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1.中国中医科学院 中药资源中心,道地药材品质保障与资源持续利用全国重点实验室,北京 100700
2.天津中医药大学 中医药研究院,天津 301617
3.江苏大学 药学院,江苏 镇江 212013
张林凡,在读硕士,从事中药资源研究,E-mail:linfanz@126.com
刘娟,博士,副研究员,从事中药资源再生与可替代资源开发利用研究,Tel:010-64087964,E-mail:juanliu126@126.com
纸质出版日期:2023-11-05,
网络出版日期:2023-09-07,
收稿日期:2023-05-16,
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张林凡,高佳琪,王安君等.不同陈化年份沉香中微生物及挥发性成分的变化[J].中国实验方剂学杂志,2023,29(21):155-164.
ZHANG Linfan,GAO Jiaqi,WANG Anjun,et al.Study on Changes of Microorganisms and Volatile Components in Aquilariae Lignum Resinatum with Different Aging Years[J].Chinese Journal of Experimental Traditional Medical Formulae,2023,29(21):155-164.
张林凡,高佳琪,王安君等.不同陈化年份沉香中微生物及挥发性成分的变化[J].中国实验方剂学杂志,2023,29(21):155-164. DOI: 10.13422/j.cnki.syfjx.20231113.
ZHANG Linfan,GAO Jiaqi,WANG Anjun,et al.Study on Changes of Microorganisms and Volatile Components in Aquilariae Lignum Resinatum with Different Aging Years[J].Chinese Journal of Experimental Traditional Medical Formulae,2023,29(21):155-164. DOI: 10.13422/j.cnki.syfjx.20231113.
目的
2
研究旨在探讨沉香陈化过程中,真菌群落多样性和挥发性成分的变化规律,探索二者的内在联系。
方法
2
收集不同陈化时间的沉香样品,应用高通量测序技术,分析真菌物种注释结果及丰度信息,并通过
α
及
β
多样性分析方法,对真菌群落结构组成、动态变化进行分析;同时提取不同陈化时间沉香的挥发油,并通过二维气相色谱-高分辨飞行时间质谱技术进行分离和鉴定。
结果
2
从5组沉香样品的挥发性成分中共检测到61个化合物,分别为2种单萜、24种倍半萜、1种二萜、13种芳香烃、9种烷烃和12种其他化合物;其中陈化1年沉香中分离出的挥发性化合物种类最多,陈化2年沉香的挥发性成分在总成分中所占比例最大。ITS扩增子测序分析发现5组沉香样品中的真菌隶属于162属,优势真菌属为
Kirschsteiniothelia
、曲霉属
Aspergillus
、二孢属
Lasiodiplodia
、
Phaeoacremonium
、木霉菌属
Trichoderma
等;多样性指数显示,陈化4年沉香的真菌多样性明显高于新品和陈化1~3年的沉香。
结论
2
在陈化过程中,沉香挥发性成分的含量和组成均发生明显变化;随着陈化年份增加,沉香中的真菌多样性增加,芳香烃相对含量显著降低,而倍半萜相对含量显著增加。总体而言,陈化过程有利于沉香倍半萜类物质的转化及真菌群落的丰富。
Objective
2
This study aims to investigate the changes in fungal community diversity and volatile components during the aging process of Aquilariae Lignum Resinatum and explore the internal relationship between them.
Method
2
Aquilariae Lignum Resinatum samples with different aging years were collected. High-throughput sequencing was employed to analyze the fungal diversity and abundance, and
α
and
β
diversity indicators were calculated to reveal the composition and dynamic changes of the fungal community. In addition, the essential oils of Aquilariae Lignum Resinatum with different aging years were extracted, separated, and identified by two-dimensional gas chromatography-high resolution time-of-flight mass spectrometry.
Result
2
A total of 61 compounds were identified from the volatile components of five groups of Aquilariae Lignum Resinatum samples, including 2 monoterpenes, 24 sesquiterpenoids, 1 diterpene, 13 aromatic hydrocarbons, 9 alkanes, and 12 other compounds. Among them, the volatile compounds isolated from the sample aged for 1 year had the largest number, and those from the sample aged for 2 years accounted for the largest proportion of the total components. The internal transcribed spacer(ITS) amplicon sequencing revealed that the fungi in the five groups of samples belonged to 162 genera.
Kirschsteiniothelia
,
Aspergillus
,
Lasiodiplodia
,
Phaeoacremonium
, and
Trichoderma
were the dominant fungal genera. The fungal diversity in the Aquilariae Lignum Resinatum sample aged for 4 years was significantly higher than that in the samples aged for 0 to 3 years.
Conclusion
2
The volatile component content and composition of Aquilariae Lignum Resinatum altered dramatically during aging. The aging of Aquilariae Lignum Resinatum was accompanied by the increasing fungal diversity, decreasing relative content of aromatic hydrocarbons, and increasing relative content of sesquiterpenoids. In general, aging was beneficial to the transformation of sesquiterpenoids and the enrichment of fungi.
白木香沉香陈化微生物多样性挥发性成分
Aquilaria sinensisAquilariae Lignum Resinatumagingmicrobial diversityvolatile components
吴启南,钱大玮,段金廒.中药材贮藏过程中的质量变化机制探讨[J].中国中药杂志,2010,35(14):1904-1908.
薛澄,张潇予,李瑞,等.中药陈化“陈久者佳”的科学内涵[J].中草药,2020,51(22):5864-5867.
