Chen Hung-Chi, Hsieh-Feng Vicki, Liao Pei-Chun, Cheng Wan-Hsing, Liu Li-Yu, Yang Yun-Wei, Lai Ming-Hsin, Chang Men-Chi
Department of Agronomy, National Taiwan University, Taipei, Taiwan, ROC.
Institute of Plant and Microbial Biology, Academia Sinica, Taipei, Taiwan, ROC.
Plant Mol Biol. 2017 Jul;94(4-5):531-548. doi: 10.1007/s11103-017-0624-6. Epub 2017 Jun 19.
The homologous genes OsbHLH068 and AtbHLH112 have partially redundant functions in the regulation of the salt stress response but opposite functions to control flowering in Arabidopsis. The transcription factor (TF) basic/Helix-Loop-Helix (bHLH) is important for plant growth, development, and stress responses. OsbHLH068, which is a homologous gene of AtbHLH112 that is up-regulated under drought and salt stresses, as indicated by previous microarray data analysis. However, the intrinsic function of OsbHLH068 remains unknown. In the present study, we characterized the function and compared the role of OsbHLH068 with that of its homolog, AtbHLH112. Histochemical GUS staining indicated that OsbHLH068 and AtbHLH112 share a similar expression pattern in transgenic Arabidopsis during the juvenile-to-adult phase transition. Heterologous overexpression of OsbHLH068 in Arabidopsis delays seed germination, decreases salt-induced HO accumulation, and promotes root elongation, whereas AtbHLH112 knock-out mutant displays an opposite phenotype. Both OsbHLH068-overexpressing transgenic Arabidopsis seedlings and the Atbhlh112 mutant display a late-flowering phenotype. Moreover, the expression of OsbHLH068-GFP driven by an AtbHLH112 promoter can compensate for the germination deficiency in the Atbhlh112 mutant, but the delayed-flowering phenotype tends to be more severe. Further analysis by microarray and qPCR indicated that the expression of FT is down-regulated in both OsbHLH068-overexpressing Arabidopsis plants and Atbhlh112 mutant plants, whereas SOC1 but not FT is highly expressed in AtbHLH112-overexpressing Arabidopsis plants. A comparative transcriptomic analysis also showed that several stress-responsive genes, such as AtERF15 and AtPUB23, were affected in both OsbHLH068- and AtbHLH112-overexpressing transgenic Arabidopsis plants. Thus, we propose that OsbHLH068 and AtbHLH112 share partially redundant functions in the regulation of abiotic stress responses but have opposite functions to control flowering in Arabidopsis, presumably due to the evolutionary functional divergence of homolog-encoded proteins.
同源基因OsbHLH068和AtbHLH112在盐胁迫响应调控中具有部分冗余功能,但在拟南芥开花控制方面具有相反功能。转录因子(TF)碱性/螺旋-环-螺旋(bHLH)对植物生长、发育和胁迫响应至关重要。OsbHLH068是AtbHLH112的同源基因,先前的微阵列数据分析表明,AtbHLH112在干旱和盐胁迫下上调。然而,OsbHLH068的内在功能仍然未知。在本研究中,我们对OsbHLH068的功能进行了表征,并将其与同源基因AtbHLH112的作用进行了比较。组织化学GUS染色表明,OsbHLH068和AtbHLH112在转基因拟南芥从幼年到成年阶段转变过程中具有相似的表达模式。OsbHLH068在拟南芥中的异源过表达延迟了种子萌发,降低了盐诱导的HO积累,并促进了根的伸长,而AtbHLH112敲除突变体表现出相反的表型。过表达OsbHLH068的转基因拟南芥幼苗和Atbhlh112突变体均表现出晚花表型。此外,由AtbHLH112启动子驱动的OsbHLH068-GFP的表达可以弥补Atbhlh112突变体中的萌发缺陷,但晚花表型往往更严重。通过微阵列和qPCR进一步分析表明,在过表达OsbHLH068的拟南芥植株和Atbhlh112突变体植株中,FT的表达均下调,而过表达AtbHLH112的拟南芥植株中SOC1高表达而FT不高表达。比较转录组分析还表明,一些胁迫响应基因,如AtERF15和AtPUB23,在过表达OsbHLH068和AtbHLH112的转基因拟南芥植株中均受到影响。因此,我们认为OsbHLH068和AtbHLH112在非生物胁迫响应调控中具有部分冗余功能,但在拟南芥开花控制方面具有相反功能,这可能是由于同源编码蛋白的进化功能差异所致。