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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Photoperiod and shading regulate coloration and anthocyanin accumulation in the leaves of malus crabapples
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Photoperiod and shading regulate coloration and anthocyanin accumulation in the leaves of malus crabapples

机译:光周期和遮光调节海棠海棠叶片的着色和花色苷积累

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摘要

In many ornamental plants, anthocyanin accumulation in leaves is a critical determinant of foliage coloration. However, the mechanism by which photoperiod and shading affect coloration and anthocyanin accumulation in the leaves of woody plants is less clear. By examining the leaves and calli of crabapple (Malus spp.) cultivars with different leaf color characteristics, we analyzed the foliage coloration, flavonoid contents, and expression levels of anthocyanin biosynthetic genes and the McMYB10 transcription factor under different photoperiods and shading treatments. The red color parameters, flavonoid contents, and expression levels of some anthocyanin-related genes in both the leaf and callus were generally higher under sun-exposure or long-day treatments compared to shading or short-day treatments. These data indicate that red color formation in cultivars with leaves that are naturally red requires a suitable photoperiod and light intensity; high light intensity or long-day conditions activate anthocyanin biosynthesis-related genes, leading to anthocyanin accumulation. Our results also indicate that the regulation of anthocyanin biosynthetic metabolism in response to light conditions differs between red-leafed and green-leafed cultivars. Taken together, our data reveal that photoperiod and light intensity are important in the regulation of pigmentation and anthocyanin accumulation in crabapple leaves and calli. Moreover, we provide a useful approach for studying and inducing the production of flavonoids by crabapple callus culture under certain photoperiods.
机译:在许多观赏植物中,花色苷在叶片中的积累是决定叶片着色的关键因素。然而,光周期和阴影影响木本植物叶片着色和花色苷积累的机理尚不清楚。通过检查具有不同叶片颜色特征的海棠品种的叶片和愈伤组织,我们分析了在不同光周期和遮荫处理下叶片的着色,黄酮含量以及花色苷生物合成基因和McMYB10转录因子的表达水平。与遮光或短期处理相比,在阳光或长期处理下,叶片和愈伤组织的红色参数,类黄酮含量和某些花色苷相关基因的表达水平通常较高。这些数据表明,在具有自然红叶的栽培品种中,红色形成需要适当的光周期和光强度。高光强度或长时间的工作条件会激活花青素与生物合成相关的基因,从而导致花青素积聚。我们的结果还表明,红叶和绿叶品种对光条件下花色苷生物合成代谢的调节不同。两者合计,我们的数据表明,光周期和光强度在海棠叶片和愈伤组织中色素沉着和花色苷积累的调节中很重要。此外,我们为研究和诱导在一定光周期下海棠愈伤组织培养黄酮类化合物提供了有用的方法。

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