Cui Hao-Ran, Zhang Zheng-Rong, Lv Wei, Xu Jia-Ning, Wang Xiao-Yun
College of Life Science, State Key Laboratory of Crop Biology, Shandong Agricultural University, Taian, 271018, Shandong, People's Republic of China.
Mol Genet Genomics. 2015 Aug;290(4):1435-46. doi: 10.1007/s00438-015-1004-z. Epub 2015 Feb 18.
The F-box protein family is a large family that is characterized by conserved F-box domains of approximately 40-50 amino acids in the N-terminus. F-box proteins participate in diverse cellular processes, such as development of floral organs, signal transduction and response to stress, primarily as a component of the Skp1-cullin-F-box (SCF) complex. In this study, using a global search of the apple genome, 517 F-box protein-encoding genes (F-box genes for short) were identified and further subdivided into 12 groups according to the characterization of known functional domains, which suggests the different potential functions or processes that they were involved in. Among these domains, the galactose oxidase domain was analyzed for the first time in plants, and this domain was present with or without the Kelch domain. The F-box genes were distributed in all 17 apple chromosomes with various densities and tended to form gene clusters. Spatial expression profile analysis revealed that F-box genes have organ-specific expression and are widely expressed in all organs. Proteins that contained the galactose oxidase domain were highly expressed in leaves, flowers and seeds. From a fruit ripening expression profile, 166 F-box genes were identified. The expressions of most of these genes changed little during maturation, but five of them increased significantly. Using qRT-PCR to examine the expression of F-box genes encoding proteins with domains related to stress, the results revealed that F-box proteins were up- or down-regulated, which suggests that F-box genes were involved in abiotic stress. The results of this study helped to elucidate the functions of F-box proteins, especially in Rosaceae plants.
F-box蛋白家族是一个大家族,其特征是在N端有一个约40-50个氨基酸的保守F-box结构域。F-box蛋白主要作为Skp1- cullin-F-box(SCF)复合体的一个组成部分,参与多种细胞过程,如花器官发育、信号转导和应激反应。在本研究中,通过对苹果基因组进行全面搜索,鉴定出517个编码F-box蛋白的基因(简称F-box基因),并根据已知功能结构域的特征将其进一步细分为12组,这表明它们参与了不同的潜在功能或过程。在这些结构域中,首次在植物中分析了半乳糖氧化酶结构域,该结构域存在或不存在Kelch结构域。F-box基因以不同密度分布在苹果的所有17条染色体上,并倾向于形成基因簇。空间表达谱分析表明,F-box基因具有器官特异性表达,在所有器官中广泛表达。含有半乳糖氧化酶结构域的蛋白质在叶、花和种子中高表达。从果实成熟表达谱中,鉴定出166个F-box基因。这些基因中的大多数在成熟过程中表达变化不大,但其中5个基因显著增加。利用qRT-PCR检测编码与胁迫相关结构域蛋白的F-box基因的表达,结果表明F-box蛋白表达上调或下调,这表明F-box基因参与了非生物胁迫。本研究结果有助于阐明F-box蛋白的功能,特别是在蔷薇科植物中的功能。