Journal of Agricultural Science and Technology ›› 2023, Vol. 25 ›› Issue (11): 143-153.DOI: 10.13304/j.nykjdb.2022.0461
• FOOD QUALITY & PROCESSING AND STORAGE • Previous Articles Next Articles
Yupeng LIU1(), Fang CHEN1, Shuhong GU1(
), Fang WANG2
Received:
2022-05-31
Accepted:
2022-09-24
Online:
2023-11-15
Published:
2023-11-20
Contact:
Shuhong GU
通讯作者:
古书鸿
作者简介:
刘宇鹏E-mail:895965658@qq.com;
基金资助:
CLC Number:
Yupeng LIU, Fang CHEN, Shuhong GU, Fang WANG. Evaluation of Nutritional Composition and Quality of Phallus impudicus L. from Different Producing Areas in Guizhou[J]. Journal of Agricultural Science and Technology, 2023, 25(11): 143-153.
刘宇鹏, 陈芳, 古书鸿, 王芳. 贵州不同产地冬荪营养成分及品质评价[J]. 中国农业科技导报, 2023, 25(11): 143-153.
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氨基酸种类 Amino acid species | 丹寨 DZ | 湄潭 MT | 大方 DF | 德江 DJ | 平均值 Average | 变异系数 CV | |
---|---|---|---|---|---|---|---|
必需氨基酸 EAA | 苏氨酸 Thr | 0.37±0.02 b | 0.30±0.02 c | 0.31±0.02 c | 0.66±0.02 a | 0.41 | 37.71 |
缬氨酸 Val | 0.66±0.02 c | 0.73±0.02 b | 0.57±0.02 d | 0.87±0.04 a | 0.71 | 16.53 | |
蛋氨酸 Met | 0.87±0.02 c | 0.84±0.02 c | 0.97±0.02 b | 1.07±0.04 a | 0.94 | 10.21 | |
异亮氨酸 Ile | 0.46±0.02 c | 0.43±0.02 c | 0.55±0.03 b | 0.77±0.02 a | 0.55 | 25.14 | |
亮氨酸 Leu | 0.86±0.03 d | 0.95±0.04 c | 1.09±0.02 b | 1.24±0.04 a | 1.03 | 14.82 | |
苯丙氨酸 Phe | 0.72±0.06 b | 0.86±0.04 a | 0.69±0.03 b | 0.50±0.03 c | 0.69 | 20.21 | |
赖氨酸 Lys | 0.31±0.02 c | 0.25±0.03 d | 0.36±0.02 b | 0.45±0.02 a | 0.34 | 23.35 | |
总量 Total | 4.24±0.11 c | 4.36±0.09 c | 4.55±0.02 b | 5.55±0.09 a | 4.68 | 11.67 | |
非必需氨基酸 NEAA | 天冬氨酸 Asp | 1.25±0.05 b | 1.24±0.02 b | 1.39±0.04 a | 1.33±0.03 a | 1.30 | 5.51 |
丝氨酸 Ser | 0.62±0.02 a | 0.46±0.03 c | 0.64±0.04 a | 0.55±0.03 b | 0.57 | 13.56 | |
谷氨酸 Glu | 1.66±0.02 b | 1.27±0.02 d | 1.39±0.03 c | 1.88±0.04 a | 1.55 | 16.22 | |
甘氨酸 Gly | 0.47±0.02 b | 0.45±0.02 b | 0.39±0.01 c | 0.55±0.02 a | 0.46 | 13.58 | |
丙氨酸 Ala | 0.57±0.02 c | 0.89±0.02 a | 0.64±0.02 b | 0.87±0.02 a | 0.74 | 19.91 | |
胱氨酸 Cys | 0.17±0.02 b | 0.12±0.01 c | 0.25±0.03 a | 0.23±0.02 a | 0.19 | 30.11 | |
酪氨酸 Tyr | 0.33±0.05 b | 0.54±0.05 a | 0.26±0.03 c | 0.24±0.02 c | 0.34 | 37.00 | |
组氨酸 His | 0.32±0.01 b | 0.23±0.02 c | 0.27±0.02 c | 0.36±0.03 a | 0.29 | 18.47 | |
精氨酸 Arg | 0.47±0.04 d | 0.56±0.02 c | 0.78±0.02 a | 0.70±0.02 b | 0.63 | 20.38 | |
脯氨酸 Pro | 0.62±0.02 ab | 0.59±0.03 b | 0.44±0.03 c | 0.65±0.04 a | 0.57 | 15.59 | |
总量 Total | 6.46±0.03 b | 6.35±0.14 b | 6.44±0.12 b | 7.37±0.08 a | 6.66 | 6.59 | |
总氨基酸 TAA | 10.70±0.09 c | 10.71±0.11 c | 10.99±0.10 b | 12.93±0.16 a | 11.33 | 8.59 | |
必需氨基酸/总氨基酸 EAA/TAA | 39.61±0.73 c | 40.73±0.93 bc | 41.42±0.54 b | 42.96±0.27 a | 41.18 | 3.51 | |
必需氨基酸/非必需氨基酸 EAA/NEAA | 65.61±1.98 c | 68.75±2.63 bc | 70.71±1.57 b | 75.32±0.81 a | 70.10 | 5.72 | |
鲜味氨基酸 DAA | 4.41±0.06 c | 4.41±0.04 c | 4.58±0.00 b | 5.34±0.02 a | 4.68 | 8.57 | |
药效氨基酸 PAA | 7.10±0.07 c | 7.08±0.09 c | 7.58±0.01 b | 7.99±0.44 a | 7.43 | 5.90 |
Table 1 Composition and content of amino acid from different producing area Phallus impudicus L.
