Henry Amelia, Chopra Surinder, Clark David G, Lynch Jonathan P
Intercollege Program in Plant Biology, The Pennsylvania State University, 102 Tyson Building, University Park, PA 16802, USA.
IFAS, Environmental Horticulture Department, University of Florida, 1545 Fifield Hall, Gainesville, Florida 32611, USA.
Funct Plant Biol. 2012 Apr;39(3):255-265. doi: 10.1071/FP11256.
Foliar anthocyanin production is frequently induced by phosphorus deficiency, but the adaptive significance of increased anthocyanin production under P stress, if any, remains unknown. In this study we hypothesised that if anthocyanin expression is an adaptive response to mitigate the stress effects of P deficiency, genotypes with constitutive anthocyanin expression would have greater tolerance to P stress than low anthocyanin-producing genotypes. Four studies were conducted in greenhouse, outdoor chamber and field conditions to compare genetically similar maize and coleus plants with contrasting anthocyanin accumulation (i.e. 'red-leafed' vs 'green-leafed'). In low-P treatments, anthocyanin production did not consistently result in greater photosynthesis or biomass. In coleus, red-leafed phenotypes showed lower chlorophyll a/b ratios suggesting photoprotection by anthocyanins against degradation of light harvesting complex proteins. However, the opposite trend was observed in maize, where red-leafed phenotypes showed greater chlorophyll a/b ratios and lower qP (oxidation state of PSII). Based on results from the various treatments and growth conditions of this study, it could not be concluded that high foliar anthocyanin production confers a general functional advantage under low-P stress. More research comparing inducible vs constitutive production may help elucidate the role of anthocyanin biosynthesis in P deficiency responses.
叶片花青素的产生常常由缺磷诱导,但在磷胁迫下花青素产量增加的适应性意义(如果有的话)仍不清楚。在本研究中,我们假设,如果花青素表达是一种减轻缺磷胁迫影响的适应性反应,那么组成型花青素表达的基因型对磷胁迫的耐受性将高于低花青素产生的基因型。我们在温室、室外试验箱和田间条件下进行了四项研究,以比较具有不同花青素积累的遗传相似的玉米和彩叶草植株(即“红叶”与“绿叶”)。在低磷处理中,花青素的产生并没有始终导致更高的光合作用或生物量。在彩叶草中,红叶表型显示出较低的叶绿素a/b比值,表明花青素对光捕获复合蛋白的降解具有光保护作用。然而,在玉米中观察到了相反的趋势,红叶表型显示出更高的叶绿素a/b比值和更低的qP(PSII的氧化状态)。基于本研究各种处理和生长条件的结果,不能得出高叶片花青素产量在低磷胁迫下具有普遍功能优势的结论。更多比较诱导型与组成型产生的研究可能有助于阐明花青素生物合成在缺磷反应中的作用。