| Literature DB >> 29944667 |
Jing-Yi Hao1,2,3, Yi Wan1,2,3, Xiao-Hui Yao1,2,3, Wei-Guo Zhao1,2,3, Run-Ze Hu1,2,3, Cong Chen1,2,3, Long Li1,2,3, Dong-Yang Zhang1,2,3, Guo-Hua Wu1,2,3.
Abstract
Guangdong, Guangxi and Chongqing are emerging sericulture areas in China where the production of mulberry leaves is huge. In order to identity high quality mulberry leaves that are suitable for healthy products to expand planting, 24 samples from three regions (Guangdong, Guangxi, Chongqing) in the south of China were quantified for two alkaloids (1-deoxynojirimycin and fagomine) and five phenols (chlorogenic acid, rutin, isoquercitrin, etc.) using high-performance liquid chromatography tandem mass spectrometry (HPLC-MS/MS). Additionally, the total phenolic and total flavonoid contents, antioxidant and glycosidase inhibitory activities (hypoglycemic activity) were tested using different assays (DPPH, ABTS, FRAP) to comprehensively evaluate the quality of the mulberry leaves. The contents of DNJ and fagomine ranged from 0.401±0.003 to 5.309±0.036 mg/g and from 0.279±0.031 to 2.300±0.060 mg/g, respectively. The main phenolic constituents were chlorogenic acid, rutin and isoquercitrin, with chlorogenic acid present in the highest concentrations, ranging from 3.104±0.191 to 10.050±0.143 mg/g. The antioxidant activity exhibited a tendency as follows: Guangxi > Guangdong > Chongqing, except for two samples from Chongqing, which showed the highest antioxidant activity. Based on our study, mulberry leaves from Guangdong and Guangxi could be future sources of natural hypoglycemic and antioxidant products.Entities:
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Year: 2018 PMID: 29944667 PMCID: PMC6019398 DOI: 10.1371/journal.pone.0198072
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Climates of the different collection areas.
| No. | Origin | Latitude and Longitude | Temperature | Precipitation |
|---|---|---|---|---|
| 1 | Guangdong | N 20°13′~25°31′; E 109°39′~117°19′ | 23 | 131.05 |
| 2 | Guangxi | N 20°54′~26°24′; E 104°26′~112°04′ | 23 | 109.72 |
| 3 | Chongqing | N 28°10'~32°13'; E 105°11'~110°11' | 17 | 110.25 |
a Temperature means average temperature from 2016.10 to 2016.11
b Precipitation means total precipitation of 2016.10 to 2016.11
Main compounds identified in mulberry leaves extracted by LC-ESI-MS/MS including molecular formula (MF), retention time(RT), LC- MS/MS parameters and MRM transitions.
| Peak | Compounds | RT (min) | MF | Spray voltage(v) | Collision energy(v) | Tube lens | Quantitative transition(m/z) |
|---|---|---|---|---|---|---|---|
| 1 | fagomine | 6.7 | C6H13NO3 | 3000 | 19 | 54 | 147.55 > 129.76 |
| 2 | DNJ | 7.7 | C6H13NO4 | 3000 | 16 | 54 | 164.14 > 145.87 |
| 3 | CA | 3.0 | C16H18O9 | 3000 | 22 | -42 | 352.75 > 199.70 |
| 4 | isoquercitrin | 20.6 | C21H20O12 | 3000 | 32 | -84 | 462.86 > 299.75 |
| 5 | rutin | 22.0 | C27H30O16 | 3000 | 58 | -112 | 608.63 > 299.60 |
| 6 | quercetin | 26.4 | C15H10O7 | 3000 | 33 | -67 | 300.74 > 150.87 |
| 7 | kaempferide | 27.6 | C16H12O6 | 2500 | 33 | -74 | 298.82 > 283.79 |
Fig 1HPLC-ESI-MS/MS MRM chromatograms of alkaloid (A) and phenol compounds (B) identified in the samples.
(TIF) (A) The red line represents the chromatogram of DNJ and the green line represents the chromatogram of fagomine. (B) The red, green, dark blue, pink, light blue line in represent the chromatograms of chlorogenic acid, isoquercitrin, rutin, quercetin and kaempferide, respectively.