氨基酸种类 Amino acid species | 丹寨 DZ | 湄潭 MT | 大方 DF | 德江 DJ | 平均值 Average | 变异系数 CV | |
---|---|---|---|---|---|---|---|
必需氨基酸 EAA | 苏氨酸 Thr | 0.37±0.02 b | 0.30±0.02 c | 0.31±0.02 c | 0.66±0.02 a | 0.41 | 37.71 |
缬氨酸 Val | 0.66±0.02 c | 0.73±0.02 b | 0.57±0.02 d | 0.87±0.04 a | 0.71 | 16.53 | |
蛋氨酸 Met | 0.87±0.02 c | 0.84±0.02 c | 0.97±0.02 b | 1.07±0.04 a | 0.94 | 10.21 | |
异亮氨酸 Ile | 0.46±0.02 c | 0.43±0.02 c | 0.55±0.03 b | 0.77±0.02 a | 0.55 | 25.14 | |
亮氨酸 Leu | 0.86±0.03 d | 0.95±0.04 c | 1.09±0.02 b | 1.24±0.04 a | 1.03 | 14.82 | |
苯丙氨酸 Phe | 0.72±0.06 b | 0.86±0.04 a | 0.69±0.03 b | 0.50±0.03 c | 0.69 | 20.21 | |
赖氨酸 Lys | 0.31±0.02 c | 0.25±0.03 d | 0.36±0.02 b | 0.45±0.02 a | 0.34 | 23.35 | |
总量 Total | 4.24±0.11 c | 4.36±0.09 c | 4.55±0.02 b | 5.55±0.09 a | 4.68 | 11.67 | |
非必需氨基酸 NEAA | 天冬氨酸 Asp | 1.25±0.05 b | 1.24±0.02 b | 1.39±0.04 a | 1.33±0.03 a | 1.30 | 5.51 |
丝氨酸 Ser | 0.62±0.02 a | 0.46±0.03 c | 0.64±0.04 a | 0.55±0.03 b | 0.57 | 13.56 | |
谷氨酸 Glu | 1.66±0.02 b | 1.27±0.02 d | 1.39±0.03 c | 1.88±0.04 a | 1.55 | 16.22 | |
甘氨酸 Gly | 0.47±0.02 b | 0.45±0.02 b | 0.39±0.01 c | 0.55±0.02 a | 0.46 | 13.58 | |
丙氨酸 Ala | 0.57±0.02 c | 0.89±0.02 a | 0.64±0.02 b | 0.87±0.02 a | 0.74 | 19.91 | |
胱氨酸 Cys | 0.17±0.02 b | 0.12±0.01 c | 0.25±0.03 a | 0.23±0.02 a | 0.19 | 30.11 | |
酪氨酸 Tyr | 0.33±0.05 b | 0.54±0.05 a | 0.26±0.03 c | 0.24±0.02 c | 0.34 | 37.00 | |
组氨酸 His | 0.32±0.01 b | 0.23±0.02 c | 0.27±0.02 c | 0.36±0.03 a | 0.29 | 18.47 | |
精氨酸 Arg | 0.47±0.04 d | 0.56±0.02 c | 0.78±0.02 a | 0.70±0.02 b | 0.63 | 20.38 | |
脯氨酸 Pro | 0.62±0.02 ab | 0.59±0.03 b | 0.44±0.03 c | 0.65±0.04 a | 0.57 | 15.59 | |
总量 Total | 6.46±0.03 b | 6.35±0.14 b | 6.44±0.12 b | 7.37±0.08 a | 6.66 | 6.59 | |
总氨基酸 TAA | 10.70±0.09 c | 10.71±0.11 c | 10.99±0.10 b | 12.93±0.16 a | 11.33 | 8.59 | |
必需氨基酸/总氨基酸 EAA/TAA | 39.61±0.73 c | 40.73±0.93 bc | 41.42±0.54 b | 42.96±0.27 a | 41.18 | 3.51 | |
必需氨基酸/非必需氨基酸 EAA/NEAA | 65.61±1.98 c | 68.75±2.63 bc | 70.71±1.57 b | 75.32±0.81 a | 70.10 | 5.72 | |
鲜味氨基酸 DAA | 4.41±0.06 c | 4.41±0.04 c | 4.58±0.00 b | 5.34±0.02 a | 4.68 | 8.57 | |
药效氨基酸 PAA | 7.10±0.07 c | 7.08±0.09 c | 7.58±0.01 b | 7.99±0.44 a | 7.43 | 5.90 |
必需氨基酸 Essential amino acid | 丹寨 DZ | 湄潭 MT | 大方 DF | 德江 DJ | FAO/WHO模式值 FAO/WHO model value |
---|---|---|---|---|---|
苏氨酸 Thr | 3.46 | 2.80 | 2.82 | 5.10 | 4.0 |
缬氨酸 Val | 6.17 | 6.82 | 5.19 | 6.73 | 5.0 |
蛋氨酸+胱氨酸 Met+Cys | 9.72 | 8.96 | 11.10 | 10.05 | 3.5 |
异亮氨酸 Ile | 4.30 | 4.01 | 5.00 | 5.96 | 4.0 |
亮氨酸 Leu | 8.04 | 8.87 | 9.92 | 9.59 | 7.0 |
苯丙氨酸+酪氨酸 Phe+Tyr | 9.81 | 13.07 | 8.64 | 5.72 | 6.0 |
