NARO Institute of Vegetable and Tea Science , 360 Kusawa, Ano, Tsu, Mie 514-2392, Japan.
Breed Sci. 2013 Jun;63(2):211-7. doi: 10.1270/jsbbs.63.211. Epub 2013 Jun 1.
Strawberry is rich in anthocyanins, which are responsible for the red color, and contains several colorless phenolic compounds. Among the colorless phenolic compounds, some, such as hydroxycinammic acid derivatives, emit blue-green fluorescence when excited with ultraviolet (UV) light. Here, we investigated the effectiveness of image analyses for estimating the levels of anthocyanins and UV-excited fluorescent phenolic compounds in fruit. The fruit skin and cut surface of 12 cultivars were photographed under visible and UV light conditions; colors were evaluated based on the color components of images. The levels of anthocyanins and UV-excited fluorescent compounds in each fruit were also evaluated by spectrophotometric and high performance liquid chromatography (HPLC) analyses, respectively and relationships between these levels and the image data were investigated. Red depth of the fruits differed greatly among the cultivars and anthocyanin content was well estimated based on the color values of the cut surface images. Strong UV-excited fluorescence was observed on the cut surfaces of several cultivars, and the grayscale values of the UV-excited fluorescence images were markedly correlated with the levels of those fluorescent compounds as evaluated by HPLC analysis. These results indicate that image analyses can select promising genotypes rich in anthocyanins and fluorescent phenolic compounds.
草莓富含花青素,使草莓呈现红色,同时还含有几种无色的酚类化合物。在这些无色的酚类化合物中,有一些如羟基肉桂酸衍生物,在紫外(UV)光激发下会发出蓝绿色荧光。在这里,我们研究了图像分析在估计果实中花青素和 UV 激发荧光酚类化合物含量的有效性。在可见和 UV 光条件下拍摄了 12 个品种的果皮和横切面;根据图像的颜色成分评估颜色。通过分光光度法和高效液相色谱(HPLC)分析分别评估了每个果实中花青素和 UV 激发荧光化合物的水平,并研究了这些水平与图像数据之间的关系。不同品种的果实红色深度差异很大,根据横切图像的颜色值可以很好地估计花青素含量。在几个品种的横切面上观察到强烈的 UV 激发荧光,并且通过 HPLC 分析评估的那些荧光化合物的灰度值与 UV 激发荧光图像的灰度值显著相关。这些结果表明,图像分析可以选择富含花青素和荧光酚类化合物的有前途的基因型。