|本期目录/Table of Contents|

[1]李天雪,胡玉涛,韦笑,等.超高效液相色谱-串联质谱同时测定盐碱胁迫金银花中3种内源激素[J].江苏农业科学,2019,47(11):229-233.
 Li Tianxue,et al.Determination of three endogenous hormones in Lonicera japonica under salt-alkali stress by ultra-high performance liquid chromatography-tandem mass spectrometry[J].Jiangsu Agricultural Sciences,2019,47(11):229-233.
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超高效液相色谱-串联质谱同时测定盐碱
胁迫金银花中3种内源激素
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第47卷
期数:
2019年第11期
页码:
229-233
栏目:
贮藏加工与检测分析
出版日期:
2019-06-20

文章信息/Info

Title:
Determination of three endogenous hormones in Lonicera japonica under salt-alkali stress by ultra-high performance liquid chromatography-tandem mass spectrometry
作者:
李天雪12 胡玉涛12 韦笑 褚朝森12
1.江苏联合职业技术学院连云港中医药分院,江苏连云港 222007; 2.江苏省连云港市药物研发共性技术中心,江苏连云港 222007
Author(s):
Li Tianxueet al
关键词:
金银花盐碱胁迫水杨酸脱落酸茉莉酸定量超高效液相色谱-串联质谱
Keywords:
-
分类号:
S567.7+90.1
DOI:
-
文献标志码:
A
摘要:
建立同时测定金银花中水杨酸(SA)、脱落酸(ABA)和茉莉酸(JA)的超高效液相色谱-串联质谱(UPLC-MS/MS)方法,并应用于盐碱胁迫下的金银花分析。激素经异丙醇/甲酸溶液(99/1,体积分数)提取后,通过固相萃取(SPE)柱净化。色谱柱为Agilent Zorbax Eclipse Plus C18柱(100 mm×2.1 mm,1.8 μm);流动相为0.1%甲酸溶 液- 乙腈;体积流量为0.4 mL/min;进样量为3 μL;质谱采用电喷雾离子源负离子模式(ESI-),多反应监测(MRM)进行测定。3种内源激素具有良好的线性关系(R2≥0.998),最低定量限均为0.5 μg/L,稳定性良好,提取回收率在 81.5%~93.8%之间,精密度的RSD值为2.7%~7.9%之间,该法快速可靠,可适用于其他植物中SA、ABA和JA的含量检测。利用该方法测定盐碱胁迫下金银花中的3种内源激素,比较分析它们在盐碱胁迫下的含量变化规律,为内源激素对植物的逆境调控机制提供研究基础。
Abstract:
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参考文献/References:

[1]徐玉平,蒋向辉,王翔. 一测多评法测定金银花中咖啡酰奎尼酸类化学成分的含量[J]. 江苏农业科学,2018,46(1):118-121.
[2]马娜,王金彦,阚家亮,等. 一个响应盐胁迫的梨凝集素受体蛋白激酶PcLRLK066的功能分析[J]. 江苏农业学报,2017,33(2):404-411.
[3]王兴翠,彭佃亮,乔宁,等. 补血草种子萌发对温度,NaCl胁迫的响应[J]. 江苏农业科学,2017,45(20):151-154.
[4]Qi Y Q,Wang J Y,Wang Q,et al. Physiological response of Chinese wolfberry seedling to NaCl stress[J]. Agricultural Science &Technology,2016,17(6):1301-1304.
[5]韩多红,张勇,晋玲. 碱性盐及混合盐碱胁迫对蒙古黄芪种子萌发和幼苗生理特性的影响[J]. 中草药,2013,44(12):1661-1666.
[6]周丽,郎多勇,张文晋,等. NaCl胁迫对银柴胡生长及生理生化特性的影响[J]. 中草药,2014,45(19):2829-2833.
[7]Takahashi H,Kanayama Y,Zheng M S,et al. Antagonistic interactions between the SA and JA signaling pathways in Arabidopsis modulate expression of defense genes and gene-for-gene resistance to cucumber Mosaic virus[J]. Plant and Cell Physiology,2004,45(6):803-809.
[8]苏适,李瑞航,郎丹莹,等. 用改进的SPE-LC-ESI-MS/MS法测定小麦叶片ABA含量[J]. 分子植物育种,2015,13(8):1850-1856.
[9]侯升杰,朱江,丁明玉. 液相色谱-电喷雾串联质谱法测定冬青芽中的脱落酸[J]. 分析试验室,2009,28(3):96-98.
[10]Jayakannan M,Bose J,Babourina O,et al. Salicylic acid in plant salinity stress signalling and tolerance[J]. Plant Growth Regulation,2015,76(1):25-40.
[11]Morad M,Sara S,Mohammad D,et al. Effect of salicylic acid on alleviation of salt stress on growth and some physiological traits of wheat[J]. International Journal of Biosciences,2013,3(2):20-27.
[12]李梦莎,阎秀峰. 植物的环境信号分子茉莉酸及其生物学功能[J]. 生态学报,2014,34(23):6779-6788.
[13]冯孟杰,徐恒,张华,等. 茉莉素调控植物生长发育的研究进展[J]. 植物生理学报,2015,51(4):407-412.
[14]巫建华,贾思振,冯英娜,等. 茉莉酸合成关键酶基因FaOPR3调控草莓果实成熟[J]. 江苏农业学报,2016,32(5):1148-1154.
[15]郭正兵,韩柏明,郭强. 茉莉酸甲酯对高温胁迫、生物蚕食无花果幼苗的影响[J]. 江苏农业科学,2017,45(20):138-143.
[16]Quarrie S A,Whitford P N,Appleford N E,et al. A monoclonal antibody to(S)-abscisic acid:its characterization and use in radioimmunoassay for measuring abscisic acid in crude extracts of cereal and lupin leaves[J]. Planta,1988,173(3):330-339.
[17]Lovelli S,Scopa A,Perniola M,et al. Abscisic acid root and leaf concentration in relation to biomass partitioning in salinized tomato plants[J]. Journal of Plant Physiology,2012,169(3):226-233.
[18]Liu X,Ma L,Lin Y W,et al. Determination of abscisic acid by capillary electrophoresis with laser-induced fluorescence detection[J]. Journal of Chromatography A,2003,1021(1/2):209-213.
[19]Ross A R,Ambrose S J,Cutler A J,et al. Determination of endogenous and supplied deuterated abscisic acid in plant tissues by high-performance liquid chromatography-electro-spray ionization tandem mass spectrometry with multiple reaction monitoring[J]. Analytical Biochemistry,2004,329(2):324-333.
[20]Li Q,Wang R Z,Huang Z G,et al. A novel impedance immunosensor based on O-phenylenediamine modified gold electrode to analyze abscisic acid[J]. Chinese Chemical Letters,2010,21(4):472-475.
[21]Jia K,Feng X M,Liu K,et al. Development of a subcritical fluid extraction and GC-MS validation method for polychlorinated biphenyls (PCBs) in marine samples[J]. Journal of Chromatography B,2013,923(3):37-42.
[22]Gupta V,Kumar M,Brahmbhatt H,et al. Simultaneous determination of different endogenetic plant growth regulators in common green seaweeds using dispersive liquid-liquid microextraction method[J]. Plant Physiology and Biochemistry,2011,49(11):1259-1263.
[23]赵晓菊,唐中华,郭晓瑞,等. 固相萃取富集-高效液相色谱法测定长春花中的3种内源激素[J]. 色谱,2006,24(5):534-534.
[24]赵曼丽,杨迎春,杨世杰,等. 骆驼刺根状茎中3种植物激素的分离与含量测定[J]. 安徽农业科学,2012,40(14):8092-8093,8164.
[25]王水良,王平,王趁义. 固相萃取-高效液相色谱法测定马尾松组织中内源激素[J]. 分析科学学报,2010,26(5):547-550.
[26]Pan X Q,Welti R,Wang X M. Simultaneous quantification of major phytohormones and related compounds in crude plant extracts by liquid chromatography-electrospray tandem mass spectrometry[J]. Phytochemistry,2008,69(8):1773-1781.
[27]刘雪梅,赵鹏,徐继林,等. LC-MS同时测定大型海藻中9个植物激素[J]. 药物分析杂志,2012,32(10):1747-1752.
[28]钟冬莲,丁明,汤富彬,等. 高效液相色谱-串联质谱同时测定毛竹笋中4种内源性植物激素[J]. 分析化学,2013,41(11):1739-1743.
[29]钟冬莲,任传义,李祖光,等. HPLC-MS/MS法同时测定马尾松松针中水杨酸和茉莉酸[J]. 分析试验室,2017,36(2):164-167.
[30]Mueller M,Munne-Bosch S. Rapid and sensitive hormonal profiling of complex plant samples by liquid chromatography coupled to electrospray ionization tandem mass spectrometry[J]. Plant Methods,2011,7(1):37.
[31]郭菊梅,陈红刚,曹瑞,等. 氯化钠浓度对黄芩幼苗生长情况及生理指标的影响[J]. 中国药房,2014,25(47):4497-4499.
[32]US FDA. Guidance for industry:bioanalytical method validation[Z]. US FDA,2001.
[33]Ryu H,Cho Y G. Plant hormones in salt stress tolerance[J]. Journal of Plant Biology,2015,58(3):147-155.
[34]Wang X Q,Ullah H,Jones A M,et al. G protein regulation of ion channels and abscisic acid signaling in Arabidopsis guard cells[J]. Science,2001,292(5524):2070-2072.
[35]Li W Q,Yamaguchi S,Khan M A,et al. Roles of gibberellins and abscisic acid in regulating germination of suaeda salsa dimorphic seeds under salt stress[J]. Frontiers in Plant Science,2016,6(1):1235.
[36]Kang D,Seo Y,Lee J D,et al. Jasmonic acid differentially affects growth,ion uptake and abscisic acid concentration in salt-tolerant and salt-sensitive rice cultivars[J]. Journal of Agronomy and Crop Science,2005,191(4):273-282.
[37]Pedranzani H,Racagni G,Alemano S,et al. Salt tolerant tomato plants show increased levels of jasmonic acid[J]. Plant Growth Regulation,2003,41(2):149-158.
[38]Chanjirakul K,Wang S Y,Wang C Y,et al. Effect of natural volatile compounds on antioxidant capacity and antioxidant enzymes in raspberries[J]. Postharvest Biology and Technology,2006,40(2):106-115.

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备注/Memo

备注/Memo:
收稿日期:2018-02-07
基金项目:2016年江苏省连云港市“521工程”科研项目资助计划;江苏省中医药局科技项目(编号:YB2017068)。
作者简介:李天雪(1988—),男,山东临沂人,硕士,讲师,主要从事中药检测工作。E-mail:litx1988@126.com。
更新日期/Last Update: 2019-06-05