赖氨酸 Lys | 2.90 | 2.33 | 3.28 | 3.48 | 5.5 |
Table 2 Percentage of essential amino acids in total amino acids of Phallus impudicus L. from different producing area
必需氨基酸 Essential amino acid | 丹寨 DZ | 湄潭 MT | 大方 DF | 德江 DJ | FAO/WHO模式值 FAO/WHO model value |
---|---|---|---|---|---|
苏氨酸 Thr | 3.46 | 2.80 | 2.82 | 5.10 | 4.0 |
缬氨酸 Val | 6.17 | 6.82 | 5.19 | 6.73 | 5.0 |
蛋氨酸+胱氨酸 Met+Cys | 9.72 | 8.96 | 11.10 | 10.05 | 3.5 |
异亮氨酸 Ile | 4.30 | 4.01 | 5.00 | 5.96 | 4.0 |
亮氨酸 Leu | 8.04 | 8.87 | 9.92 | 9.59 | 7.0 |
苯丙氨酸+酪氨酸 Phe+Tyr | 9.81 | 13.07 | 8.64 | 5.72 | 6.0 |
赖氨酸 Lys | 2.90 | 2.33 | 3.28 | 3.48 | 5.5 |
必需氨基酸 Essential amino acid | 丹寨 DZ | 湄潭 MT | 大方 DF | 德江 DJ | ||||
---|---|---|---|---|---|---|---|---|
RAA | RCAA | RAA | RCAA | RAA | RCAA | RAA | RCAA | |
苏氨酸 Thr | 0.87 | 0.66 | 0.70 | 0.51 | 0.71 | 0.51 | 1.28 | 0.90 |
缬氨酸 Val | 1.23 | 0.93 | 1.36 | 1.00 | 1.04 | 0.76 | 1.35 | 0.95 |
蛋氨酸+胱氨酸 Met+Cys | 2.78 | 2.10 | 2.56 | 1.88 | 3.17 | 2.31 | 2.87 | 2.04 |
异亮氨酸 Ile | 1.08 | 0.81 | 1.00 | 0.74 | 1.25 | 0.91 | 1.49 | 1.06 |
亮氨酸 Leu | 1.15 | 0.87 | 1.27 | 0.93 | 1.42 | 1.03 | 1.37 | 0.97 |
苯丙氨酸+酪氨酸 Phe+Tyr | 1.64 | 1.24 | 2.18 | 1.60 | 1.44 | 1.05 | 0.95 | 0.68 |
赖氨酸 Lys | 0.53 | 0.40 | 0.42 | 0.31 | 0.60 | 0.44 | 0.63 | 0.45 |
SRCAA | 45.29 | 43.14 | 37.65 | 50.30 | ||||
EAAI | 1.18 | 1.16 | 1.20 | 1.29 |
Table 3 Index of essential amino acids of Phallus impudicus L. from different producing area
必需氨基酸 Essential amino acid | 丹寨 DZ | 湄潭 MT | 大方 DF | 德江 DJ | ||||
---|---|---|---|---|---|---|---|---|
RAA | RCAA | RAA | RCAA | RAA | RCAA | RAA | RCAA | |
苏氨酸 Thr | 0.87 | 0.66 | 0.70 | 0.51 | 0.71 | 0.51 | 1.28 | 0.90 |
缬氨酸 Val | 1.23 | 0.93 | 1.36 | 1.00 | 1.04 | 0.76 | 1.35 | 0.95 |
蛋氨酸+胱氨酸 Met+Cys | 2.78 | 2.10 | 2.56 | 1.88 | 3.17 | 2.31 | 2.87 | 2.04 |
异亮氨酸 Ile | 1.08 | 0.81 | 1.00 | 0.74 | 1.25 | 0.91 | 1.49 | 1.06 |
亮氨酸 Leu | 1.15 | 0.87 | 1.27 | 0.93 | 1.42 | 1.03 | 1.37 | 0.97 |
苯丙氨酸+酪氨酸 Phe+Tyr | 1.64 | 1.24 | 2.18 | 1.60 | 1.44 | 1.05 | 0.95 | 0.68 |
赖氨酸 Lys | 0.53 | 0.40 | 0.42 | 0.31 | 0.60 | 0.44 | 0.63 | 0.45 |
SRCAA | 45.29 | 43.14 | 37.65 | 50.30 | ||||
EAAI | 1.18 | 1.16 | 1.20 | 1.29 |
矿质元素 Mineral element | 丹寨 DZ | 湄潭 MT | 大方 DF | 德江 DJ | 平均值 Average/% | 变异系数 CV/% |
---|---|---|---|---|---|---|
氮N/(g·kg-1) | 18.70±0.64 d | 20.94±0.06 b | 19.72±0.20 c | 22.45±0.58 a | 20.45 | 7.38 |
磷P/(g·kg-1) | 4.20±0.04 b | 3.55±0.05 d | 3.73±0.01 c | 4.83±0.03 a | 4.08 | 12.75 |
钾K/(g·kg-1) | 31.56±0.61 c | 29.63±1.47 c | 39.64±0.87 a | 36.81±0.99 b | 34.41 | 12.41 |
