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基于叶绿素荧光激发比率的生菜类黄酮筛选与表型分析

Lettuce flavonoids screening and phenotyping by chlorophyll fluorescence excitation ratio.

作者信息

Zivcak Marek, Brückova Klaudia, Sytar Oksana, Brestic Marian, Olsovska Katarina, Allakhverdiev Suleyman I

机构信息

Department of Plant Physiology, Slovak Agricultural University, Tr. A. Hlinku 2, 949 76, Nitra, Slovak Republic.

Agrobiotech Research Center, Slovak Agricultural University, Tr. A. Hlinku 2, 949 76, Nitra, Slovak Republic.

出版信息

Planta. 2017 Jun;245(6):1215-1229. doi: 10.1007/s00425-017-2676-x. Epub 2017 Mar 16.

Abstract

Environmentally induced variation and the genotypic differences in flavonoid and phenolic content in lettuce can be reliably detected using the appropriate parameters derived from the records of rapid non-invasive fluorescence technique. The chlorophyll fluorescence excitation ratio method was designed as a rapid and non-invasive tool to estimate the content of UV-absorbing phenolic compounds in plants. Using this technique, we have assessed the dynamics of accumulation of flavonoids related to developmental changes and environmental effects. Moreover, we have tested appropriateness of the method to identify the genotypic differences and fluctuations in total phenolics and flavonoid content in lettuce. Six green and two red genotypes of lettuce (Lactuca sativa L.) grown in pots were exposed to two different environments for 50 days: direct sunlight (UV-exposed) and greenhouse conditions (low UV). The indices based on the measurements of chlorophyll fluorescence after red, green and UV excitation indicated increase of the content of UV-absorbing compounds and anthocyanins in the epidermis of lettuce leaves. In similar, the biochemical analyses performed at the end of the experiment confirmed significantly higher total phenolic and flavonoid content in lettuce plants exposed to direct sun compared to greenhouse conditions and in red compared to green genotypes. As the correlation between the standard fluorescence indices and the biochemical records was negatively influenced by the presence of red genotypes, we proposed the use of a new parameter named Modified Flavonoid Index (MFI) taking into an account both absorbance changes due to flavonol and anthocyanin content, for which the correlation with flavonoid and phenolic content was relatively good. Thus, our results confirmed that the fluorescence excitation ratio method is useful for identifying the major differences in phenolic and flavonoid content in lettuce plants and it can be used for high-throughput pre-screening and phenotyping of leafy vegetables in research and breeding applications towards improvement of vegetable health effects.

摘要

利用快速非侵入性荧光技术记录中得出的适当参数,能够可靠地检测生菜中环境诱导的变异以及类黄酮和酚类含量的基因型差异。叶绿素荧光激发比法被设计为一种快速且非侵入性的工具,用于估算植物中紫外线吸收酚类化合物的含量。使用该技术,我们评估了与发育变化和环境影响相关的类黄酮积累动态。此外,我们还测试了该方法用于识别生菜中总酚类和类黄酮含量的基因型差异及波动的适用性。将六株绿色和两株红色基因型的盆栽生菜(Lactuca sativa L.)置于两种不同环境中50天:直射阳光(紫外线照射)和温室条件(低紫外线)。基于红、绿和紫外线激发后叶绿素荧光测量的指标表明,生菜叶片表皮中紫外线吸收化合物和花青素的含量增加。同样,实验结束时进行的生化分析证实,与温室条件相比,暴露于直射阳光下的生菜植株中总酚类和类黄酮含量显著更高,与绿色基因型相比,红色基因型中的含量也更高。由于红色基因型的存在对标准荧光指标与生化记录之间的相关性产生了负面影响,我们提出使用一个名为修正类黄酮指数(MFI)的新参数,该参数同时考虑了黄酮醇和花青素含量引起的吸光度变化,其与类黄酮和酚类含量的相关性相对较好。因此,我们的结果证实,荧光激发比法可用于识别生菜植株中酚类和类黄酮含量的主要差异,并且可用于叶菜类蔬菜的高通量预筛选和表型分析,以用于研究和育种应用,从而改善蔬菜对健康的影响。

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