Acta Agriculturae Zhejiangensis ›› 2022, Vol. 34 ›› Issue (11): 2504-2511.DOI: 10.3969/j.issn.1004-1524.2022.11.19
• Food Science • Previous Articles Next Articles
LIN Yuqing1,2(
), LU Shengmin2, ZHOU Wanyi2, XING Jianrong2, YANG Ying2,*(
)
Received:2022-03-28
Online:2022-11-25
Published:2022-11-29
Contact:
YANG Ying
CLC Number:
LIN Yuqing, LU Shengmin, ZHOU Wanyi, XING Jianrong, YANG Ying. Preliminary investigation about structure and probiotic properties of polysaccharides from Dendrobium officinale leaves[J]. Acta Agriculturae Zhejiangensis, 2022, 34(11): 2504-2511.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.zjnyxb.cn/EN/10.3969/j.issn.1004-1524.2022.11.19
| 名称 Name | 保留时间 Retention time/min | 数均分子量 Number-average molecular weight | 重均分子量 Weight-average molecular weight | 峰位分子量 Peak molecular weight |
|---|---|---|---|---|
| DOP1 | 15.22 | 7.16×104 | 2.56×105 | 1.77×105 |
| DOP2 | 16.44 | 4.14×104 | 1.35×105 | 4.56×104 |
| DOP3 | 15.61 | 8.74×104 | 3.26×105 | 1.14×105 |
Table 1 Molecular weight of three polysaccharides from Dendrobium varieties leaves
| 名称 Name | 保留时间 Retention time/min | 数均分子量 Number-average molecular weight | 重均分子量 Weight-average molecular weight | 峰位分子量 Peak molecular weight |
|---|---|---|---|---|
| DOP1 | 15.22 | 7.16×104 | 2.56×105 | 1.77×105 |
| DOP2 | 16.44 | 4.14×104 | 1.35×105 | 4.56×104 |
| DOP3 | 15.61 | 8.74×104 | 3.26×105 | 1.14×105 |
| 名称 Name | 葡萄糖 Glucose | 甘露糖 Mannose | 半乳糖 Galactose | 阿拉伯糖 Arabinose |
|---|---|---|---|---|
| DOP1 | 252 | 210 | 1 | 0.78 |
| DOP2 | 370 | 245 | 1 | 0.87 |
| DOP3 | 278 | 169 | 1 | 0.90 |
Table 2 Monosaccharides molar ratio of three polysaccharides
| 名称 Name | 葡萄糖 Glucose | 甘露糖 Mannose | 半乳糖 Galactose | 阿拉伯糖 Arabinose |
|---|---|---|---|---|
| DOP1 | 252 | 210 | 1 | 0.78 |
| DOP2 | 370 | 245 | 1 | 0.87 |
| DOP3 | 278 | 169 | 1 | 0.90 |
| 碳源 Carbon source | 菌落总数 Total viable count | |||
|---|---|---|---|---|
| 植物乳杆菌 Lactobacillus plantarum | 戊糖乳杆菌 Lactobacillus pentosus | 干酪乳杆菌 Lactobacillus casei | 鼠李糖乳杆菌 Lactobacillus rhamnosus | |
| Glu(CK) | 1.8±0.6 b | 12.9±1.2 b | 6.4±0.4 b | 1.3±0.1 de |
| DOP1 | 3.2±0.5 b | 7.0±1.2 c | 2.3±0.5 d | 1.2±0.1 de |
| DOP2 | 3.3±0.2 b | 4.6±0.8 d | 3.5±0.4 d | 2.9±0.8 bc |
| DOP3 | 2.8.±6.0 b | 6.1±1.4 cd | 2.7±0.3 d | 1.1±0.1 e |
| Glu+DOP1 | 2.7±0.6 b | 13.0±1.4 b | 9.1±1.2 a | 2.9±0.5 ab |
| Glu+DOP2 | 3.9±0.3 b | 15.8±4.7 b | 7.4±1.1 b | 3.2±0.7 a |
| Glu+DOP3 | 14.9±0.4 a | 18.7±0.9 a | 6.7±0.5 b | 2.0±0.1 cd |
Table 3 Effects of three polysaccharides on growth of common used probiotics ×107 CFU·mL-1
| 碳源 Carbon source | 菌落总数 Total viable count | |||
