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收获后的生命:超市储存期间火箭叶光合色素的昼夜节律调节影响其营养价值。

Life after Harvest: Circadian Regulation in Photosynthetic Pigments of Rocket Leaves during Supermarket Storage Affects the Nutritional Quality.

机构信息

Department of Plant Biology and Ecology. University of the Basque Country (UPV/EHU), 48080 Bilbao, Spain.

Department of Crop and Forest Sciences & AGROTECNIO Center, University of Lleida, 25198 Lleida, Spain.

出版信息

Nutrients. 2019 Jul 4;11(7):1519. doi: 10.3390/nu11071519.

Abstract

Vegetables, once harvested and stored on supermarket shelves, continue to perform biochemical adjustments due to their modular nature and their ability to retain physiological autonomy. They can live after being harvested. In particular, the content of some essential nutraceuticals, such as carotenoids, can be altered in response to environmental or internal stimuli. Therefore, in the present study, we wondered whether endogenous rhythms continue to operate in commercial vegetables and if so, whether vegetable nutritional quality could be altered by such cycles. Our experimental model consisted of rocket leaves entrained under light/darkness cycles of 12/12 h over 3 days, and then we examined free-run oscillations for 2 days under continuous light or continuous darkness, which led to chlorophyll and carotenoid oscillations in both constant conditions. Given the importance of preserving food quality, the existence of such internal rhythms during continuous conditions may open new research perspective in nutrition science. However, while chromatographic techniques employed to determine pigment composition are accurate, they are also time-consuming and expensive. Here we propose for the first time an alternative method to estimate pigment content and the nutritional quality by the use of non-destructive and in situ optical techniques. These results are promising for nutritional quality assessments.

摘要

蔬菜一旦被收获并储存在超市货架上,由于其模块化的性质和保持生理自主性的能力,它们会继续进行生化调整。它们可以在被收获后继续生存。特别是,一些必需的营养物质的含量,如类胡萝卜素,可以响应环境或内部刺激而改变。因此,在本研究中,我们想知道商业蔬菜中是否存在内源性节律,如果存在,这种节律是否会改变蔬菜的营养质量。我们的实验模型由火箭叶组成,在 3 天的 12/12 小时光/暗循环下被驯化,然后在连续光照或连续黑暗下进行 2 天的自由运行振荡,这导致叶绿素和类胡萝卜素在两种恒定条件下都发生了振荡。鉴于保持食物质量的重要性,在连续条件下存在这种内部节律可能会为营养科学开辟新的研究视角。然而,虽然用于确定色素组成的色谱技术准确,但它们也耗时且昂贵。在这里,我们首次提出了一种替代方法,通过使用非破坏性和原位光学技术来估计色素含量和营养质量。这些结果对营养质量评估具有很大的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9261/6682859/7ba948219548/nutrients-11-01519-g001.jpg

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