Chinese Agricultural Science Bulletin ›› 2021, Vol. 37 ›› Issue (17): 32-38.doi: 10.11924/j.issn.1000-6850.casb2020-0407
Special Issue: 园艺
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Jiang Wu1(), Weng Guohang2, Chen Jiadong1, Ye Chuansheng3, Jiang Xinkai4, Tao Zhengming1(
)
Received:
2020-08-24
Revised:
2020-12-18
Online:
2021-06-15
Published:
2021-06-29
Contact:
Tao Zhengming
E-mail:jiangwu8888@163.com;zmtao2002@aliyun.com.cn
CLC Number:
Jiang Wu, Weng Guohang, Chen Jiadong, Ye Chuansheng, Jiang Xinkai, Tao Zhengming. Comparative Analysis of Chemical Constituents of Polygonatum Cyrtonema Hua of Red and Green Stem Type Based on LC-MS Metabolomics[J]. Chinese Agricultural Science Bulletin, 2021, 37(17): 32-38.
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URL: https://www.casb.org.cn/EN/10.11924/j.issn.1000-6850.casb2020-0407
种质 | 叶厚/mm | 叶长/cm | 叶宽/cm | 叶面积/cm2 | 株高/cm | 茎粗/mm |
---|---|---|---|---|---|---|
G1 | 0.21±0.01a | 18.21±0.21a | 5.29±0.35a | 63.06±0.73a | 108.81±1.44b | 9.03±0.02c |
G2 | 0.20±0.01a | 17.42±0.42a | 5.72±0.23a | 62.83±0.52a | 108.94±0.57b | 8.79±0.14d |
G3 | 0.21±0.01a | 18.14±0.16a | 5.25±0.19a | 62.50±0.79a | 109.94±0.43b | 8.99±0.04d |
R1 | 0.25±0.01b | 19.31±0.65b | 6.34±0.04b | 75.43±0.05b | 98.94±0.63a | 7.62±0.22a |
R2 | 0.27±0.01b | 19.17±0.68b | 6.44±0.19b | 74.21±1.16b | 98.13±0.39a | 7.98±0.08b |
R3 | 0.26±0.01b | 19.11±0.29b | 6.50±0.40b | 74.87±0.19b | 98.86±0.68a | 7.66±0.04a |
种质 | 叶厚/mm | 叶长/cm | 叶宽/cm | 叶面积/cm2 | 株高/cm | 茎粗/mm |
---|---|---|---|---|---|---|
G1 | 0.21±0.01a | 18.21±0.21a | 5.29±0.35a | 63.06±0.73a | 108.81±1.44b | 9.03±0.02c |
G2 | 0.20±0.01a | 17.42±0.42a | 5.72±0.23a | 62.83±0.52a | 108.94±0.57b | 8.79±0.14d |
G3 | 0.21±0.01a | 18.14±0.16a | 5.25±0.19a | 62.50±0.79a | 109.94±0.43b | 8.99±0.04d |
R1 | 0.25±0.01b | 19.31±0.65b | 6.34±0.04b | 75.43±0.05b | 98.94±0.63a | 7.62±0.22a |
R2 | 0.27±0.01b | 19.17±0.68b | 6.44±0.19b | 74.21±1.16b | 98.13±0.39a | 7.98±0.08b |
