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首页> 外文期刊>Planta: An International Journal of Plant Biology >Assessment of a 1H high-resolution magic angle spinning NMR spectroscopy procedure for free sugars quantification in intact plant tissue
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Assessment of a 1H high-resolution magic angle spinning NMR spectroscopy procedure for free sugars quantification in intact plant tissue

机译:用于完整植物组织中游离糖定量的1H高分辨率魔角旋转NMR光谱程序的评估

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摘要

In most plants, sucrose is the primary product of photosynthesis, the transport form of assimilated carbon, and also one of the main factors determining sweetness in fresh fruits. Traditional methods for sugar quantification (mainly sucrose, glucose and fructose) require obtaining crude plant extracts, which sometimes involve substantial sample manipulation, making the process time-consuming and increasing the risk of sample degradation. Here, we describe and validate a fast method to determine sugar content in intact plant tissue by using high-resolution magic angle spinning nuclear magnetic resonance spectroscopy (HR-MAS NMR). The HR-MAS NMR method was used for quantifying sucrose, glucose and fructose in mesocarp tissues from melon fruits (Cucumis melo var. reticulatus and Cucumis melo var. cantalupensis). The resulting sugar content varied among individual melons, ranging from 1.4 to 7.3 g of sucrose, 0.4-2.5 g of glucose; and 0.73-2.83 g of fructose (values per 100 g fw). These values were in agreement with those described in the literature for melon fruit tissue, and no significant differences were found when comparing them with those obtained using the traditional, enzymatic procedure, on melon tissue extracts. The HR-MAS NMR method offers a fast (usually <30 min) and sensitive method for sugar quantification in intact plant tissues, it requires a small amount of tissue (typically 50 mg fw) and avoids the interferences and risks associated with obtaining plant extracts. Furthermore, this method might also allow the quantification of additional metabolites detectable in the plant tissue NMR spectrum.
机译:在大多数植物中,蔗糖是光合作用的主要产物,是同化碳的转运形式,也是决定新鲜水果甜度的​​主要因素之一。传统的糖定量方法(主要是蔗糖,葡萄糖和果糖)需要获得植物粗提物,有时需要进行大量的样品处理,这使过程耗时且增加了样品降解的风险。在这里,我们描述并验证了一种通过使用高分辨率魔角旋转核磁共振波谱(HR-MAS NMR)确定完整植物组织中糖含量的快速方法。 HR-MAS NMR方法用于量化瓜果(Cucumis melo var。reticulatus和Cucumis melo var。cantalupensis)中果皮组织中的蔗糖,葡萄糖和果糖。各个甜瓜的糖含量各不相同,蔗糖为1.4至7.3克,葡萄糖为0.4至2.5克。和0.73-2.83 g果糖(每100 g fw的值)。这些值与文献中描述的瓜类水果组织的值一致,并且将它们与使用传统的酶法对瓜类组织提取物获得的值进行比较时,没有发现显着差异。 HR-MAS NMR方法为完整植物组织中的糖定量提供了一种快速(通常<30分钟)且灵敏的方法,它需要少量组织(通常为50 mg fw),并且避免了与获取植物提取物相关的干扰和风险。此外,该方法还可能允许量化植物组织NMR光谱中可检测到的其他代谢物。

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