|---|---|---|---|---|
| 植物乳杆菌 Lactobacillus plantarum | 戊糖乳杆菌 Lactobacillus pentosus | 干酪乳杆菌 Lactobacillus casei | 鼠李糖乳杆菌 Lactobacillus rhamnosus | |
| Glu(CK) | 1.8±0.6 b | 12.9±1.2 b | 6.4±0.4 b | 1.3±0.1 de |
| DOP1 | 3.2±0.5 b | 7.0±1.2 c | 2.3±0.5 d | 1.2±0.1 de |
| DOP2 | 3.3±0.2 b | 4.6±0.8 d | 3.5±0.4 d | 2.9±0.8 bc |
| DOP3 | 2.8.±6.0 b | 6.1±1.4 cd | 2.7±0.3 d | 1.1±0.1 e |
| Glu+DOP1 | 2.7±0.6 b | 13.0±1.4 b | 9.1±1.2 a | 2.9±0.5 ab |
| Glu+DOP2 | 3.9±0.3 b | 15.8±4.7 b | 7.4±1.1 b | 3.2±0.7 a |
| Glu+DOP3 | 14.9±0.4 a | 18.7±0.9 a | 6.7±0.5 b | 2.0±0.1 cd |
| 碳源 Carbon source | 菌落总数 Total viable count | ||
|---|---|---|---|
| 大肠埃希菌 Escherichia coli | 金黄色葡萄球菌 Staphylococcus aureus | 单增李斯特菌 Listeria monocytogenes | |
| Glu(CK) | 6.5±0.7 a | 2.8±0.1 a | 10.0±0.9 a |
| DOP1 | 5.4±0.6 a | 3.0±0.1 a | 8.0±0.4 b |
| DOP2 | 3.2±0.6 b | 3.5±0.5 a | 7.0±0.1 b |
| DOP3 | 1.6±0.2 c | 3.8±0.8 a | 6.6±0.8 b |
Table 4 Effects of three polysaccharides on growth of common pathogenic bacteria ×108 CFU·mL-1
| 碳源 Carbon source | 菌落总数 Total viable count | ||
|---|---|---|---|
| 大肠埃希菌 Escherichia coli | 金黄色葡萄球菌 Staphylococcus aureus | 单增李斯特菌 Listeria monocytogenes | |
| Glu(CK) | 6.5±0.7 a | 2.8±0.1 a | 10.0±0.9 a |
| DOP1 | 5.4±0.6 a | 3.0±0.1 a | 8.0±0.4 b |
| DOP2 | 3.2±0.6 b | 3.5±0.5 a | 7.0±0.1 b |
| DOP3 | 1.6±0.2 c | 3.8±0.8 a | 6.6±0.8 b |
| [1] | 孙卓然, 刘圆, 李晓云, 等. 石斛不同种、不同药用部位中多糖含量测定[J]. 时珍国医国药, 2009, 20(8): 1886-1888. |
| SUN Z R, LIU Y, LI X Y, et al. The determination of polysaccharides from several herba dendrobii and different medical parts of D. nobile Lindl, D. fimbriatum Hook, D. denneanum Kerr and D. chrysotoxum Lindl[J]. Lishizhen Medicine and Materia Medica Research, 2009, 20(8): 1886-1888. (in Chinese with English abstract) | |
| [2] | 张又元, 陈乃伟, 丁重阳, 等. 铁皮石斛茎部和叶部多糖的性质和活性[J]. 食品与生物技术学报, 2017, 36(9): 959-965. |
| ZHANG Y Y, CHEN N W, DING C Y, et al. Characterization and bioactivity analysis of Dendrobium officinale stem and leaf polysacchride[J]. Journal of Food Science and Biotechnology, 2017, 36(9): 959-965. (in Chinese with English abstract) | |
| [3] | 鲍素华, 查学强, 郝杰, 等. 不同分子量铁皮石斛多糖体外抗氧化活性研究[J]. 食品科学, 2009, 30(21): 123-127. |
| BAO S H, ZHA X Q, HAO J, et al. In vitro antioxidant activity of polysaccharides with different molecular weights from Dendrobium candidum[J]. Food Science, 2009, 30(21): 123-127. (in Chinese with English abstract) | |
| [4] |
LI Z, NIE K, WANG Z, et al. Quantitative structure activity relationship models for the antioxidant activity of polysaccharides[J]. PLoS One, 2016, 11(9): e0163536.
