Finlayson Scott A, Hays Dirk B, Morgan Page W
Department of Soil and Crop Sciences, Texas A&M University, College Station, TX 77843-2474, USA.
Plant Cell Environ. 2007 Aug;30(8):952-62. doi: 10.1111/j.1365-3040.2007.01695.x.
The sorghum [Sorghum bicolor (L.) Moench] phyB-1 mutant exhibits a constitutive shade-avoidance phenotype including excessive shoot elongation. It was previously shown that this mutant also overproduces ethylene. Although phytochrome B (phyB) is assumed to be the pigment most important in sensing and transducing shade signals, the sorghum phyB-1 mutant still responds to light signals characteristic of shade. Specifically, it was determined that the leaf blade : leaf sheath elongation of phyB-1 is responsive to red : far red (R : FR), but this response is opposite that of wild type (WT). Reducing the photosynthetic photon flux density (PPFD) strongly reduced the leaf blade : leaf sheath of WT but did not affect phyB-1, demonstrating a role for phyB in sensing PPFD. Using light-emitting diode (LED) lighting, it was found that WT ethylene production was increased with low R : FR while PPFD had no effect. Conversely, phyB-1 ethylene production increased only with high PPFD, high R : FR which was the treatment resulting in the least ethylene production by WT. Elevated ethylene production inhibits shoot elongation, but may contribute to shade avoidance by reducing leaf blade : leaf sheath elongation. Ethylene responses to light treatments designed to promote or reduce phytochrome A (phyA) activity, and the analysis of PHYA levels in the two cultivars suggests that phyA could be involved in transducing shade signals in light-grown sorghum. Responses potentially tranduced by phyA are elevated in phyB-1 which also over-expresses PHYA.
高粱[Sorghum bicolor (L.) Moench] phyB - 1突变体表现出组成型避荫表型,包括茎过度伸长。先前已表明该突变体还过量产生乙烯。尽管假定光敏色素B(phyB)是感知和转导遮荫信号中最重要的色素,但高粱phyB - 1突变体仍对遮荫特有的光信号作出反应。具体而言,已确定phyB - 1的叶片:叶鞘伸长对红光:远红光(R:FR)有反应,但这种反应与野生型(WT)相反。降低光合光子通量密度(PPFD)强烈降低了WT的叶片:叶鞘,但对phyB - 1没有影响,表明phyB在感知PPFD中起作用。使用发光二极管(LED)照明发现,低R:FR时WT乙烯产量增加,而PPFD没有影响。相反,phyB - 1乙烯产量仅在高PPFD、高R:FR时增加,而这种处理导致WT乙烯产量最低。乙烯产量升高会抑制茎伸长,但可能通过减少叶片:叶鞘伸长来促进避荫。乙烯对旨在促进或降低光敏色素A(phyA)活性的光处理的反应,以及对两个品种中PHYA水平的分析表明,phyA可能参与了光生高粱中遮荫信号的转导。在phyB - 1中潜在由phyA转导的反应升高,而phyB - 1也过表达PHYA。