R3 | 0.26±0.01b | 19.11±0.29b | 6.50±0.40b | 74.87±0.19b | 98.86±0.68a | 7.66±0.04a |
种质 | 黄精多糖含量/% | 最大值/% | 最小值/% |
---|---|---|---|
G1 | 8.14±0.08a | 8.20 | 8.05 |
G2 | 8.84±0.41a | 9.02 | 8.37 |
G3 | 8.72±0.58a | 9.36 | 8.23 |
R1 | 11.02±0.70b | 11.59 | 10.23 |
R2 | 11.67±1.02b | 12.69 | 10.66 |
R3 | 11.14±0.51b | 11.56 | 10.58 |
种质 | 黄精多糖含量/% | 最大值/% | 最小值/% |
---|---|---|---|
G1 | 8.14±0.08a | 8.20 | 8.05 |
G2 | 8.84±0.41a | 9.02 | 8.37 |
G3 | 8.72±0.58a | 9.36 | 8.23 |
R1 | 11.02±0.70b | 11.59 | 10.23 |
R2 | 11.67±1.02b | 12.69 | 10.66 |
R3 | 11.14±0.51b | 11.56 | 10.58 |
序号 | G(X) | R(X) | RT/min | 化合物 | 化学式 | 分子量测定值 | 匹配度/% |
---|---|---|---|---|---|---|---|
1 | 118773942 | 199425019.9 | 0.796 | L-赖氨酸L-Lysine | C6 H14 N2 O2 | 146.10571 | 94.5 |
2 | 7310579100 | 6503049522 | 0.831 | DL-精氨酸DL-Arginine | C6 H14 N4 O2 | 174.11184 | 92.8 |
3 | 116416587.1 | 49962126.71 | 0.877 | 组氨酸L-Histidine | C6 H9 N3 O2 | 155.0697 | 94.4 |
4 | 114442002.1 | 2188661948 | 0.882 | 谷氨酰胺DL-Glutamine | C5 H10 N2 O3 | 146.06928 | 97.3 |
5 | 24369688.44 | 17823665.83 | 0.9 | 烟酰胺Nicotinamide | C6 H6 N2 O | 122.0484 | 64.9 |
6 | 128084320.8 | 137297877.1 | 0.919 | L-谷胱甘肽(还原)L-Glutathione (reduced) | C10 H17 N3 O6 S | 307.0841 | 96.3 |
7 | 331974234.4 | 404379033.7 | 0.923 | D-(+)-吡咯啉酸D-(+)-Pipecolinic acid | C6 H11 N O2 | 129.07917 | 85.3 |
8 | 165626717.5 | 244474205.6 | 0.932 | 缬氨酸Valine | C5 H11 N O2 | 117.0793 | 96.7 |
9 | 337167729.7 | 1331901632 | 0.981 | D-(+)-焦谷氨酸D-(+)-Pyroglutamic Acid | C5 H7 N O3 | 129.04283 | 95 |
10 | 872735165.6 | 930719388 | 0.99 | D -(+)脯氨酸D-(+)-Proline | C5 H9 N O2 | 115.06368 | 97.4 |
11 | 173504620.4 | 1525360961 | 1.002 | L -谷氨酸L-Glutamic acid | C5 H9 N O4 | 147.05336 | 94.4 |
12 | 343104300.1 | 410407035.9 | 1.03 | D-(+)-吡咯啉酸D-(+)-Pipecolinic acid | C6 H11 N O2 | 129.07919 | 92.5 |
13 | 305760030.6 | 306588603.1 | 1.039 | l -谷胱甘肽(还原)L-Glutathione (reduced) | C10 H17 N3 O6 S | 307.08405 | 97.3 |