DOI URL |
| [5] |
CANFORA E E, MEEX R C R, VENEMA K, et al. Gut microbial metabolites in obesity, NAFLD and T2DM[J]. Nature Reviews Endocrinology, 2019, 15(5): 261-273.
DOI PMID |
| [6] | RYU S T, PARK B S, BANG H T, et al. Effects of anti-heat diet and inverse lighting on growth performance, immune organ, microorganism and short chain fatty acids of broiler chickens under heat stress[J]. Journal of Environmental Biology, 2016, 37(2): 185-192. |
| [7] |
ROOKS M G, GARRETT W S. Gut microbiota, metabolites and host immunity[J]. Nature Reviews Immunology, 2016, 16(6): 341-352.
DOI PMID |
| [8] | 邱现创, 赵宁, 李晨, 等. 铁皮石斛多糖提取工艺优化及对果蝇抗氧化能力的影响[J]. 食品科学, 2018, 39(2): 273-280. |
| QIU X C, ZHAO N, LI C, et al. Optimization of extraction of polysaccharide from Dendrobium officinale and its antioxidant effect on Drosophila melanogaster[J]. Food Science, 2018, 39(2): 273-280. (in Chinese with English abstract) | |
| [9] | 焦宇知, 汪艳芝, 朱云, 等. 茶籽粕多糖的提纯及单糖组成分析[J]. 食品研究与开发, 2016, 37(22): 51-55. |
| JIAO Y Z, WANG Y Z, ZHU Y, et al. Studies on purification of polysaccharides from oil-tea-cake and monosaccharides’ composition[J]. Food Research and Development, 2016, 37(22): 51-55. (in Chinese with English abstract) | |
| [10] | 刘卫宝. 黄芪多糖、寡糖的制备及其发酵益生作用的研究[D]. 无锡: 江南大学, 2020. |
| LIU W B. Study on preparation of Astragalus polysaccharides and oligosaccharides and their probiotic effects[D]. Wuxi: Jiangnan University, 2020. (in Chinese with English abstract) | |
| [11] |
WICHIENCHOT S, JATUPORNPIPAT M, RASTALL R A. Oligosaccharides of pitaya (dragon fruit) flesh and their prebiotic properties[J]. Food Chemistry, 2010, 120(3): 850-857.
DOI URL |
| [12] |
ZHENG Y, XIANG S, ZHANG H, et al. Vitamin B12 enriched in spinach and its effects on gut microbiota[J]. Journal of Agricultural and Food Chemistry, 2021, 69(7): 2204-2212.
DOI PMID |
| [13] | 陈军奎, 刘伟, 王欣, 等. 成年人不同阶段肠道菌群及其代谢差异的研究[J]. 胃肠病学和肝病学杂志, 2019, 28(3): 276-281. |
| CHEN J K, LIU W, WANG X, et al. Study on intestinal flora and metabolic differences in adults at different stages[J]. Chinese Journal of Gastroenterology and Hepatology, 2019, 28(3): 276-281. (in Chinese with English abstract) | |
| [14] | 唐靖雯, 卢礼平, 王欢, 等. 铁皮石斛叶的研究进展[J]. 中国民族民间医药, 2020, 29(7): 63-67. |
| TANG J W, LU L P, WANG H, et al. Research progress in leaves of Dendrobium officinale Kimura et Migo[J]. Chinese Journal of Ethnomedicine and Ethnopharmacy, 2020, 29(7): 63-67. (in Chinese with English abstract) | |
| [15] | 王轶帆, 邓媛元, 张雁, 等. 龙眼多糖与燕麦多糖的结构特征及其益生活性比较[J]. 中国食品学报, 2020, 20(12): 62-71. |
| WANG Y F, DENG Y Y, ZHANG Y, et al. Comparison of structure characteristics and probiotic activity of Longan polysaccharides and oat polysaccharides[J]. Journal of Chinese Institute of Food Science and Technology, 2020, 20(12): 62-71. (in Chinese with English abstract) | |
| [16] |
CLARKE S F, MURPHY E F, O'SULLIVAN O, et al. Exercise and associated dietary extremes impact on gut microbial diversity[J]. Gut, 2014, 63(12): 1913-1920.