钙Ca/(mg·kg-1) | 508.64±7.50 d | 643.12±16.69 b | 686.89±16.11 a | 575.68±16.34 c | 603.58 | 11.89 |
铜Cu/(mg·kg-1) | 12.37±0.31 d | 16.07±0.73 b | 14.17±0.58 c | 17.54±0.48 a | 15.04 | 13.90 |
铁Fe/(mg·kg-1) | 125.53±4.94 b | 497.54±11.82 a | 119.81±5.75 b | 92.30±3.95 c | 208.80 | 83.68 |
镁Mg/(mg·kg-1) | 1.65±0.06 b | 1.98±0.05 a | 1.55±0.01 c | 1.65±0.06 b | 1.71 | 10.53 |
锌Zn/(mg·kg-1) | 24.84±0.68 c | 33.05±0.62 b | 51.61±1.30 a | 50.96±0.70 a | 40.12 | 30.11 |
Table 4 Contents of mineral elements of Phallus impudicus L. from different producing area
矿质元素 Mineral element | 丹寨 DZ | 湄潭 MT | 大方 DF | 德江 DJ | 平均值 Average/% | 变异系数 CV/% |
---|---|---|---|---|---|---|
氮N/(g·kg-1) | 18.70±0.64 d | 20.94±0.06 b | 19.72±0.20 c | 22.45±0.58 a | 20.45 | 7.38 |
磷P/(g·kg-1) | 4.20±0.04 b | 3.55±0.05 d | 3.73±0.01 c | 4.83±0.03 a | 4.08 | 12.75 |
钾K/(g·kg-1) | 31.56±0.61 c | 29.63±1.47 c | 39.64±0.87 a | 36.81±0.99 b | 34.41 | 12.41 |
钙Ca/(mg·kg-1) | 508.64±7.50 d | 643.12±16.69 b | 686.89±16.11 a | 575.68±16.34 c | 603.58 | 11.89 |
铜Cu/(mg·kg-1) | 12.37±0.31 d | 16.07±0.73 b | 14.17±0.58 c | 17.54±0.48 a | 15.04 | 13.90 |
铁Fe/(mg·kg-1) | 125.53±4.94 b | 497.54±11.82 a | 119.81±5.75 b | 92.30±3.95 c | 208.80 | 83.68 |
镁Mg/(mg·kg-1) | 1.65±0.06 b | 1.98±0.05 a | 1.55±0.01 c | 1.65±0.06 b | 1.71 | 10.53 |
锌Zn/(mg·kg-1) | 24.84±0.68 c | 33.05±0.62 b | 51.61±1.30 a | 50.96±0.70 a | 40.12 | 30.11 |
营养成分 Nutritional composition | 丹寨 DZ | 湄潭 MT | 大方 DF | 德江 DJ | 平均值 Average | 变异系数 CV |
---|---|---|---|---|---|---|
灰分 Ash | 5.92±0.10 b | 5.83±0.07 b | 6.27±0.05 a | 6.18±0.06 a | 6.05 | 3.31 |
脂肪 Fat | 0.83±0.02 d | 1.05±0.03 c | 1.24±0.03 b | 1.49±0.01 a | 1.15 | 21.74 |
粗纤维 Crude fiber | 0.34±0.05 b | 0.35±0.02 b | 0.47±0.01 a | 0.25±0.02 c | 0.35 | 25.71 |
总糖 Total sugar | 34.90±0.20 a | 30.50±0.77 b | 28.92±0.24 c | 29.88±0.26 b | 31.05 | 7.79 |
Table 5 Contents of other nutritional compositions of Phallus impudicus L. from different producing area
营养成分 Nutritional composition | 丹寨 DZ | 湄潭 MT | 大方 DF | 德江 DJ | 平均值 Average | 变异系数 CV |
---|---|---|---|---|---|---|
灰分 Ash | 5.92±0.10 b | 5.83±0.07 b | 6.27±0.05 a | 6.18±0.06 a | 6.05 | 3.31 |
脂肪 Fat | 0.83±0.02 d | 1.05±0.03 c | 1.24±0.03 b | 1.49±0.01 a | 1.15 | 21.74 |
粗纤维 Crude fiber | 0.34±0.05 b | 0.35±0.02 b | 0.47±0.01 a | 0.25±0.02 c | 0.35 | 25.71 |
总糖 Total sugar | 34.90±0.20 a | 30.50±0.77 b | 28.92±0.24 c | 29.88±0.26 b | 31.05 | 7.79 |
Fig. 1 Correlation analysis of Phallus impudicus L.quality indexNote:* and ** indicate significant correlation at P<0.05 and P<0.01 levels, respectively.
