Institute of Virology and Biotechnology, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, Zhejiang, People's Republic of China.
Plant Mol Biol. 2014 Dec;86(6):655-69. doi: 10.1007/s11103-014-0254-1. Epub 2014 Oct 15.
Phosphorus is one of the most essential and limiting nutrients in all living organisms, thus the organisms have evolved complicated and precise regulatory mechanisms for phosphorus acquisition, storage and homeostasis. In the budding yeast, Saccharomyces cerevisiae, the modification of PHO4 by the PHO80 and PHO85 complex is a core regulation system. However, the existence and possible functions in phosphate signaling of the homologs of the PHO80 and PHO85 components in plants has yet to be determined. Here we describe the identification of a family of seven PHO80 homologous genes in rice named OsCYCPs. Among these, the OsCYCP1;1 gene was able to partially rescue the pho80 mutant strain of yeast. The OsCYCP1;1 protein was predominantly localized in the nucleus, and was ubiquitously expressed throughout the whole plant and during the entire growth period of rice. Consistent with the negative role of PHO80 in phosphate signaling in yeast, OsCYCP1;1 expression was reduced by phosphate starvation in the roots. This reduction was dependent on PHR2, the central regulator of phosphate signaling in rice. Overexpression and suppression of the expression of OsCYCP1;1 influenced the phosphate starvation signaling response. The inducible expression of phosphate starvation inducible and phosphate transporter genes was suppressed in the OsCYCP1;1 overexpression lines and was relatively enhanced in the OsCYCP1;1 RNAi plants by phosphate starvation. Together, these results demonstrate the role of PHO80 homologs in the phosphate starvation signaling pathway in rice.
磷是所有生物中最重要和最有限的营养物质之一,因此生物进化出了复杂而精确的磷获取、储存和稳态调节机制。在芽殖酵母酿酒酵母中,PHO80 和 PHO85 复合物对 PHO4 的修饰是一个核心调节系统。然而,植物中 PHO80 和 PHO85 成分的同源物在磷酸盐信号中的存在和可能的功能尚未确定。在这里,我们描述了在水稻中鉴定到一组七个 PHO80 同源基因,命名为 OsCYCPs。在这些基因中,OsCYCP1;1 基因能够部分挽救酵母 pho80 突变株。OsCYCP1;1 蛋白主要定位于细胞核内,在整个植物中广泛表达,并在水稻的整个生长期间表达。与 PHO80 在酵母磷酸盐信号中的负调控作用一致,OsCYCP1;1 的表达在根部缺磷时减少。这种减少依赖于 PHR2,它是水稻中磷酸盐信号的中央调节剂。OsCYCP1;1 的过表达和表达抑制会影响磷酸盐饥饿信号反应。在 OsCYCP1;1 过表达系中,磷酸盐饥饿诱导和磷酸盐转运基因的诱导表达受到抑制,而在 OsCYCP1;1 RNAi 植物中,磷酸盐饥饿相对增强。总之,这些结果表明 PHO80 同源物在水稻磷酸盐饥饿信号通路中发挥作用。