DOI PMID |
| [17] | 欧阳建, 李秀平, 周方, 等. ‘平阳黄汤’对高脂饮食大鼠肠道屏障和肠道菌群的影响[J]. 食品科学, 2021, 42(23): 170-181. |
| OUYANG J, LI X P, ZHOU F, et al. Effect of Pingyang yellow tea on intestinal barrier and intestinal flora in rats fed high-fat diet[J]. Food Science, 2021, 42(23): 170-181. (in Chinese with English abstract) | |
| [18] |
WANG K, LIAO M F, ZHOU N, et al. Parabacteroides distasonis alleviates obesity and metabolic dysfunctions via production of succinate and secondary bile acids[J]. Cell Reports, 2019, 26(1): 222-235.e5.
DOI URL |
| [19] |
MUÑIZ PEDROGO D A, JENSEN M D, VAN DYKE C T, et al. Gut microbial carbohydrate metabolism hinders weight loss in overweight adults undergoing lifestyle intervention with a volumetric diet[J]. Mayo Clinic Proceedings, 2018, 93(8): 1104-1110.
DOI PMID |
| [20] | MALDONADO-ARRIAGA B, SANDOVAL-JIMÉNEZ S, ROD-RÍGUEZ-SILVERIO J, et al. Gut dysbiosis and clinical phases of pancolitis in patients with ulcerative colitis[J]. MicrobiologyOpen, 2021, 10(2): e1181. |
| [21] | 武爱荣, 杨乐. VITEK-2 Compact检测奇异变形杆菌、摩根摩根菌、铜绿假单胞菌的部分药敏结果准确性评价[J]. 现代检验医学杂志, 2020, 35(6): 106-110. |
| WU A R, YANG L. Accuracy evaluation of partial drug sensitivity results of VITEK-2 Compact detection for Proteus singularis, morgan morgan and Pseudomonas aeruginosa[J]. Journal of Modern Laboratory Medicine, 2020, 35(6): 106-110. (in Chinese with English abstract) | |
| [22] | MORTENSEN P B, CLAUSEN M R. Short-chain fatty acids in the human colon: relation to gastrointestinal health and disease[J]. Scandinavian Journal of Gastroenterology, 1996, 31(Suppl 216): 132-148. |
| [23] |
TURNBAUGH P J, LEY R E, MAHOWALD M A, et al. An obesity-associated gut microbiome with increased capacity for energy harvest[J]. Nature, 2006, 444(7122): 1027-1031.
DOI URL |
| [24] |
AGUILERA A, SELGAS R, DIÉZ J J, et al. Anorexia in end-stage renal disease: pathophysiology and treatment[J]. Expert Opinion on Pharmacotherapy, 2001, 2(11): 1825-1838.
PMID |
| [25] |
WU D T, NIE X R, GAN R Y, et al. In vitro digestion and fecal fermentation behaviors of a pectic polysaccharide from okra (Abelmoschus esculentus) and its impacts on human gut microbiota[J]. Food Hydrocolloids, 2021, 114: 106577.
DOI URL |
| [26] |
DO PRADO S B R, MINGUZZI B T, HOFFMANN C, et al. Modulation of human gut microbiota by dietary fibers from unripe and ripe papayas: distinct polysaccharide degradation using a colonic in vitro fermentation model[J]. Food Chemistry, 2021, 348: 129071.
DOI URL |
| [27] |
CANFORA E E, JOCKEN J W, BLAAK E E. Short-chain fatty acids in control of body weight and insulin sensitivity[J]. Nature Reviews Endocrinology, 2015, 11(10): 577-591.
