He Li, Peng Shan, Lin Ruihua, Zhang Jiahui, Cui Peng, Gan Yi, Liu Hongbo
College of Advanced Agricultural Sciences, Zhejiang A & F University, Hangzhou 311300, China.
Plants (Basel). 2025 Jul 3;14(13):2036. doi: 10.3390/plants14132036.
The investigation of phosphorus metabolism and regulatory mechanisms is conducive to maintaining stable production of crops within a low-phosphorus environment. In phosphorus signal transduction, a few phosphorus starvation response (PHR) transcription factors were identified to bind to the characteristic -element, namely the PHR1 binding sequence (P1BS). While the molecular function of the PHR transcription factor has been intensively elucidated, here, we explore a novel transcription factor, BnaA01.KAN3, that undergoes specific binding to the P1BS by yeast one-hybrid and electrophoretic mobility shift assays, and its expression is induced with low-phosphorus stress. BnaA01.KAN3 possessed transcriptional activation and was located in the nucleus. The spatiotemporal expression pattern of exhibited tissue specificity in developmental seed, and its expression level was especially high 25-30 days after pollination. Regarding the phenotype analysis, the independent heterologous overexpression lines of in exhibited not only significantly longer taproots but also an increased number of lateral roots compared to that of the wild type undergoing low-phosphorus treatment, while no differences were seen under normal phosphorus conditions. Furthermore, these lines showed higher anthocyanin and inorganic phosphorus contents with normal and low-phosphorus treatment, suggesting that could enhance phosphorus uptake or remobilization to cope with low-phosphorus stress. In summary, this study characterized the transcription factor that modulates low-phosphate adaptation and seed development, providing insights for improving phosphorus use efficiency and yield traits in .
对磷代谢及其调控机制的研究有助于在低磷环境下维持作物的稳定产量。在磷信号转导过程中,已鉴定出一些磷饥饿响应(PHR)转录因子可与特征元件即PHR1结合序列(P1BS)相结合。尽管PHR转录因子的分子功能已得到深入阐明,但在此我们探索一种新型转录因子BnaA01.KAN3,通过酵母单杂交和电泳迁移率变动分析发现其可与P1BS特异性结合,并且其表达受低磷胁迫诱导。BnaA01.KAN3具有转录激活功能且定位于细胞核。其时空表达模式在发育中的种子中表现出组织特异性,授粉后25 - 30天其表达水平尤其高。关于表型分析,与低磷处理的野生型相比,BnaA01.KAN3在拟南芥中的独立异源过表达株系不仅主根显著更长,侧根数量也有所增加,而在正常磷条件下未见差异。此外,这些株系在正常和低磷处理下均表现出较高的花青素和无机磷含量,表明BnaA01.KAN3可增强磷吸收或再转运以应对低磷胁迫。总之,本研究对调控低磷适应和种子发育的转录因子BnaA01.KAN3进行了表征,为提高油菜的磷利用效率和产量性状提供了见解。