伽玛辐照甜叶菊(stevia reaudiana Bertoni)叶片生物活性化合物的评价。

IF 3.4 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Noha Eid Eliwa, Mohamed Farouk Ahmed
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引用次数: 0

摘要

甜菊糖对于糖尿病患者来说是一种潜在的替代甜味剂。伽马辐射是一种可以改变植物生理特性或植物化学组成而不产生任何危险副产品或化学引发物的技术。因此,本研究的目的是确定γ辐射(0、3、5、7和10 kGy)对甜菊叶干生物活性化合物的影响。与未辐照的样品相比,很明显,所有的伽马辐射剂量都提高了碳水化合物、总甜菊苷、总糖、还原糖、粗蛋白质和氮的百分比,同时降低了脂肪、灰分和纤维的百分比。与未辐照样品相比,辐照剂量为7 kGy的甜菊叶碳水化合物增加57.7%,总甜菊苷增加32.8%,总糖增加38%,还原糖增加66.8%,粗蛋白质增加21.9%。脂肪、灰分和纤维含量分别下降了23.2%、10.8%和11.9%。HPLC图谱显示,暴露于3、5和7 kGy的甜叶菊叶片中所鉴定的酚类化合物浓度均高于未辐照叶片;3kgy和7kgy的表现优于5kgy,而10kgy则导致这些化合物的减少。芹菜素和鞣花酸仅从暴露于10 kGy的叶片中消失,山奈酚则从所有辐照叶片中消失。此外,肉桂酸在辐射剂量为5、7和10 kGy(0.50、0.90和0.14µg)时被检测到。ml- 1),而在未辐照和3kgy辐照剂量下则不存在。经过辐照和未辐照的甜菊糖样品的傅里叶变换红外光谱显示出相似的波段分布。综上所述,辐照后的干甜叶菊叶片的碳水化合物、甜菊苷、糖、粗蛋白质和酚类化合物含量增加,脂肪、灰分和纤维含量降低,辐照后和未辐照样品的FTIR光谱没有明显差异。当辐照剂量为7 kGy时,生物活性物质显著增加,并出现肉桂酸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Assessment of the bioactive compounds in gamma irradiated stevia (Stevia rebaudiana Bertoni) leaves.

Assessment of the bioactive compounds in gamma irradiated stevia (Stevia rebaudiana Bertoni) leaves.

Stevia is a potential alternative sweetener for individuals with diabetes. Gamma radiation is one technique that can alter a plant's physiological traits or phytochemical makeup without producing any dangerous byproducts or chemical initiators. Therefore, the aim of the current study was to determine the effect of gamma radiation (0, 3, 5, 7, and 10 kGy) on the bioactive compounds of dry stevia leaves. In comparison to non-irradiated samples, it is clear that all gamma radiation doses raised the percentages of carbohydrates, total steviosides, total sugar, reducing sugar, crude protein, and nitrogen, while decreasing the percentages of fat, ash, and fiber. The irradiation of stevia leaves at a dose of 7 kGy resulted in the most significant increase in carbohydrates by 57.7%, total steviosides by 32.8%, total sugars by 38%, reduced sugars by 66.8%, and crude protein by 21.9% when compared to non-irradiated samples. In contrast, the percentages of fat, ash, and fiber decreased by 23.2%, 10.8%, and 11.9%, respectively. According to the HPLC profile chromatogram, stevia leaves exposed to 3, 5, and 7 kGy had higher concentrations of all identified phenolic compounds than non-irradiated leaves; 5 kGy was outperformed by 3 and 7 kGy, while 10 kGy resulted in a decrease in these compounds. While apigenin and ellagic acid only disappeared from leaves exposed to 10 kGy, kaempferol was seen to disappear from all irradiated leaves. Furthermore, cinnamic acid was detected at radiation doses of 5, 7, and 10 kGy (0.50, 0.90, and 0.14 µg.ml- 1, respectively), whereas it was absent at the non-irradiated and 3 kGy radiation doses. The Fourier Transform Infrared (FTIR) spectra of the irradiated and non-irradiated stevia samples displayed a comparable band profile. In conclusion, gamma irradiation of dried stevia leaves increased the levels of carbohydrates, steviosides, sugars, crude protein, and phenolic compounds, while reducing the levels of fat, ash, and fiber, with no observable differences in the FTIR spectra between the irradiated and non-irradiated samples. The optimal radiation dose was 7 kGy, which resulted in the most significant enhancement in biologically active compounds, along with the emergence of cinnamic acid.

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来源期刊
BMC Biotechnology
BMC Biotechnology 工程技术-生物工程与应用微生物
CiteScore
6.60
自引率
0.00%
发文量
34
审稿时长
2 months
期刊介绍: BMC Biotechnology is an open access, peer-reviewed journal that considers articles on the manipulation of biological macromolecules or organisms for use in experimental procedures, cellular and tissue engineering or in the pharmaceutical, agricultural biotechnology and allied industries.
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