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Diverse Metabolite Variations in Tea (Camellia sinensis L.) Leaves Grown Under Various Shade Conditions Revisited: A Metabolomics Study

机译:在重新审视各种遮荫条件下茶叶(Camellia Sinensis L.)叶子的不同代谢物变异:代谢组学研究

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With the increase of tea (Camellia sinensis) consumption, its chemical or metabolite compositions play a crucial role in the determination of tea quality. In general, metabolite compositions of fresh tea leaves including shoots depend on plucking seasons and tea cultivators. Therefore, choosing a specific plucking time of tea leaves can provide use-specified tea products. Artificial control of tea growing, typically shade treatments, can lead to significant changes of the tea metabolite compositions. However, metabolic characteristics of tea grown under various shade treatment conditions remain unclear. Therefore, the objective of the current study was to explore effects of various shade conditions on metabolite compositions of tea through a H-1 NMR-based metabolomics approach. It was noteworthy that the levels of catechins and their derivatives were only influenced at the initial time of shade treatments while most amino acids were upregulated as amounts of shade and periods were increased: that is, the levels of alanine, asparagine, aspartate, isoleucine, threonine, leucine, and valine in fresh tea leaves were conspicuously elevated when shade levels were raised from 90% to 100% and when period of shade treatments was increased by 20 days. Such increased synthesis of amino acids along with large reductions of glucose level reflected carbon starvation under the dark conditions, indicating remarkable proteolysis in the chloroplast of tea leaves. This study provides important information about making amino acid-enhanced tea products based on global characteristics of diverse tea leaf metabolites induced by various shade treatment conditions.
机译:随着茶叶(山茶花Sinensis)消费的增加,其化学或代谢物组合物在测定茶度质量方面发挥着至关重要的作用。通常,新鲜茶叶的代谢物组合物包括射击依赖于拔季和茶叶栽培器。因此,选择特定的茶叶时间可以提供使用指定的茶产品。茶叶种植的人工控制通常是阴影处理,可导致茶代谢物组合物的显着变化。然而,在各种阴影处理条件下种植的茶的代谢特征仍不清楚。因此,目前研究的目的是探讨各种遮阳条件在通过基于H-1 NMR的代谢组种方法对茶的代谢物组成的影响。值得注意的是,儿茶素和衍生物的水平仅受阴唇治疗的初始时间影响,而大多数氨基酸被上调,因为遮荫和时期的量增加:即,丙氨酸,天冬酰胺,天冬氨酸,异氨酸水平,苏氨酸,亮氨酸和缬氨酸在新鲜茶叶中显着提升,当遮阳水平从90%升至100%时,当阴唇处理时期增加20天时。这种增加的氨基酸的合成以及在黑暗条件下反射葡萄糖水平反射碳饥饿的较大缩短,表明茶叶叶片中的显着蛋白水解。本研究提供了关于制备氨基酸增强茶产品的重要信息,基于各种阴影治疗条件诱导的各种茶叶代谢物的全局特征。

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