指标 Index | 主成分 Principle component | ||
---|---|---|---|
P1 | P2 | P3 | |
灰分 Ash | 0.835 | -0.549 | 0.039 |
脂肪 Fat | 0.873 | 0.038 | 0.486 |
粗纤维 Crude fiber | -0.315 | -0.944 | 0.097 |
总糖 Total sugar | -0.465 | 0.334 | -0.820 |
氮 N | 0.576 | 0.525 | 0.626 |
磷 P | 0.763 | 0.514 | -0.392 |
钾 K | 0.791 | -0.611 | 0.044 |
钙 Ca | 0.011 | -0.610 | 0.792 |
铜 Cu | 0.497 | 0.478 | 0.724 |
铁 Fe | -0.720 | 0.269 | 0.640 |
镁 Mg | -0.640 | 0.532 | 0.554 |
锌 Zn | 0.818 | -0.357 | 0.451 |
天冬氨酸 Asp | 0.718 | -0.679 | 0.153 |
苏氨酸 Thr | 0.824 | 0.561 | -0.084 |
丝氨酸 Ser | 0.319 | -0.653 | -0.687 |
谷氨酸 Glu | 0.717 | 0.469 | -0.516 |
甘氨酸 Gly | 0.491 | 0.860 | -0.134 |
丙氨酸 Ala | 0.163 | 0.591 | 0.790 |
缬氨酸 Val | 0.444 | 0.870 | 0.213 |
胱氨酸 Cys | 0.844 | -0.518 | -0.137 |
蛋氨酸 Met | 0.998 | -0.001 | 0.066 |
异亮氨酸 Ile | 0.973 | 0.221 | 0.074 |
亮氨酸 Leu | 0.918 | 0.020 | 0.395 |
酪氨酸 Tyr | -0.838 | 0.312 | 0.448 |
苯丙氨酸 Phe | -0.961 | -0.149 | 0.233 |
组氨酸 His | 0.738 | 0.366 | -0.566 |
赖氨酸 Lys | 0.992 | 0.042 | -0.116 |
精氨酸 Arg | 0.701 | -0.541 | 0.464 |
脯氨酸 Pro | 0.052 | 0.970 | -0.237 |
特征值 Eigenvalue | 14.580 | 8.380 | 6.041 |
贡献率 Contribution rate/% | 50.274 | 28.895 | 20.830 |
累积贡献率 Cumulative contribution rate/% | 50.274 | 79.170 | 100.000 |
Table 6 Principal component analysis of quality index on phallus inpudicus L.
指标 Index | 主成分 Principle component | ||
---|---|---|---|
P1 | P2 | P3 | |
灰分 Ash | 0.835 | -0.549 | 0.039 |
脂肪 Fat | 0.873 | 0.038 | 0.486 |
粗纤维 Crude fiber | -0.315 | -0.944 | 0.097 |
总糖 Total sugar | -0.465 | 0.334 | -0.820 |
氮 N | 0.576 | 0.525 | 0.626 |
磷 P | 0.763 | 0.514 | -0.392 |
钾 K | 0.791 | -0.611 | 0.044 |
钙 Ca | 0.011 | -0.610 | 0.792 |
铜 Cu | 0.497 | 0.478 | 0.724 |
铁 Fe | -0.720 | 0.269 | 0.640 |
镁 Mg | -0.640 | 0.532 | 0.554 |
锌 Zn | 0.818 | -0.357 | 0.451 |
天冬氨酸 Asp | 0.718 | -0.679 | 0.153 |
苏氨酸 Thr | 0.824 | 0.561 | -0.084 |
丝氨酸 Ser | 0.319 | -0.653 | -0.687 |
谷氨酸 Glu | 0.717 | 0.469 | -0.516 |
甘氨酸 Gly | 0.491 | 0.860 | -0.134 |
丙氨酸 Ala | 0.163 | 0.591 | 0.790 |
缬氨酸 Val | 0.444 | 0.870 | 0.213 |
胱氨酸 Cys | 0.844 | -0.518 | -0.137 |
蛋氨酸 Met | 0.998 | -0.001 | 0.066 |
异亮氨酸 Ile | 0.973 | 0.221 | 0.074 |
亮氨酸 Leu | 0.918 | 0.020 | 0.395 |
酪氨酸 Tyr | -0.838 | 0.312 | 0.448 |
苯丙氨酸 Phe | -0.961 | -0.149 | 0.233 |
组氨酸 His | 0.738 | 0.366 | -0.566 |
赖氨酸 Lys | 0.992 | 0.042 | -0.116 |
精氨酸 Arg | 0.701 | -0.541 | 0.464 |
脯氨酸 Pro | 0.052 | 0.970 | -0.237 |
特征值 Eigenvalue | 14.580 | 8.380 | 6.041 |
贡献率 Contribution rate/% | 50.274 | 28.895 | 20.830 |
累积贡献率 Cumulative contribution rate/% | 50.274 | 79.170 | 100.000 |
地区 Area | 主成分得分 Principle component score | F:综合得分 Composite score | 排名 Rank | ||
---|---|---|---|---|---|
F1 | F2 | F3 | |||
德江 DJ | -2.13 | 0.55 | -3.39 | -1.62 | 4 |
湄潭 MT | -3.83 | 1.35 | 2.49 | -1.02 | 3 |
大方 DF | 1.13 | -4.21 | 0.55 | -0.53 | 2 |
丹寨 DZ | 4.83 | 2.30 | 0.36 | 3.17 | 1 |
Table 7 Principle component score and composite score
地区 Area | 主成分得分 Principle component score | F:综合得分 Composite score | 排名 Rank | ||
---|---|---|---|---|---|
F1 | F2 | F3 | |||
德江 DJ | -2.13 | 0.55 | -3.39 | -1.62 | 4 |
湄潭 MT | -3.83 | 1.35 | 2.49 | -1.02 | 3 |
大方 DF | 1.13 | -4.21 | 0.55 | -0.53 | 2 |
丹寨 DZ | 4.83 | 2.30 | 0.36 | 3.17 | 1 |
