Department of Environmental Horticulture, University of Florida, Gainesville, FL 32611, USA.
Plant Physiol Biochem. 2009 Oct;47(10):934-45. doi: 10.1016/j.plaphy.2009.06.006. Epub 2009 Jun 21.
Many coleus (Solenostemon scutellarioides (L). Codd) varieties change pigmentation when exposed to high light intensity: they increase anthocyanin amount and decrease chlorophyll content. The physiological and molecular mechanisms involved in this phenomenon have been investigated in two independent experiments using two related coleus varieties 'Royal Glissade' (RG) and 'UF06-1-06' (UF). The developmental stage of a leaf had a minimum effect on colouration. Light intensity affected the rate of colour transition, anthocyanin and chlorophyll concentrations, and plant growth. Foliage colour was affected by a complex interaction between anthocyanin and chlorophyll. The isolation and expression analysis of several structural and regulatory genes involved in the anthocyanin biosynthetic pathway, and the genes Lchb2 and CBS, an indicator of cellular energy status are reported. Results indicate a close similarity between transcript amount and anthocyanin accumulation and its rate was tightly associated with light intensity. Differences in foliage colour between RG and UF are due to different sensitivity to light, probably affecting chlorophyll content and F3H and UFGT expression.
许多彩叶草(Solenostemon scutellarioides (L). Codd)品种在暴露于高强度光照下会改变色素沉着:它们会增加花青素的含量并降低叶绿素的含量。使用两种相关的彩叶草品种“Royal Glissade”(RG)和“UF06-1-06”(UF)进行了两项独立的实验,研究了涉及这种现象的生理和分子机制。叶片的发育阶段对颜色的影响最小。光照强度会影响颜色转变的速度、花青素和叶绿素的浓度以及植物的生长。叶片颜色受到花青素和叶绿素之间复杂相互作用的影响。报告了参与花青素生物合成途径的几个结构和调节基因以及基因 Lchb2 和 CBS 的分离和表达分析,CBS 是细胞能量状态的指标。结果表明,转录物数量与花青素积累之间存在密切的相似性,其积累速度与光照强度紧密相关。RG 和 UF 之间的叶片颜色差异归因于对光的不同敏感性,这可能影响叶绿素含量和 F3H 和 UFGT 的表达。