Liang Mingxiang, Yin Xiangzhen, Lin Zhongyuan, Zheng Qingsong, Liu Guohong, Zhao Gengmao
College of Resources and Environmental Sciences, Nanjing Agricultural University, Tongwei Road 6, Xuanwu District, Nanjing, 210095, Jiangsu Province, China,
Planta. 2014 Jan;239(1):107-26. doi: 10.1007/s00425-013-1964-3. Epub 2013 Oct 6.
NF-Y (NUCLEAR FACTOR-Y), a heterotrimeric transcription factor, is composed of NF-YA, NF-YB, and NF-YC proteins in yeast, animal, and plant systems. In plants, each of the NF-YA/B/C subunit forms a multi-member family. NF-Ys are key regulators with important roles in many physiological processes, such as drought tolerance, flowering time, and seed development. In this study, we identified, annotated, and further characterized 14 NF-YA, 14 NF-YB, and 5 NF-YC proteins in Brassica napus (canola). Phylogenetic analysis revealed that the NF-YA/B/C subunits were more closely clustered with the Arabidopsis thaliana (Arabidopsis) homologs than with rice OsHAP2/3/5 subunits. Analyses of the conserved domain indicated that the BnNF-YA/B/C subfamilies, respectively, shared the same conserved domains with those in other organisms, including Homo sapiens, Saccharomyces cerevisiae, Arabidopsis, and Oryza sativa (rice). An examination of exon/intron structures revealed that most gene structures of BnNF-Y were similar to their homologs in Arabidopsis, a model dicot plant, but different from those in the model monocot plant rice, suggesting that plant NF-Ys diverged before monocot and dicot plants differentiated. Spatial-tempo expression patterns, as determined by qRT-PCR, showed that most BnNF-Ys were widely expressed in different tissues throughout the canola life cycle and that several closely related BnNF-Y subunits had similar expression profiles. Based on these findings, we predict that BnNF-Y proteins have functions that are conserved in the homologous proteins in other plants. This study provides the first extensive evaluation of the BnNF-Y family, and provides a useful foundation for dissecting the functions of BnNF-Y.
核因子Y(NF-Y)是一种异源三聚体转录因子,在酵母、动物和植物系统中由NF-YA、NF-YB和NF-YC蛋白组成。在植物中,NF-YA/B/C亚基各自形成一个多成员家族。NF-Y是关键调节因子,在许多生理过程中发挥重要作用,如耐旱性、开花时间和种子发育。在本研究中,我们在甘蓝型油菜(油菜)中鉴定、注释并进一步表征了14个NF-YA、14个NF-YB和5个NF-YC蛋白。系统发育分析表明,与水稻OsHAP2/3/5亚基相比,NF-YA/B/C亚基与拟南芥同源物的聚类关系更密切。保守结构域分析表明,BnNF-YA/B/C亚家族分别与其他生物体(包括智人、酿酒酵母、拟南芥和水稻)中的保守结构域相同。外显子/内含子结构检查表明,BnNF-Y的大多数基因结构与其在双子叶植物模型拟南芥中的同源物相似,但与单子叶植物模型水稻中的不同,这表明植物NF-Y在单子叶植物和双子叶植物分化之前就已经分化。通过qRT-PCR确定的时空表达模式表明,大多数BnNF-Y在油菜整个生命周期的不同组织中广泛表达,并且几个密切相关的BnNF-Y亚基具有相似的表达谱。基于这些发现,我们预测BnNF-Y蛋白具有在其他植物同源蛋白中保守的功能。本研究首次对BnNF-Y家族进行了广泛评估,并为剖析BnNF-Y的功能提供了有用的基础。