The content of the active compounds.
| Sample No. | Alkaloids(mg/g) | Phenols(mg/g) | |||||
|---|---|---|---|---|---|---|---|
| DNJ | Fagomine | Chlorogenic acid | Isoquercitrin | Rutin | Kaempferide | Quercetin | |
| 1 | 3.525±0.015 | 1.771±0.035 | 5.857±0.177 | 1.204±0.036 | 1.878±0.003 | —— | ND |
| 2 | 4.295±0.099 | 1.211±0.007 | 6.746±0.262 | 2.133±0.110 | 2.039±0.083 | —— | ND |
| 3 | 5.309±0.036 | 1.600±0.078 | 6.570±0.362 | 0.537±0.034 | 1.429±0.069 | —— | ND |
| 4 | 4.173±0.077 | 1.437±0.009 | 5.417±0.070 | 0.830±0.023 | 1.757±0.045 | —— | —— |
| 5 | 1.121±0.086 | 0.868±0.048 | 4.476±0.194 | 2.246±0.060 | 1.762±0.047 | —— | —— |
| 6 | 1.092±0.009 | 0.667±0.043 | 3.510±0.139 | 1.157±0.005 | 1.250±0.018 | —— | —— |
| 7 | 2.102±0.082 | 0.874±0.035 | 6.646±0.263 | 0.769±0.013 | 1.352±0.060 | —— | ND |
| 8 | 2.420±0.037 | 1.366±0.035 | 3.104±0.190 | 1.005±0.050 | 1.870±0.096 | —— | —— |
| 9 | 2.376±0.091 | 1.131±0.027 | 6.721±0.261 | 1.621±0.024 | 2.073±0.061 | —— | —— |
| 10 | 1.754±0.023 | 0.781±0.029 | 7.468±0.395 | 1.704±0.052 | 2.755±0.083 | —— | —— |
| 11 | 2.449±0.106 | 1.168±0.045 | 8.017±0.374 | 1.841±0.041 | 2.233±0.122 | —— | ND |
| 12 | 2.077±0.207 | 1.171±0.125 | 5.115±0.306 | 1.053±0.026 | 2.139±0.034 | —— | ND |
| 13 | 3.316±0.002 | 1.665±0.014 | 5.175±0.046 | 1.338±0.068 | 2.335±0.046 | —— | ND |
| 14 | 2.100±0.055 | 0.935±0.073 | 6.897±0.044 | 2.174±0.076 | 2.699±0.053 | —— | ND |
| 15 | 2.603±0.051 | 1.382±0.062 | 8.273±0.166 | 0.906±0.020 | 1.478±0.004 | —— | —— |
| 16 | 0.431±0.003 | 0.740±0.038 | 8.607±0.291 | 4.498±0.121 | 1.725±0.042 | —— | —— |
| 17 | 0.685±0.008 | 0.523±0.023 | 5.260±0.089 | 3.165±0.097 | 1.688±0.028 | —— | ND |
| 18 | 0.401±0.003 | 0.279±0.031 | 10.050±0.143 | 3.430±0.044 | 3.489±0.059 | —— | ND |
| 19 | 0.928±0.019 | 1.875±0.035 | 6.822±0.187 | 3.148±0.039 | 1.660±0.029 | —— | ND |
| 20 | 0.583±0.011 | 1.917±0.048 | 5.818±0.304 | 2.425±0.094 | 0.960±0.029 | —— | —— |
| 21 | 0.750±0.010 | 2.300±0.060 | 5.573±0.02 | 1.751±0.047 | 1.333±0.022 | —— | ND |
| 22 | 0.827±0.029 | 0.585±0.006 | 4.094±0.090 | 1.371±0.046 | 0.970±0.021 | —— | ND |
| 23 | 1.143±0.031 | 0.780±0.042 | 8.204±0.453 | 2.349±0.172 | 1.539±0.054 | —— | —— |
| 24 | 1.165±0.012 | 1.068±0.029 | 8.044±0.173 | 1.284±0.055 | 2.623±0.096 | —— | —— |
a-r means significantly different (P<0.05) in Duncan Test.
s means the substance of the active compounds can be detected but cannot be quantified.
ND means the active compounds can not be detected.
Fig 2Contents of DNJ and fagomine from different collection areas.
(TIF) The red columns mean the contents of DNJ from different collection areas and the blue columns mean the contents of fagomine.
Fig 3Contents of phenols from different collection areas.
(TIF) The red columns mean the contents of chlorogenic acid from different collection areas, the green columns mean the contents of rutin and the blue columns mean the contents of isoquercitr.
Origins and species of samples and the total phenolics, total flavonoids, antioxidant activity (DPPH, ABTS, FRAP assay) and glycosidase inhibitory rate (GI).