1 | 朱国胜,桂阳,刘鹏,等.白鬼笔仿野生栽培技术[J].农技服务,2018,35(3):36-40. |
ZHU G S, GUI Y, LIU P,et al.. Imitation wild cultivation techniques of Phallus impudicus L. [J]. Agric. Technol. Service,2018,35(3):36-40. | |
2 | 黄年来.中国食用菌百科[M]. 北京:中国农业出版社,1993:3-172. |
3 | 郑秀艳,孟繁博,邬彩灵,等.黔产白鬼笔不同部位品质分析与评价[J].现代食品科技,2021,37(12):23-32. |
ZHENG X Y, MENG F B, WU C L,et al.. Quality analysis and evaluation of different parts of Phallus impudicus L.of Guizhou [J].Mod. Food Sci. Technol., 2021,37(12):23-32. | |
4 | 首坤秀,王山立,林灵,等.冬荪及其蛋托的成分分析和抗氧化活性研究[J].食品科技,2020,45(2):264-271. |
SHOU K X, WANG S L, LIN L,et al.. Study on the component analysis and antioxidant activity of Phallus inpudicu and egg tray [J]. Food Sci. Technol., 2020,45(2):264-271. | |
5 | 李文力,黎璐,汤洪敏.黔产白鬼笔不同部位提取物的成分分析[J].食品科学,2016,37(2):72-76. |
LI W L, LI L, TANG H M. Chemical composition analysis of extracts from different parts of Phallus impudicus L. growing in Guizhou province [J]. Food Sci., 2016,37(2):72-76. | |
6 | 何忠国,侯俊,王彩云,等.栽培料用量、主材种类组合、栽培时间对冬荪产量的影响[J].农业工程技术,2021,41(17):14-17. |
HE Z G, HOU J, WANG C Y, et al.. Effects of cultivation material dosage,main material type combination and cultivation time on Phallus impudicus L. yield [J]. Agric. Eng. Technol., 2021,41(17):14-17. | |
7 | 张进强,周涛,郭兰萍,等.天麻-冬荪轮种模式的生态效益研究[J].中国中药杂志,2020,45(3):457-462. |
ZHANG J Q, ZHOU T, GUO L P, et al.. Ecological benefits of Gastrodia elata-Phallus impudicus sequential planting pattern [J]. China J. Chin. Mater. Med., 2020,45(3):457-462. | |
8 | 徐彦军,杨念龙,袁涛,等.添加茶枝屑熟料栽培对白鬼笔生长及产量的影响[J].江苏农业科学,2017,45(21):152-154. |
XU Y J, YANG N L, YUAN T, et al.. Effects of adding tea branch clinker on growth and yield of Phallus impudicus L. [J]. Jiangsu Agric. Sci., 2017,45(21):152-154. | |
9 | 何忠国,侯俊,王彩云,等.冬荪优良菌种筛选研究[J].耕作与栽培,2021,41(4):33-37. |
HE Z G, HOU J, WANG C Y, et al.. Study on screening of excellent strains of Phallus impudicus L. [J]. Farming Cult., 2021,41(4):33-37. | |
10 | 桂阳,龚光禄,卢颖颖,等.白鬼笔出菇特性研究[J].食用菌,2013(3):12-14. |
GUI Y, GONG G L, LU Y Y, et al.. Study on fruiting characteristics of Phallus impudicus L. [J]. Edible Fungi, 2013(3):12-14. | |
11 | 中华人民共和国国家卫生和计划生育委员会. 食用菌安全国家标准 食用菌及其制品: [S].北京:中国标准出版社,2014. |
12 | 熊丙全,兰秀华,彭卫红,等.不同羊肚菌氨基酸比较分析及营养评价[J].食品发酵与工业,2020, 46(2):114-119. |
XIONG B Q, LAN X H, PENG W H, et al.. Comparative analysis and nutritional evaluation of different amino acids in Morchlla.spp [J]. Food Ferment. Ind., 2020,46(2):114-119. | |
13 | 蒲玲玲,段洁,张莎莎,等.野生菊花不同部位氨基酸的分析[J].营养学报,2018,40(4):415-416. |
PU L L, DUAN J, ZHANG S S, et al.. Analysis of amino acids in different parts of dendranthema indicum [J]. Acta Nutr. Sin., 2018,40(4):415-416. | |
14 | 温立香,袁冬寅,欧淑琼,等.广西三个产区虫茶主要茶特征成分、挥发性成分分析及氨基酸营养评价[J].食品工业科技,2022,43(20):1-12. |
WEN L X, YUAN D Y, OU S Q, et al.. Analysis of main tea characteristic components and volatile components and amino acid nutrition evaluation of insect tea from three producing areas in Guangxi [J]. Sci. Technol. Food Ind., 2022,43(20):1-12. | |
15 | 中华人民共和国国家卫生和计划生育委员会,国家食品药品监督管理总局. 食品安全国家标准 食品中氨基酸的测定: [S].北京:中国标准出版社,2016. |
16 | 中华人民共和国国家卫生和计划生育委员会,国家食品药品监督管理总局. 食品安全国家标准 食品中多元素的测定: [S].北京:中国标准出版社,2016. |
17 | 中华人民共和国国家卫生和计划生育委员会. 食品安全国家标准 食品中灰分的测定: [S].北京:中国标准出版社,2016. |