DOI PMID |
| [28] | WU J, LIU Y, DOU Z, et al. Black garlic melanoidins prevent obesity, reduce serum LPS levels and modulate the gut microbiota composition in high-fat diet-induced obese C57BL/6J mice[J]. Food & Function, 2020, 11(11): 9585-9598. |
| [1] | CHEN Lin, GU Qing. Gastroprotective effect of polysaccharides extracted from Chimonanthus salicifolius on ethanol-induced gastric injury in rats [J]. Acta Agriculturae Zhejiangensis, 2025, 37(5): 1009-1016. |
| [2] | WU Xingfeng, XIAO Yingping, LYU Wentao, MA Lingyan, CHEN Qu, WEN Yang, XU E. Clostridium butyricum affects muscle fiber type in mice by modulating colonic microbial structure and short-chain fatty acids content [J]. Acta Agriculturae Zhejiangensis, 2025, 37(3): 568-578. |
| [3] | QIAO Huiru, FANG Xiangjun, WU Weijie, LIU Ruiling, CHEN Hangjun, DENG Shanggui, SHA Hao, GAO Haiyan. Process optimization and quality analysis of composite lactic acid bacteria fermented beverage with blueberries and Dendrobium officinale leaves [J]. Acta Agriculturae Zhejiangensis, 2025, 37(3): 654-666. |
| [4] | HUANG Hao, TANG Tao, XU Zhenlan, ZHAO Xueping. Effects of pyraclostrobin on polysaccharide and flavone in Dendrobium officinale [J]. Acta Agriculturae Zhejiangensis, 2025, 37(1): 115-125. |
| [5] | ZHANG Ni, TAO Wenyang, LUO Mengfan, ZHOU Wanyi, ZHENG Xiaojie, LI Yanpo, JIN Huoxi, YANG Ying. Effects of enzyme-assisted extraction on composition and gut microbiota regulation function of Dendrobium officinale polysaccharide [J]. Acta Agriculturae Zhejiangensis, 2024, 36(9): 2099-2109. |
| [6] | ZHAO Xiaoliang, LU Yun, KANG Xingxing, LONG Zeyu, ZHENG Xiaojie. Extraction, structural characterization and antioxidant activity of polysaccharide from Dendrobium officinale in Yandang Mountain, China [J]. Acta Agriculturae Zhejiangensis, 2024, 36(8): 1898-1908. |
| [7] | CAO Naixin, LUO Yanglan, YAN Yong, XIE Xiuchao, ZHANG Wenlong. Optimization and antioxidant activity of liquid medium of extracellular polysaccharides from Sanghuangporus sanghuang JM-1 [J]. Acta Agriculturae Zhejiangensis, 2024, 36(6): 1245-1255. |
| [8] | LYU Guoying, WANG Mengyu, ZHANG Zuofa. Impact of Hericium erinaceus polysaccharide on intestinal flora in mice [J]. Acta Agriculturae Zhejiangensis, 2024, 36(12): 2794-2802. |
| [9] | LI Jingrui, TAO Wenyang, YANG Ying, ZHOU Wanyi, LU Shengmin, WANG Yangguang. Comparative studies of polysaccharides of three Dendrobium species from Zhejiang Province and exploration of their physiological functions [J]. Acta Agriculturae Zhejiangensis, 2023, 35(8): 1888-1895. |
| [10] | ZHANG Lu, LI Qiaochu, WANG Zengli, DING Qiang, WANG Honglei. Isolation of yeast form strain from Tremella aurantialba and optimization of medium for its exopolysaccharide production [J]. Acta Agriculturae Zhejiangensis, 2023, 35(5): 1154-1160. |
| [11] | XIA Lunbin, MA Longlong, QIAO Deliang, HE Yanfei, JIANG Ping. Effects of Hyriopsis cumingii polysaccharides on growth performance, antioxidant activity and immune function in growing broiler [J]. Acta Agriculturae Zhejiangensis, 2023, 35(3): 547-555. |
| [12] | MA Bo, TAO Zhen, ZHOU Rui, WANG Xue, LYU Qianqian, SUN Shihong, WANG Han, GAO Jinqiu, ZHANG Chuhan, CHEN Fengqing. Study on optimization of extraction conditions and activity of functional components from Dieffenbachia picta [J]. Acta Agriculturae Zhejiangensis, 2023, 35(2): 383-393. |
| [13] | LU Linghong, MA Yuanyuan, GU Xianbin, XIAO Jinping, SONG Genhua, ZHANG Huiqin. Changes of polysaccharide content and pectin degradation related enzyme activities in cell wall during softening of kiwifruit [J]. Acta Agriculturae Zhejiangensis, 2022, 34(12): 2648-2658. |
| [14] | WU Weicheng, DAI Jianbo, CAO Yan, XIA Qile, CHEN Jianbing, MENG Xianghe. Effects of physical modification on content, polysaccharide composition and structure of dietary fiber in sweet potato peels [J]. , 2020, 32(3): 490-498. |
| [15] | WANG Mingzhe, YANG Ying, TANG Weimin, LIU Zhe, SUN Peilong, LU Shengmin. Optimization of fermentation techniques on yield of exopolysaccharide produced by Lactobacillus pentosae YY112 [J]. , 2020, 32(2): 327-336. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||