Hwang Yoon-Hyung, Kim Soon-Kap, Lee Keh Chien, Chung Young Soo, Lee Jeong Hwan, Kim Jeong-Kook
Division of Life Sciences, Korea University, Anam-dong 5 ga, Seongbuk-gu, Seoul, 136-701, Republic of Korea.
Department of Bioresource Engineering, Sejong University, 98 Gunja-dong, Gwangjin-gu, Seoul, 143-747, Republic of Korea.
Plant Cell Rep. 2016 Apr;35(4):857-65. doi: 10.1007/s00299-015-1927-1. Epub 2016 Jan 11.
Rice Os NF - YB and Os NF - YC complement the late flowering phenotype of Arabidopsis nf - yb double and nf - yc triple mutants, respectively. In addition, OsNF-YB and OsNF-YC interact with AtNF-YC and AtNF-YB, respectively. Plant NUCLEAR FACTOR Y (NF-Y) transcription factors play important roles in plant development and abiotic stress. In Arabidopsis thaliana, two NF-YB (AtNF-YB2 and AtNF-YB3) and five NF-YC (AtNF-YC1, AtNF-YC2, AtNF-YC3, AtNF-YC4, and AtNF-YC9) genes regulate photoperiodic flowering by interacting with other AtNF-Y subunit proteins. Three rice NF-YB (OsNF-YB8, OsNF-YB10, and OsNF-YB11) and five rice OsNF-YC (OsNF-YC1, OsNF-YC2, OsNF-YC4, OsNF-YC6, and OsNF-YC7) genes are clustered with two AtNF-YB and five AtNF-YC genes, respectively. To investigate the functional conservation of these NF-YB and NF-YC genes in rice and Arabidopsis, we analyzed the flowering phenotypes of transgenic plants overexpressing the respective OsNF-YB and OsNF-YC genes in Arabidopsis mutants. Overexpression of OsNF-YB8/10/11 and OsNF-YC2 complemented the late flowering phenotype of Arabidopsis nf-yb2 nf-yb3 and nf-yc3 nf-yc4 nf-yc9 mutants, respectively. The rescued phenotype of 35S::OsNF-YC2 nf-yc3 nf-yc4 nf-yc9 plants was attributed to the upregulation of FLOWERING LOCUS T (FT) and SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1 (SOC1). In vitro and in planta protein-protein analyses revealed that OsNF-YB8/10/11 and OsNF-YC1/2/4/6/7 interact with AtNF-YC3/4/9 and AtNF-YB2/3, respectively. Our data indicate that some OsNF-YB and OsNF-YC genes are functional equivalents of AtNF-YB2/3 and AtNF-YC3/4/9 genes, respectively, and suggest functional conservation of Arabidopsis and rice NF-Y genes in the control of flowering time.
水稻Os NF - YB和Os NF - YC分别互补拟南芥nf - yb双突变体和nf - yc三突变体的晚花表型。此外,OsNF - YB和OsNF - YC分别与AtNF - YC和AtNF - YB相互作用。植物核因子Y(NF - Y)转录因子在植物发育和非生物胁迫中起重要作用。在拟南芥中,两个NF - YB(AtNF - YB2和AtNF - YB3)基因和五个NF - YC(AtNF - YC1、AtNF - YC2、AtNF - YC3、AtNF - YC4和AtNF - YC9)基因通过与其他AtNF - Y亚基蛋白相互作用来调节光周期开花。三个水稻NF - YB(OsNF - YB8、OsNF - YB10和OsNF - YB11)基因和五个水稻OsNF - YC(OsNF - YC1、OsNF - YC2、OsNF - YC4、OsNF - YC6和OsNF - YC7)基因分别与两个AtNF - YB基因和五个AtNF - YC基因成簇。为了研究这些NF - YB和NF - YC基因在水稻和拟南芥中的功能保守性,我们分析了在拟南芥突变体中过表达各自的OsNF - YB和OsNF - YC基因的转基因植物的开花表型。OsNF - YB8/10/11和OsNF - YC2的过表达分别互补了拟南芥nf - yb2 nf - yb3和nf - yc3 nf - yc4 nf - yc9突变体的晚花表型。35S::OsNF - YC2 nf - yc3 nf - yc4 nf - yc9植株的表型恢复归因于开花位点T(FT)和CONSTANS过表达抑制因子1(SOC1)的上调。体外和体内蛋白质 - 蛋白质分析表明,OsNF - YB8/10/11和OsNF - YC1/2/4/6/7分别与AtNF - YC3/4/9和AtNF - YB2/3相互作用。我们的数据表明,一些OsNF - YB和OsNF - YC基因分别是AtNF - YB2/3和AtNF - YC3/4/9基因的功能等同物,并表明拟南芥和水稻NF - Y基因在控制开花时间方面具有功能保守性。