18 | 中华人民共和国国家卫生和计划生育委员会,国家食品药品监督管理总局. 食品安全国家标准 食品中脂肪的测定: [S].北京:中国标准出版社,2016. |
19 | 中华人民共和国卫生部,中国国家标准化管理委员会. 植物类食品中粗纤维的测定: [S].北京:中国标准出版社,2003. |
20 | 中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会. 食用菌中总糖含量的测定: [S].北京:中国标准出版社,2009. |
21 | 王艳,王燕萍,崔方,等.3种党参药材氨基酸组成与营养评价分析及品种分类研究[J].时珍国医国药,2021,32(10):2421-2425. |
WANG Y, WANG Y P, CUI F, et al.. Amino acid composition, nutritional evaluation and variety classification of three kinds of Codonopsis pilosula [J]. Lishizhen Med. Mater. Med. Res., 2021,32(10):2421-2425. | |
22 | 王永辉,吴瑾,白家磊,等.不同产地松茸中氨基酸含量测定及比较[J].营养学报,2019,41(5): 519-520. |
WANG Y H, WU J, BAI J L,et al.. Determination and comparison of amino acids in Tricholoma matsutake from different habitats [J]. Acta Nutr. Sin., 2019,41(5):519-520. | |
23 | 郭如鑫,王有琼,张重权,等.辣木蛋白质与氨基酸组成分析及营养评价[J].云南农业大学学报(自然科学),2020,35(2):324-331. |
GUO R X, WANG Y Q, ZHANG Z Q, et al.. Protein and amino acid composition analysis and nutritional evaluation of Moringa oleifera lam [J]. J. Yunnan Agric. Univ. (Nat. Sci.), 2020,35(2):324-331. | |
24 | 彭超,蔡春菊,涂佳,等.以竹屑为主要培养基质的食用菌营养成分差异及评价[J].热带作物学报,2021,42(7):2052-2058. |
PENG C, CAI C J, TU J, et al.. Difference and evaluation of nutritional contents in edible mushrooms cultured with main medium of bamboo sawdust [J]. Chin. J. Trop. Crops, 2021,42(7):2052-2058. | |
25 | 侯娜, 赵莉莉, 魏安智,等.不同种质花椒氨基酸组成及营养价值评价[J].食品科学,2017,38(18): 113-118. |
HOU N, ZHAO L L, WEI A Z, et al.. Amino acid composition and nutritional quality evaluation of different germplasms of chinese prickly ash [J]. Food Sci., 2017,38(18):113-118. | |
26 | 王小生.必需氨基酸对人体健康的影响[J].中国食物与营养,2005(7):48-49. |
WANG X S. Food and nutrition in China [J]. Chin. Food Nutr., 2005(7):48-49. | |
27 | 侯娣,黄卫华,陈洪雨,等.球状香菇菌株的氨基酸特征分析及蛋白质品质评价[J].菌物学报,2021, 40(9):2412-2422. |
HOU D, HUANG W H, CHEN H Y, et al.. Amino acid profile and protein quality of Lentinula edodes with ball-shaped fruiting bodies [J]. Mycosystema, 2021,40(9):2412-2422. | |
28 | 颜孙安,林香信,李巍,等.闽产食用菌的氨基酸组成特征及其营养评价[J].食品安全质量检测学报, 2021,12(19):7723-7731. |
YAN S A, LIN X X, LI W, et al.. Amino acid composition characteristics and nutritional evaluation of edible fungi produced in Fujian [J]. J. Food Saf. Qual., 2021,12(19):7723-7731. | |
29 | 王允茹,蔡秋杏,张晨晓,等.北部湾海区三种常见牡蛎的蛋白质及氨基酸营养分析与评价[J].食品工业科技,2022,43(7):310-316. |
WANG Y R, CAI Q X, ZHANG C X,et al.. Analysis and evaluation of protein and amino acid nutrition of three common oysters in Beibu Gulf [J]. Sci. Technol. Food Ind., 2022, 43(7):310-316. | |
30 | 徐杰,廖津,林泽安,等.石斑鱼肉肽粉的氨基酸组成分析与营养价值评价[J].食品与发酵工业,2021, 47(23):221-226. |
XU J, LIAO J, LIN Z A, et al.. Amino acid composition analysis and nutrition value evaluation of peptide powder from grouper muscle [J]. Food Ferment. Ind., 2021,47(23):221-226. | |
31 | 张涛,宋海云,贺鹏,等.不同澳洲坚果种质果仁氨基酸组成分析与评价[J].中国农业科技导报,2022,24(1):119-127. |
ZHANG T, SONG H Y, HE P, et al.. Analysis and evaluation of amino acid composition in different Macadamia ternifolia germplasm [J]. J. Agric. Sci. Technol., 2022,24(1):119-127. | |
32 | 李祥栋,章洁琼,潘虹,等.18份薏苡自交系的主要氨基酸及脂肪酸组分评价[J].江苏农业科学,2021,49(21):159-164. |
LI X D, ZHANG J Q, PAN H, et al.. Evaluation of main amino acids and fatty acid components in 18 inbred lines of Coix lachryma-jobi [J]. Jiangsu Agric. Sci., 2021,49(21):159-164. | |