14 | 13425274.32 | 33859522.06 | 1.059 | 对羟基苯甲醛4-Hydroxybenzaldehyde | C7 H6 O2 | 122.03712 | 84.2 |
15 | 1651446338 | 2472847596 | 1.284 | L-异亮氨酸L-Isoleucine | C6 H13 N O2 | 131.09482 | 99.9 |
16 | 30422538.3 | 60547492.92 | 1.357 | 天门冬氨酸L-Aspartic acid | C4 H7 N O4 | 133.03772 | 77.6 |
17 | 10528037.53 | 18890475.69 | 1.746 | 犬尿氨酸L-Kynurenine | C10 H12 N2 O3 | 208.08512 | 85.4 |
18 | 3514455666 | 7149276098 | 1.786 | 苯丙氨酸L-Phenylalanine | C9 H11 N O2 | 165.07907 | 98.5 |
19 | 6555785.801 | 15429891.05 | 2.664 | 甲硫腺苷5'-S-Methyl-5'-thioadenosine | C11 H15 N5 O3 S | 297.08999 | 98.6 |
20 | 91686482.37 | 127330030.9 | 2.774 | 吲哚Indole | C8 H7 N | 117.05823 | 90.4 |
21 | 18734105.06 | 53124880.57 | 10.132 | α-亚麻酸α-Linolenic acid | C18 H30 O2 | 278.22492 | 92.5 |
22 | 22589783.07 | 24732765.98 | 16.185 | 鸟嘌呤Guanine | C5 H5 N5 O | 151.0495 | 77 |
序号 | G(X) | R(X) | RT/min | 化合物 | 化学式 | 分子量测定值 | 匹配度/% |
---|---|---|---|---|---|---|---|
1 | 118773942 | 199425019.9 | 0.796 | L-赖氨酸L-Lysine | C6 H14 N2 O2 | 146.10571 | 94.5 |
2 | 7310579100 | 6503049522 | 0.831 | DL-精氨酸DL-Arginine | C6 H14 N4 O2 | 174.11184 | 92.8 |
3 | 116416587.1 | 49962126.71 | 0.877 | 组氨酸L-Histidine | C6 H9 N3 O2 | 155.0697 | 94.4 |
4 | 114442002.1 | 2188661948 | 0.882 | 谷氨酰胺DL-Glutamine | C5 H10 N2 O3 | 146.06928 | 97.3 |
5 | 24369688.44 | 17823665.83 | 0.9 | 烟酰胺Nicotinamide | C6 H6 N2 O | 122.0484 | 64.9 |
6 | 128084320.8 | 137297877.1 | 0.919 | L-谷胱甘肽(还原)L-Glutathione (reduced) | C10 H17 N3 O6 S | 307.0841 | 96.3 |
7 | 331974234.4 | 404379033.7 | 0.923 | D-(+)-吡咯啉酸D-(+)-Pipecolinic acid | C6 H11 N O2 | 129.07917 | 85.3 |
8 | 165626717.5 | 244474205.6 | 0.932 | 缬氨酸Valine | C5 H11 N O2 | 117.0793 | 96.7 |
9 | 337167729.7 | 1331901632 | 0.981 | D-(+)-焦谷氨酸D-(+)-Pyroglutamic Acid | C5 H7 N O3 | 129.04283 | 95 |
10 | 872735165.6 | 930719388 | 0.99 | D -(+)脯氨酸D-(+)-Proline | C5 H9 N O2 | 115.06368 | 97.4 |
11 | 173504620.4 | 1525360961 | 1.002 | L -谷氨酸L-Glutamic acid | C5 H9 N O4 | 147.05336 | 94.4 |
