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F-Box Proteins in Rice. Genome-Wide Analysis, Classification, Temporal and Spatial Gene Expression during Panicle and Seed Development, and Regulation by Light and Abiotic Stress1[W][OA]

机译:水稻中的F-Box蛋白。穗和种子发育过程中的全基因组分析,分类,时空基因表达,以及光和非生物胁迫的调控1 [W] [OA]

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摘要

F-box proteins constitute a large family in eukaryotes and are characterized by a conserved F-box motif (approximately 40 amino acids). As components of the Skp1p-cullin-F-box complex, F-box proteins are critical for the controlled degradation of cellular proteins. We have identified 687 potential F-box proteins in rice (Oryza sativa), the model monocotyledonous plant, by a reiterative database search. Computational analysis revealed the presence of several other functional domains, including leucine-rich repeats, kelch repeats, F-box associated domain, domain of unknown function, and tubby domain in F-box proteins. Based upon their domain composition, they have been classified into 10 subfamilies. Several putative novel conserved motifs have been identified in F-box proteins, which do not contain any other known functional domain. An analysis of a complete set of F-box proteins in rice is presented, including classification, chromosomal location, conserved motifs, and phylogenetic relationship. It appears that the expansion of F-box family in rice, in large part, might have occurred due to localized gene duplications. Furthermore, comprehensive digital expression analysis of F-box protein-encoding genes has been complemented with microarray analysis. The results reveal specific and/or overlapping expression of rice F-box protein-encoding genes during floral transition as well as panicle and seed development. At least 43 F-box protein-encoding genes have been found to be differentially expressed in rice seedlings subjected to different abiotic stress conditions. The expression of several F-box protein-encoding genes is also influenced by light. The structure and function of F-box proteins in plants is discussed in light of these results and the published information. These data will be useful for prioritization of F-box proteins for functional validation in rice.
机译:F-box蛋白在真核生物中构成一个大家族,其特征是保守的F-box基序(约40个氨基酸)。作为Skp1p-cullin-F-box复合物的组成部分,F-box蛋白对于细胞蛋白的受控降解至关重要。通过重复数据库搜索,我们已经在水稻(单子叶植物模型)中鉴定出687种潜在的F-box蛋白。计算分析表明,F盒蛋白中还存在其他几个功能域,包括富亮氨酸重复序列,海切重复序列,F盒相关域,功能未知的域和tubby域。根据它们的域组成,它们已分为10个亚科。在F-box蛋白中已鉴定出几种推定的新型保守基序,它们不包含任何其他已知的功能域。介绍了水稻中完整的F-box蛋白分析,包括分类,染色体位置,保守基序和系统发育关系。看来,F-box家族在水稻中的扩展在很大程度上可能是由于局部基因重复引起的。此外,F-box蛋白编码基因的全面数字表达分析已得到微阵列分析的补充。结果揭示了水稻F-box蛋白编码基因在花序过渡以及穗和种子发育过程中的特异性和/或重叠表达。已发现至少43个F-box蛋白编码基因在遭受不同非生物胁迫条件的水稻幼苗中差异表达。几种F-box蛋白质编码基因的表达也受光的影响。根据这些结果和公开的信息,对植物中F-box蛋白的结构和功能进行了讨论。这些数据将有助于确定F-box蛋白的优先级,以进行水稻功能验证。

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