| Sample No. | Origin | Species | Total phenolics | Total flavonoids | DPPH | ABTS | FRAP | GI |
|---|---|---|---|---|---|---|---|---|
| 1 | Guangdong, Qingyuan | Yuesang 11 | 33.87±0.66 | 54.67±5.44 | 80.78±2.35 | 0.126±0.005 | 232.31±11.21 | 44.81±10.32 |
| 2 | Guangdong,Guangzhou | Erbasang | 39.38±1.44 | 66.73±7.08 | 78.87±2.07 | 0.124±0.012 | 275.24±3.56 | 68.77±7.29 |
| 3 | Guangdong,Guangzhou | Zajiaosang | 34.00±3.44 | 61.65±7.70 | 69.38±1.96 | 0.139±0.012 | 237.74±10.20 | 73.80±13.28 |
| 4 | Guangdong,Guangzhou | Liannan | 27.95±1.52 | 56.97±5.06 | 63.70±2.59 | 0.101±0.012 | 228.26±11.77 | 59.76±6.91 |
| 5 | Guangxi,Laibin | Guisangyou 20 | 34.85±9.71 | 56.03±9.85 | 67.65±1.41 | 0.144±0.002 | 307.98±105.50 | 61.10±7.60 |
| 6 | Guangxi,Laibin | Lunjiao 40 | 26.63±0.58 | 38.69±10.11 | 48.32±2.08 | 0.124±0.002 | 133.88±5.26 | 81.47±11.83 |
| 7 | Guangxi,Hechi | Qiangsang 1 | 29.62±1.47 | 55.92±7.66 | 63.25±2.63 | 0.092±0.006 | 231.59±16.00 | 44.50±3.51 |
| 8 | Guangxi,Hechi | Teyou 2 | 24.12±2.53 | 50.67±0.72 | 50.54±2.03 | 0.069±0.006 | 177.57±16.29 | 53.73±2.04 |
| 9 | Guangxi,Hechi | Guisangyou 12 | 28.67±1.71 | 61.70±0.46 | 76.86±2.38 | 0.072±0.010 | 226.68±10.90 | 78.85±8.42 |
| 10 | Guangxi,Hechi | Guisangyou 62 | 36.51±2.50 | 75.73±1.87 | 81.41±0.59 | 0.100±0.013 | 284.82±11.87 | 69.44±16.42 |
| 11 | Guangxi,Nanning | Sha 2×Lunjiao 109 | 38.56±4.38 | 73.29±2.87 | 76.51±2.79 | 0.088±0.004 | 288.01±15.46 | 64.79±14.58 |
| 12 | Guangxi,Nanning | Guisangyou 12 | 36.60±3.91 | 70.28±2.89 | 66.25±1.82 | 0.131±0.017 | 283.10±20.25 | 60.03±12.84 |
| 13 | Guangxi,Nanning | Sangteyou 2 | 27.43±0.67 | 59.87±4.06 | 63.89±2.28 | 0.126±0.014 | 200.01±18.11 | 66.64±6.01 |
| 14 | Guangxi,Nanning | Guisangyou 62 | 36.81±1.02 | 76.42±2.28 | 76.58±3.04 | 0.137±0.007 | 299.07±5.58 | 87.47±13.46 |
| 15 | Chongqing,Dianjiang | Jialing 20 | 23.43±1.78 | 38.32±11.33 | 57.36±2.05 | 0.105±0.006 | 200.81±11.41 | 58.50±5.16 |
| 16 | Chongqing,Dianjiang | Dashi | 39.23±6.31 | 68.06±5.48 | 79.47±2.50 | 0.152±0.009 | 286.74±34.02 | 23.36±4.72 |
| 17 | Chongqing,Dianjiang | Tongxiangqing | 24.83±3.02 | 41.21±12.61 | 66.49±2.59 | 0.134±0.014 | 186.35±9.60 | 29.54±15.04 |
| 18 | Chongqing,Dianjiang | Sha 2×Lunjiao 109 | 34.50±1.35 | 52.39±15.46 | 78.32±1.95 | 0.153±0.006 | 269.81±9.12 | 14.23±6.30 |
| 19 | Chongqing,Fuling | Xiang7920 | 33.12±0.35 | 59.73±3.80 | 69.59±2.59 | 0.125±0.008 | 213.50±18.11 | 85.51±7.47 |
| 20 | Chongqing,Fuling | Xinong6071 | 34.09±1.14 | 72.57±24.45 | 67.69±1.93 | 0.116±0.015 | 241.10±10.28 | 23.53±9.43 |
| 21 | Chongqing,Fuling | Zhongsang5801 | 34.34±2.42 | 52.25±5.27 | 63.24±1.20 | 0.131±0.018 | 229.40±4.36 | 78.66±15.24 |
| 22 | Chongqing,Qianjiang | Qiangsang 1 | 29.73±0.81 | 42.26±5.97 | 43.57±0.87 | 0.107±0.013 | 174.69±12.43 | 73.37±11.65 |
| 23 | Chongqing,Qianjiang | Xinong6071 | 29.51±2.97 | 51.33±1.29 | 66.54±3.58 | 0.119±0.018 | 193.02±9.26 | 53.95±7.60 |
| 24 | Chongqing,Qianjiang | Nongsang 8 | 34.77±1.58 | 56.68±3.73 | 69.40±2.99 | 0.126±0.008 | 228.08±33.14 | 31.48±8.12 |
each value is expressed as means ± S.D. (n = 3).
a-i means significantly different (P<0.05) in Duncan Test.