Kwak Kyung Jin, Kim Yeon Ok, Kang Hunseung
Division of Applied Plant Science and Agricultural Plant Stress Research Center, College of Agriculture and Life Sciences, Chonnam National University, 300 Youngbong-Dong, Buk-gu, Gwangju 500-757, South Korea.
J Exp Bot. 2005 Nov;56(421):3007-16. doi: 10.1093/jxb/eri298. Epub 2005 Oct 5.
A glycine-rich RNA-binding protein4 (GR-RBP4), one of the eight GR-RBP family members in Arabidopsis thaliana, was investigated for its stress-related expression, nucleic acid-binding property, and functional roles in plants subjected to various stresses including cold, high salinity, and dehydration. Real-time RT-PCR and GUS expression analyses showed that GR-RBP4 was abundantly expressed in young plants, root tips, and flowers, but weakly in mature leaves and stems, implying that GR-RBP4 is highly expressed in actively proliferating organs. The transcript level of GR-RBP4 increased markedly with cold stress, decreased significantly with salt stress, and decreased slightly with dehydration stress. In vitro nucleic acid-binding assays revealed that GR-RBP4 protein binds sequence non-specifically to RNAs and DNAs. Characterization of the transgenic Arabidopsis plants overexpressing GR-RBP4 under the control of the 35S promoter revealed that 35S::GR-RBP4 lines displayed retarded germination compared with the wild type under salt or dehydration stress. Despite the marked up-regulation of GR-RBP4 expression by cold stress, the 35S::GR-RBP4 lines did not show any noticeable changes in cold or freezing tolerance compared with wild-type plants. These results indicate that GR-RBP4 contributes differently to altered germination and seedling growth of Arabidopsis plants under various stress conditions.
富含甘氨酸的RNA结合蛋白4(GR-RBP4)是拟南芥中八个GR-RBP家族成员之一,本研究对其在包括寒冷、高盐和脱水在内的各种胁迫下的植物中与胁迫相关的表达、核酸结合特性及功能作用进行了探究。实时逆转录聚合酶链反应(Real-time RT-PCR)和GUS表达分析表明,GR-RBP4在幼嫩植株、根尖和花中大量表达,而在成熟叶片和茎中表达较弱,这意味着GR-RBP4在活跃增殖的器官中高表达。GR-RBP4的转录水平在冷胁迫下显著升高,在盐胁迫下显著降低,在脱水胁迫下略有降低。体外核酸结合试验表明,GR-RBP4蛋白与RNA和DNA的结合不具有序列特异性。对在35S启动子控制下过表达GR-RBP4的转基因拟南芥植株的特性分析表明,在盐胁迫或脱水胁迫下,与野生型相比,35S::GR-RBP4株系的种子萌发延迟。尽管冷胁迫使GR-RBP4的表达显著上调,但与野生型植株相比,35S::GR-RBP4株系在耐寒性或耐冻性方面未表现出任何明显变化。这些结果表明,GR-RBP4在不同胁迫条件下对拟南芥植株萌发和幼苗生长的改变有不同贡献。