Zhou Keqin, Yamagishi Masumi, Osaki Mitsuru, Masuda Kiyoshi
Graduate School of Agriculture, Hokkaido University, N9W9, Kita-ku, Sapporo 060-8589, Japan.
J Exp Bot. 2008;59(10):2749-56. doi: 10.1093/jxb/ern130. Epub 2008 May 17.
Cluster root (CR) formation contributes much to the adaptation to phosphorus (P) deficiency. CR formation by white lupin (Lupinus albus L.) is affected by the P-limiting level in shoots, but not in roots. Thus, shoot-derived signals have been expected to transmit the message of P-deficiency to stimulate CR formation. In this study, it is shown that sugars are required for a response to P starvation including CR formation and the expression of P starvation-induced genes. White lupin plants were grown in vitro on P-sufficient or P-deficient media supplemented with sucrose for 4 weeks. Sucrose supply stimulated CR formation in plants on both P-sufficient and P-deficient media, but no CR appeared on the P-sufficient medium without sucrose. Glucose and fructose also stimulated CR formation on the P-sufficient medium. On the medium with sucrose, a high concentration of inorganic phosphate in leaves did not suppress CR formation. Because sorbitol or organic acid in the media did not stimulate CR formation, the sucrose effect was not due to increased osmotic pressure or enriched energy source, that is, sucrose acted as a signal. Gene transcription induced by P starvation, LaPT1 and LaPEPC3, was magnified by the combination of P limitation and sucrose feeding, and that of LaSAP was stimulated by sucrose supply independently of P supply. These results suggest that at least two sugar-signalling mediating systems control P starvation responses in white lupin roots. One system regulates CR formation and LaSAP expression, which acts even when P is sufficient if roots receive sugar as a signal. The other system controls LaPT1 and LaPEPC3 expression, which acts when P is insufficient.
簇生根(CR)的形成对适应低磷环境有很大贡献。白羽扇豆(Lupinus albus L.)簇生根的形成受地上部磷限制水平的影响,而不受根部磷限制水平的影响。因此,人们认为地上部衍生的信号会传递缺磷信息以刺激簇生根的形成。本研究表明,糖类对于包括簇生根形成和磷饥饿诱导基因表达在内的磷饥饿响应是必需的。白羽扇豆植株在添加了蔗糖的磷充足或磷缺乏培养基上进行4周的体外培养。蔗糖供应刺激了磷充足和磷缺乏培养基上植株的簇生根形成,但在没有蔗糖的磷充足培养基上没有出现簇生根。葡萄糖和果糖也刺激了磷充足培养基上的簇生根形成。在添加蔗糖的培养基上,叶片中高浓度的无机磷酸盐并没有抑制簇生根的形成。由于培养基中的山梨醇或有机酸没有刺激簇生根的形成,所以蔗糖的作用不是由于渗透压升高或能量来源丰富,即蔗糖起到了信号的作用。由磷饥饿诱导的基因LaPT1和LaPEPC3的转录,在磷限制和蔗糖处理共同作用下被放大,而LaSAP的转录则在不依赖磷供应的情况下受蔗糖供应的刺激。这些结果表明,至少有两个糖信号介导系统控制白羽扇豆根中的磷饥饿响应。一个系统调节簇生根的形成和LaSAP的表达,即使在磷充足时,如果根接收到糖信号,该系统也会起作用。另一个系统控制LaPT1和LaPEPC3的表达,该系统在磷不足时起作用。