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GC-MS-based identification and statistical analysis of liposoluble components in the rhizosphere soils of Panax notoginseng

机译:基于GC-MS的脂质溶解组分在Panax Noaginseng的根际土壤中的鉴定及统计分析

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摘要

Continuous cropping obstacle, mainly caused by microorganisms and organic components in soil, has become a serious problem for the plantation of Panax notoginseng (Araliaceae) due to the rapidly increased demands of this famous herbal medicine in recent decades. The rhizosphere soils cultivated with 3-year-old healthy and ill notoginseng were chemically investigated by gas chromatography-mass spectrometry (GC-MS) and compared with the corresponding soils without the plantation of notoginseng. Totally 47 liposoluble components were identified. Furthermore, the multiple statistical analysis showed that these constituents were qualitatively and quantitatively associated with the differences between the cultivated soil with P. notoginseng and the uncultivated soil. Among them, neophytadiene (4), d-alpha-tocopherol (38), (3 beta,22E,24S)-ergosta-5,22-dien-3-ol (39), (3 beta,24R)-ergost-5-en-3-ol (40), stigmasta-5,22-dien-3-ol (41), stigmast-4-en-3-one (44) and (5 alpha)-stigmastane-3,6-dione (47) contributed most to the significant differences between the cultivated and uncultivated soils, whereas cyclopentadecane (3), octadecanoic acid methyl ester (16), docosanoic acid ethyl ester (31), nonacosane (34), 38 and 39 were found in much higher amount in the soils with ill P. notoginseng as compared to the case of those with the healthy P. notoginseng. On the other hand, liposoluble components in different cultivation areas were of great diversity; however, they were able to remain relatively consistent across the overall trend of differential substances.
机译:连续种植障碍物主要由土壤中的微生物和有机成分引起,由于近几十年来,由于这位着名的草药的需求迅速增加,Panax Notinseng(Araliaceae)的种植园是一个严重的问题。通过气相色谱 - 质谱(GC-MS)化学研究了3岁健康和ILOGINSENG的根际土壤,并与未在没有载录种植的情况下与相应的土壤进行比较。鉴定了47个脂质溶解组分。此外,多种统计分析表明,这些成分与培养土与未采用土壤的栽培土壤之间的差异定性和定量相关。其中,新苯二烯(4),D-α-生育酚(38),(3β,22E,24s)-ergosta-5,22-DIEN-3-OL(39),(3β,24r)-ergost- 5-烯-3-醇(40),柱塞-5,22-DIEN-3-OL(41),Stigmast-4-ZH-1(44)和(5α)-Stigmastane-3,6- Dione(47)对培养和未露天的土壤之间的显着差异有所贡献,而环戊二烯烷(3),十二烷酸甲酸甲酯(16),二烷烷酸乙酯(31),非亚烷酸乙酯(31),壬糖烷(34),38和39与健康P. Notinseng的情况相比,土壤中的土壤中的土壤中有更高的量。另一方面,不同栽培区域的脂溶性成分具有多样化;然而,它们能够跨越差动物质的整体趋势相对一致。

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  • 来源
    《RSC Advances 》 |2019年第36期| 共8页
  • 作者单位

    Chinese Acad Sci Kunming Inst Bot State Key Lab Phytochem &

    Plant Resources West Ch Kunming 650201 Yunnan Peoples R China;

    Wuhan Univ Coll Life Sci State Key Lab Hybrid Rice Wuhan 430072 Hubei Peoples R China;

    Chinese Acad Sci Kunming Inst Bot State Key Lab Phytochem &

    Plant Resources West Ch Kunming 650201 Yunnan Peoples R China;

    Chinese Acad Sci Kunming Inst Bot State Key Lab Phytochem &

    Plant Resources West Ch Kunming 650201 Yunnan Peoples R China;

    Chinese Acad Sci Kunming Inst Bot State Key Lab Phytochem &

    Plant Resources West Ch Kunming 650201 Yunnan Peoples R China;

    Chinese Acad Sci Kunming Inst Bot State Key Lab Phytochem &

    Plant Resources West Ch Kunming 650201 Yunnan Peoples R China;

    Chinese Acad Sci Kunming Inst Bot State Key Lab Phytochem &

    Plant Resources West Ch Kunming 650201 Yunnan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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