. Glycine-richu proteins as structural components of plant cell walls[J]. Cell Mol Life Sci, 2001, 58(10): 1430-1441
[20]
Lorkovic Z J. Role of plant RNA-binding proteins in development, stress response and genome organization Trends [J]. Plant Sci, 2009, 14(4): 229-236
[21]
Kim J Y, Park S J, Jang B, et al. Functional characterization of a glycine-rich RNA-binding protein 2 in Arabidopsis thaliana under abiotic stress conditions[J]. Plant J, 2007, 50(3): 439-451
[22]
Kim J S, Jung H J, Lee H J, et al. Glycine-rich RNA-binding protein 7 affects abiotic stress responses by regulating stomata opening and closing in Arabidopsis thaliana[J]. Plant J, 2008, 55(3): 455-466
[23]
Kim Y O, Kim J S, Kang H. Cold-inducible zinc finger-containing glycine-rich RNA-binding protein contributes to the enhancement of freezing tolerance in Arabidopsis thaliana[J]. Plant J, 2005, 42(6): 890-900
[24]
Aneeta, Sanan-Mishra N, Tuteja N, et al. Salinity- and ABA-induced up-regulation and light-mediated modulation of mRNA encoding glycine-rich RNA-binding protein from Sorghum bicolor[J]. Biochem Biophys Res Commun, 2002, 296(5): 1063-1068
[25]
Nomata T, Kabeya Y, Cloning S N. characterization of glycine-rich RNA-binding protein cDNAs in the moss Physcomitrella patens[J]. Plant Cell Physiol, 2004, 45(1): 48-56
[26]
Shinozuka H, Hisano H, Yoneyama S, et al. Gene expression and genetic mapping analyses of a perennial ryegrass glycine-rich RNA-binding protein gene suggest a role in cold adaptation[J]. Mol Genet Genomics, 2006, 275(4): 399-408