12 | 343104300.1 | 410407035.9 | 1.03 | D-(+)-吡咯啉酸D-(+)-Pipecolinic acid | C6 H11 N O2 | 129.07919 | 92.5 |
13 | 305760030.6 | 306588603.1 | 1.039 | l -谷胱甘肽(还原)L-Glutathione (reduced) | C10 H17 N3 O6 S | 307.08405 | 97.3 |
14 | 13425274.32 | 33859522.06 | 1.059 | 对羟基苯甲醛4-Hydroxybenzaldehyde | C7 H6 O2 | 122.03712 | 84.2 |
15 | 1651446338 | 2472847596 | 1.284 | L-异亮氨酸L-Isoleucine | C6 H13 N O2 | 131.09482 | 99.9 |
16 | 30422538.3 | 60547492.92 | 1.357 | 天门冬氨酸L-Aspartic acid | C4 H7 N O4 | 133.03772 | 77.6 |
17 | 10528037.53 | 18890475.69 | 1.746 | 犬尿氨酸L-Kynurenine | C10 H12 N2 O3 | 208.08512 | 85.4 |
18 | 3514455666 | 7149276098 | 1.786 | 苯丙氨酸L-Phenylalanine | C9 H11 N O2 | 165.07907 | 98.5 |
19 | 6555785.801 | 15429891.05 | 2.664 | 甲硫腺苷5'-S-Methyl-5'-thioadenosine | C11 H15 N5 O3 S | 297.08999 | 98.6 |
20 | 91686482.37 | 127330030.9 | 2.774 | 吲哚Indole | C8 H7 N | 117.05823 | 90.4 |
21 | 18734105.06 | 53124880.57 | 10.132 | α-亚麻酸α-Linolenic acid | C18 H30 O2 | 278.22492 | 92.5 |
22 | 22589783.07 | 24732765.98 | 16.185 | 鸟嘌呤Guanine | C5 H5 N5 O | 151.0495 | 77 |
代谢物 | VIP值 |
---|---|
柠檬酸 | 1.09 |
苯甲酸 | 2.04 |
甲氧基水杨酸 | 1.38 |
脯氨酸 | 1.91 |
3 -羟基(氧化)phosphoranyl丙酮酸 | 0.98 |
芥酸酰胺 | 3.21 |
蓖麻油酸甲酯 | 1.78 |
组氨酸 | 2.11 |
三乙胺 | 2.43 |
γ-亚麻酸乙酯 | 3.01 |
邻二甲氧基苯 | 1.97 |
L-色氨酸 | 2.76 |
5-羟甲基糠醛 | 1.04 |
L-赖氨酸 | 2.03 |
L-谷氨酸 | 1.77 |
代谢物 | VIP值 |
---|---|
柠檬酸 | 1.09 |
苯甲酸 | 2.04 |
甲氧基水杨酸 | 1.38 |
脯氨酸 | 1.91 |
3 -羟基(氧化)phosphoranyl丙酮酸 | 0.98 |
芥酸酰胺 | 3.21 |
蓖麻油酸甲酯 | 1.78 |
组氨酸 | 2.11 |
三乙胺 | 2.43 |
γ-亚麻酸乙酯 | 3.01 |
邻二甲氧基苯 | 1.97 |
L-色氨酸 | 2.76 |
5-羟甲基糠醛 | 1.04 |
L-赖氨酸 | 2.03 |
L-谷氨酸 | 1.77 |
[1] | 廖荣俊, 杨阳, 叶碧欢, 等. 多花黄精根茎的转录组分析与甾体皂苷生物合成相关基因发掘[J]. 中国中药杂志, 2020,45(7):1648-1656. |
[2] | 姜武, 王声淼, 叶传盛, 等. 浙产多花黄精最适采收期及初加工试验[J]. 浙江农业科学, 2020,61(4):697-701. |
[3] | 姜武, 叶传盛, 吴志刚, 等. 黄精的本草考证[J]. 中药材, 2017,40(11):2713-2716. |
[4] | 陈怡, 姚云生, 陈松树, 等. 多花黄精不同龄块茎矿质元素含量[J]. 北方园艺, 2020(6):115-118. |
[5] | 倪天宇, 罗晓朦, 张春椿, 等. 不同生境下多花黄精化学成分比较[J]. 中成药, 2020,42(11):2948-2953. |
[6] | 涂明锋, 叶文峰, 彭靖, 等. 不同产地多花黄精化学成分含量比较分析[J]. 安徽农业科学, 2020,48(8):198-200. |