陈翠平,徐红霞,董帅,等.红花种子的低温贮藏条件探索[J].中国实验方剂学杂志,2022,28(3):155-162.
国家药典委员会.中华人民共和国药典:一部[M].北京:中国医药科技出版社,2020:192.
LIU Y,CHEN H,YANG Y,et al.Whole-tree agarwood-inducing technique:An efficient novel technique for producing high-quality agarwood in cultivated Aquilaria sinensis trees[J].Molecules,2013,18(3):3086-3106.
TAN C S,ISA N M,ISMAIL I,et al.Agarwood induction:Current developments and future perspectives[J].Front Plant Sci,2019,10:122.
陈敬.陈氏香谱.四库全书:844册[M].上海:上海古籍出版社,1989:266.
LIU J,ZHANG X,YANG J,et al.Agarwood wound locations provide insight into the association between fungal diversity and volatile compounds in Aquilaria sinensis[J].R Soc Open Sci,2019,6(7):190211.
LI W,CHEN H Q,WANG H,et al.Natural products in agarwood and Aquilaria plants:Chemistry,biological activities and biosynthesis[J].Nat Prod Rep,2021,38(3):528-565.
张航,马家乐,昝妮利,等.沉香中倍半萜类化学成分研究[J].中国中药杂志,2022,47(16):4385-4390.
XU Y,ZHANG Z,WANG M,et al.Identification of genes related to agarwood formation: Transcriptome analysis of healthy and wounded tissues of Aquilaria sinensis[J].BMC Genomics,2013,14:227.
杨放晴,何丽英,杨丹,等.基于高通量测序技术分析不同地区自然陈化广陈皮表面微生物群落多样性[J].中国酿造,2021,40(9):31-36.
任凌丽,李浩,钱雪,等.新鲜艾叶与陈化艾叶挥发油化学成分研究[J].中国野生植物资源,2022,41(11):39-42,55.
徐杨帆,王凯,黄章倍,等.采用加速试验设计研究“六陈”中药的化学成分动态变化规律[J].海峡药学,2014,26(1):18-21.
杨放晴,何丽英,杨丹,等.不同陈化时间广陈皮中黄酮类成分的UPLC-Q-Orbitrap HRMS分析[J].中国实验方剂学杂志,2021,27(12):125-132.
叶志恒,刘祥义,胡翔飞,等.不同陈化年份鸢尾挥发性成分的分析研究[J].香料香精化妆品,2020,179(2):1-4.
胡媛,吴蓓,易达,等.基于广泛靶向代谢组学技术与高通量测序技术探究广陈皮陈化机制[J].天然产物研究与开发,2022,34(4):553-562.
李红念,梅全喜,林焕泽,等.沉香的化学成分、药理作用和临床应用研究进展[J].中国药房,2011,22(35):3349-3351.
雷智东.沉香抗菌活性成分的研究[D].广州:广东药学院,2015.
陈晓颖,黄跃前,陈玉婵,等.沉香挥发性成分与其抗肿瘤活性的灰色关联度分析[J].中成药,2018,40(1):224-227.
彭德乾,王灿红,刘洋洋,等.沉香的化学成分及其药理活性的研究进展[J].中国现代应用药学,2021,38(3):358-365.
UEDA J Y,IMAMURA L,TEZUKA Y,et al.New sesquiterpene from Vietnamese agarwood and its induction effect on brain-derived neurotrophic factor mRNA expression in vitro[J].Bioorg Med Chem,2006,14(10):3571-3574.
赵艳艳,房志坚.“白木香通体造香技术”所结沉香质量评价及苄基丙酮的含量测定[J].广东药学院学报,2013,29(3):253-257.
张鑫.基于真菌与陈皮药效物质相关性研究陈皮陈化机制[D].成都:成都中医药大学,2017.
林森.奇楠沉香毛色二孢属真菌多样性研究[D].北京:北京林业大学,2018.
CHEN X,SUI C,LIU Y,et al.Agarwood formation induced by fermentation liquid of Lasiodiplodia Theobromae, the dominating fungus in wounded wood of Aquilaria sinensis[J].Curr Microbiol,2017,74(4):460-468.
杜壮,彭江涛,刘君昂,等.促白木香结香真菌的分子鉴定及结香效果分析[J].分子植物育种,2023,doi:46.1068.S.20230418.1756.006http://dx.doi.org/46.1068.S.20230418.1756.006.
王东光,张宁南,杨曾奖,等.20种真菌对白木香挥发油成分的影响[J].华南农业大学学报,2016,37(5):77-83.
陈晓东,谢明容,刘少烽,等.镰刀菌诱导结香对白木香倍半萜合成酶基因表达与倍半萜含量的影响研究[J].中国药学杂志,2015,50(21):1861-1868.
MONGGOOT S,POPLUECHAI S,GENTEKAKI E,et al.Fungal endophytes: An alternative source for production of volatile compounds from agarwood oil of Aquilaria subintegra[J].Microb Ecol,2017,74(1):54-61.
JAYARAMAN S, MOHAMED R.Crude extract of Trichoderma elicits agarwood substances in cell suspension culture of the tropical tree,Aquilaria malaccensis Lam[J].Turk J Agric For,2015,39(2):163-173.
黄俊卿,魏建和,张争,等.沉香结香方法的历史记载、现代研究及通体结香技术[J].中国中药杂志,2013,38(3):302-306.
崔晋龙,肖培根,郭顺星.真菌诱导白木香产生沉香的野外实验与分析[J].中国药学杂志,2012,47(20):1614-1617.
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