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佛手柑(Citrus bergamia Risso)果皮中黄酮类化合物和果胶寡糖的酶促水解

Enzymatic hydrolysis of flavonoids and pectic oligosaccharides from bergamot (Citrus bergamia Risso) peel.

作者信息

Mandalari Giuseppina, Bennett Richard N, Kirby Andrew R, Lo Curto Rosario B, Bisignano Giuseppe, Waldron Keith W, Faulds Craig B

机构信息

Sustainability of the Food Chain Exploitation Platform, Institute of Food Research, Norwich Research Park, Colney, Norwich NR4 7UA, United Kingdom.

出版信息

J Agric Food Chem. 2006 Oct 18;54(21):8307-13. doi: 10.1021/jf0615799.

Abstract

Pectinolytic and cellulolytic enzymes (Pectinase 62L, Pectinase 690L, and Cellulase CO13P) were used to evaluate the solubilization of carbohydrates and low molecular weight flavonoids from bergamot peel, a major byproduct of the essential oil industry. The enzymes were characterized for main-chain and side-chain polysaccharide hydrolyzing activities and also against pure samples of various flavonoids previously identified in bergamot peel to determine various glycosidase activities. The addition of Pectinase 62L or 690L alone, or the combination of Pectinase 62L and Cellulase CO13P, was capable of solubilizing between 70 and 80% of the bergamot peel, and up to 90% of the flavonoid glycosides present were cleaved to their aglycones. Cellulase CO13P alone solubilized 62% of the peel but had no deglycosylating effect on the flavonoid glycosides. Over a 24-h time course, a rapid release of cell wall carbohydrates was observed after treatment with Pectinase 62L, with a concurrent gradual hydrolysis of the flavonoid glycosides. Size-exclusion chromatography of the solubilized extract showed that after 24-h incubation, the majority of the solubilized carbohydrates were present as monosaccharides with a smaller proportion of oligosaccharides.

摘要

果胶分解酶和纤维素分解酶(果胶酶62L、果胶酶690L和纤维素酶CO13P)被用于评估从佛手柑果皮中溶解碳水化合物和低分子量黄酮类化合物的能力,佛手柑果皮是香精油产业的一种主要副产品。对这些酶进行了主链和侧链多糖水解活性的表征,并且还针对佛手柑果皮中先前鉴定出的各种黄酮类化合物的纯样品进行测试,以确定各种糖苷酶活性。单独添加果胶酶62L或690L,或果胶酶62L与纤维素酶CO13P的组合,能够溶解70%至80%的佛手柑果皮,并且高达90%的存在的黄酮糖苷被裂解为其苷元。单独的纤维素酶CO13P溶解了62%的果皮,但对黄酮糖苷没有去糖基化作用。在24小时的时间进程中,用果胶酶62L处理后观察到细胞壁碳水化合物的快速释放,同时黄酮糖苷逐渐水解。对溶解提取物进行尺寸排阻色谱分析表明,孵育24小时后,大部分溶解的碳水化合物以单糖形式存在,寡糖比例较小。

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