[7] | 吴其国, 胡叶青, 陈帅帅, 等. 安徽不同产地野生与栽培多花黄精中黄精多糖含量比较[J]. 甘肃中医药大学学报, 2018,35(1):47-50. |
[8] | 王丹, 张鸿, 刘嘉丽, 等. 不同产地多花黄精生物活性成分含量比较[J]. 湖南农业科学, 2020(7):89-92. |
[9] | 楼柯浪, 张春椿, 陶倩, 等. 不同产地多花黄精中元素含量的主成分及相关性分析[J]. 浙江中医杂志, 2018,53(9):696-698. |
[10] | 陈龙胜, 杜李继, 陈世金, 等. GC-MS对不同产地多花黄精生药材挥发性物质差异性研究[J]. 中药材, 2018,41(4):894-897. |
[11] | 吴其国, 胡叶青, 陈帅帅, 等. 安徽不同产地野生与栽培多花黄精中黄精多糖含量比较[J]. 甘肃中医药大学学报, 2018,35(1):47-50. |
[12] | 张洪洋, 李叶丹, 王义, 等. 不同产地黄精主要化学成分比较及主成分分析[J]. 黑龙江科技信息, 2017(10):87. |
[13] | 田晓明, 颜立红, 蒋利媛, 等. 基于UPLC/Q-TOF-MS代谢组学技术的半枫荷根化学成分分析[J]. 中国农学通报, 2018,34(12):76-83. |
[14] | 韩正洲, 杨勇, 贾红梅, 等. 基于植物代谢组学的栽培型与野生型野菊花的化学成分比较及定量分析[J]. 药物分析杂志, 2017,37(7):1196-1206. |
[15] | 常相伟, 王博然, 王彤, 等. 基于UPLC-Q-TOF/MS的植物代谢组学技术鉴别林下山参的生长年限[J]. 中国中药杂志, 2016,41(19):3609-3614. |
[16] | 潘德芳. 九华黄精活性成分多糖及挥发性组分研究[D]. 长沙:中南大学, 2011. |
[17] | 宁火华, 袁铭铭, 邬秋萍, 等. 多花黄精化学成分分离鉴定[J]. 中国实验方剂学杂志, 2018,24(22):77-82. |
[18] | 张剑霜, 喻浩, 钟欣, 等. 基于GC-MS代谢组学技术比较冬虫夏草与蝉花的质量[J]. 中国实验方剂学杂志, 2018,24(18):23-29. |
[19] | 雷露, 吴天祥, 王川南. 基于UPLC-QTOF-MS代谢组学研究灰树花发酵的代谢差异[J]. 菌物学报, 2020,39(10):1920-1932. |
[20] | 王旭军, 张玉荣, 彭翠英, 等. 不同种源多花黄精农艺性状及药用有效成分的差异[J]. 湖南农业大学学报:自然科学版, 2020,46(1):53-62. |
[21] | 吴媛媛. 不同多花黄精种质的农艺及生理生化性状差异比较[D]. 长沙:湖南农业大学, 2018. |
[22] | 崔阔澍, 方清茂, 肖特, 等. 不同年龄多花黄精实生苗对其农艺性状及产量的影响[J]. 时珍国医国药, 2018,29(1):197-199. |
[23] | 贺安娜, 苏蕾, 伍贤进, 等. 多花黄精和黄精的光合特性及农艺指标比较[J]. 怀化学院学报, 2020,39(5):6-10. |
[24] | 童龙, 张磊, 陈丽洁, 等. 遮阴处理对多花黄精光合蒸腾特性的影响[J]. 中国农学通报, 2020,36(28):84-91. |
[25] | 张泽锐, 黄申, 刘京晶, 等. 多花黄精和长梗黄精花主要营养功效成分[J]. 中国中药杂志, 2020,45(6):1329-1333. |
[26] | 焦劼, 陈黎明, 孙瑞泽, 等. 不同产地黄精主要化学成分比较及主成分分析[J]. 中药材, 2016,39(3):519-522. |
[27] | 章鹏飞, 张虹, 张小波, 等. 多花黄精生态适宜性区划研究[J]. 中国中药杂志, 2020,45(13):3073-3078. |
[28] | 黄申, 刘京晶, 张新凤, 等. 多花黄精嫩芽主要营养与功效成分研究[J]. 中国中药杂志, 2020,45(5):1053-1058. |
[29] | 陈龙胜, 杜李继, 陈世金, 等. GC-MS对不同产地多花黄精生药材挥发性物质差异性研究[J]. 中药材, 2018,41(4):894-897. |
[30] | 饶宝蓉, 刘忠辉, 周先治, 等. 栽培基质对多花黄精组培苗生长的影响[J]. 中草药, 2020,51(24):6337-6344. |
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