33 | 卢士军,李泰,孙君茂,等.香菇、杏鲍菇和金针菇的氨基酸组成与蛋白质含量评价[J].中国食用菌,2022,41(1):45-51. |
LU S J, LI T, SUN J M, et al.. Amino acid composition and protein evaluation of Lentinula edodes,Pleurotus eryngii and Flammulina velutipes [J]. Chin. Edible Fungi, 2022,41(1):45-51. | |
34 | 黄清铧,王庆福,张柳莲,等.甘蔗渣栽培的不同颜色侧耳中的氨基酸组成与蛋白质营养评价[J].北方园艺,2019(10):127-133. |
HUANG Q H, WANG Q F, ZHANG L L, et al.. Evaluation of amino acid composition and protein nutrition in Pleurotus pulmonarius of different colors cultivated with bagasse [J]. Northern Hortic., 2019(10):127-133. | |
35 | 曾心美,王希,石小庆,等.17个品种木芙蓉花的矿质元素分析评价及健康风险评估[J/OL].食品工业科技,2022[2022-04-30].. |
ZENG X M, WANG X, SHI X Q, et al.. The evaluation of mineral nutrient and health risk in flower of 17 cultivars of Hibiscus mutabilis L. [J/OL]. Sci. Technol. Food Ind., 2022 [2022-04-30]. . | |
36 | FRAGA C G. Relevance,essentiality and toxicity of trace elements in human health [J]. Mol. Aspects Med., 2005,26(4-5):235-244. |
37 | World Health Organization. Trace Elements in Human Nutrition and Health [M]. Geneva: WHO, 1996. |
38 | 王丽涛.微量元素锌铜与人体健康[J].微量元素与健康研究,2007,24(4):66. |
WANG L T. Trace element zinc and copper on human health [J]. Stud. Trace Elem. Health, 2007,24 (4):66. | |
39 | 于冬梅,何宇纳,郭齐雅,等.2002—2012 年中国居民能量营养素摄入状况及变化趋势[J].卫生研究,2016,45(4):527-533. |
YU D M, HE Y N, GUO Q Y, et al.. Trends of energy and nutrients intake among Chinese population in 2002—2012 [J]. J. Hygi. Res., 2016,45(4):527-533. | |
40 | 王德美,刘桂华,范成五,等.黔产红托竹荪基地土壤-红托竹荪体系矿质元素含量及相关性分析[J].中国农学通报,2022,38(14):72-76. |
WANG D M, LIU G H, FAN C W, et al.. Content and correlation analysis of mineral elements in soil-dictyophora rubra system in Guizhou [J]. Chin. Agric. Sci. Bull., 2022,38(14):72-76. | |
41 | 李浪,孙燕,刘妮.红托竹荪与覆土土壤矿质元素相关性分析[J].江苏农业科学,2019,47(5): 99-102. |
LI L, SUN Y, LIU N. Correlation analysis between dictyophora rubra and mineral elements of soil [J]. Jiangsu Agric. Sci., 2019,47(5):99-102. | |
42 | 李曦,邓兰,周娅,等.金耳、银耳与木耳的营养成分比较[J].食品研究与开发,2021,42(16): 77-82. |
LI X, DENG L, ZHOU Y, et al.. Nutritional components comparison between Tremella aurantialba,Tremella fucitormis and Auricularia aurricula [J]. Food Res. Dev., 2021,42(16):77-82. | |
43 | 张兆英,宋立立.12种野生食用菌中总糖含量分析[J].中国食用菌,2019,38(4):33-35. |
ZHAO Z Y, SONG L L. Analysis on total sugar content in 12 kinds of wild edible fungi [J]. Chin. Edible Fungi, 2019,38(4):33-35. | |
44 | 靳荣线,李峰,邹明,等.基于主成分分析法的不同等级香菇品质评价[J].中国瓜菜,2022,35(8): 50-56. |
JIN R X, LI F, ZOU M, et al.. Evaluation of lentinula edodes quality based on principal component analysis [J]. China Cucurbits Veg., 2022,35(8):50-56. | |
45 | 邓雅元,游金坤,华蓉,等.3种常见野生牛肝菌和3种大宗人工食用菌营养成分分析[J].中国食用菌,2022,41(3):45-48. |
DENG Y Y, YOU J K, HUA R, et al.. Nutritional analysis of three common wild boltus spp.and three staple artificial edible fungi [J]. Chin. Edible Fungi, 2022,41(3):45-48. | |
46 | 李泰,卢士军,孙君茂,等.26种常见市售食用菌营养成分分析及评价[J].中国食用菌,2021,40(12):66-72. |
LI T, LU S J, SUN J M, et al.. Analysis and evaluation on nutritional components of 26 common edible fungi in market [J]. Chin. Edible Fungi, 2021,40(12):66-72. |
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