Plant Genomics Lab, Department of Applied Plant Sciences Technology, Kangwon National University, Chuncheon, 200-713, Korea.
Plant Mol Biol. 2010 Mar;72(4-5):369-80. doi: 10.1007/s11103-009-9576-9. Epub 2009 Dec 3.
The proteins harboring RING finger motif(s) have been shown to mediate protein-protein interactions that are relevant to a variety of cellular processes. In an effort to elucidate the evolutionary dynamics of the rice RING finger protein family, we have attempted to determine their genomic locations, expression diversity, and co-expressed genes via in silico analysis and semi-quantitative RT-PCR. A total of 425 retrieved genes appear to be distributed over all 12 of the chromosomes of rice with different distributions, and are reflective of the evolutionary dynamics of the rice genome. A genome-wide dataset harboring 155 gene expression omnibus sample plates evidenced some degree of differential evolutionary fates between members of RING-H2 and RING-HC types. Additionally, responses to abiotic stresses, such as salinity and drought, demonstrated that some degree of expression diversity existed between members of the RING finger protein genes. Interestingly, we determined that one RING-H2 finger protein gene (Os04g51400) manifested striking differences in expression patterns in response to abiotic stresses between leaf and culm-node tissues, further revealing responses highly similar to the majority of randomly selected co-expressed genes. The gene network of genes co-expressed with Os04g51400 may suggest some role in the salt response of the gene. These findings may shed further light on the evolutionary dynamics and molecular functional diversity of these proteins in complex cellular regulations.
富含 RING 指结构域的蛋白质已被证明介导与各种细胞过程相关的蛋白质-蛋白质相互作用。为了阐明水稻 RING 指蛋白家族的进化动态,我们试图通过计算机分析和半定量 RT-PCR 确定它们的基因组位置、表达多样性和共表达基因。总共检索到的 425 个基因似乎分布在水稻的 12 条染色体上,分布情况不同,反映了水稻基因组的进化动态。包含 155 个基因表达综合数据集的基因组数据集表明,RING-H2 和 RING-HC 类型的成员之间存在一定程度的差异进化命运。此外,对非生物胁迫(如盐度和干旱)的响应表明,RING 指蛋白基因的成员之间存在一定程度的表达多样性。有趣的是,我们确定一个 RING-H2 指蛋白基因(Os04g51400)在叶片和节间组织对非生物胁迫的表达模式存在显著差异,进一步揭示了与大多数随机选择的共表达基因高度相似的响应。与 Os04g51400 共表达的基因的基因网络可能暗示该基因在盐响应中具有某种作用。这些发现可能进一步阐明这些蛋白质在复杂细胞调节中的进化动态和分子功能多样性。