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1.
本文以油茶枝条、嫩叶、花芽和种仁为材料,建立高效液相色谱-串联质谱法同时对油茶不同组织中内源激素生长素(IAA)、赤霉素A4(GA4)、玉米素(tZ)、脱落酸(ABA)、茉莉酸(JA)5类内源激素的测定方法。油茶不同组织经液氮研磨后用提取液(含75%甲醇、5%甲酸水溶液)提取,通过固相萃取柱(MCX)纯化,用甲醇洗脱得到IAA、ABA、JA、GA4;氨化甲醇洗脱得到tZ;合并洗脱液后,利用液相色谱-串联质谱在多反应检测(MRM)模式下进行定量分析。IAA、ABA、JA、GA4的最佳洗脱体积为2mL,tZ的最佳洗脱体积为3mL。测定5种激素线性相关系数R20.995;方法检出限为0.4~1.2ng/g,加标回收率范围在88%~101%之间,相对标准偏差为7.3%。应用该方法对油茶不同组织内源激素含量的测定结果表明,油茶的花芽和嫩叶的生长素水平较枝条和果实高,种子中茉莉酸含量最高为978.3ng/g,GA4/ABA比例为嫩叶种仁花芽枝条,与油茶各部位生长速度一致。建立的方法适于对弱酸性和碱性激素进行快速纯化分析。  相似文献   

2.
植物内源激素的反相高效液相色谱法测定   总被引:37,自引:0,他引:37  
报道了以6-N-苄基腺嘌呤(BA)为内标的反相高效液相色谱法测定玉米素(ZT)、赤霉素(GA3)、激动素(KT)、3-吲哚乙酸(IAA)和脱落酸(ABA)等5种植物内源激素的条件;采用μBondapakC18柱、乙腈-甲醇-0.6%(φ)乙酸流动相、检测波长254nm,建立了一种从植物中提取5种激素的样品处理方法,并测定了马铃薯块茎中的5种植物内源激素的含量。  相似文献   

3.
高效液相色谱法同时测定鸭梨种子中3种内源激素   总被引:5,自引:0,他引:5  
建立了高效液相色谱同时测定鸭梨种子中3种内源激素赤霉素(GA3)、生长素(IAA)和脱落酸(ABA)含量的方法.采用C18反相色谱柱,柱温35 ℃,以甲醇-水(含1%乙酸)(4∶ 6, V/V)为流动相,流速为1 mL/min, 检测器波长开始用254 nm, 2.5 min时将波长切换至210 nm,至3.8 min,GA3出峰结束后,再次将波长切换回254 nm测定IAA和ABA.GA3、IAA和ABA的平均回收率分别为92.8%、91.6%和94.7%.为快速、准确分离和测定鸭梨种子内源激素提供了一种可靠方法.  相似文献   

4.
气相色谱法分离和测定3种植物内源激素   总被引:12,自引:0,他引:12  
杜黎明  许庆琴 《色谱》2000,18(1):67-69
 应用大口径毛细管气相色谱法,以正二十二烷为内标物,对植物组织中的吲哚乙酸(IAA)、脱落酸(ABA)和赤霉素(GA)等3种内源激素进行了测定。结果表明:IAA,ABA和GA的最低检测限依次为0.16,0.08和0.48mgL,相对标准偏差均小于3.0%,平均回收率为88.4%~92.2%。方法简便、灵敏、准确、重现性好。  相似文献   

5.
固相萃取-高效液相色谱法测定马尾松组织中内源激素   总被引:1,自引:0,他引:1  
建立了固相萃取-高效液相色谱法(SPE-HPLC)测定马尾松组织中内源激素赤霉素(GA3)、吲哚乙酸(IAA)、玉米素核苷(ZR)和脱落酸(ABA)的分析方法。采用WatersC18反相柱(250×4.6mmi.d.,5μm),以体积比为45∶54∶1的甲醇-水-乙酸溶液为流动相,流速1.0mL/min;进样量20μL;检测波长254nm;外标法定量测定。选用Sep-PakC18固相萃取小柱富集内源激素,再经流动相洗脱预处理。4种内源激素在1.0~3.0μg/g添加范围内的回收率为88.4%~108.3%,GA3、IAA、ZR和ABA检出限依次为0.05μg/g、0.02μg/g、0.03μg/g和0.01μg/g。  相似文献   

6.
亚种间杂交稻内源激素的高效液相测定法   总被引:56,自引:0,他引:56  
王若仲  萧浪涛  蔺万煌  曹庸  卜晓英 《色谱》2002,20(2):148-150
 建立了一种快速、提取率高的从植物中提取内源激素的样品处理方法 ,并研究了高效液相法测定亚种间杂交稻的 4种内源激素 :赤霉素 (GA3 )、3 吲哚乙酸 (IAA)、玉米素 (Z)和脱落酸 (ABA)的条件。采用WatersC18反相柱 (4 6mmi.d .× 2 5 0mm ,5 μm) ,SPD 6AV紫外检测器。以甲醇 水 乙酸 (体积比为 45∶5 4 2∶0 8)溶液为流动相 ,流速 1 0mL/min ;进样量 2 0 μL ;检测波长 2 5 4nm ;选用外标法进行定量测定。其回收率高 ,检出限分别为GA3 0 5mg/L ,IAA 0 1mg/L ,Z 0 3mg/L ,ABA 0 0 3mg/L。该法快速、灵敏、准确。  相似文献   

7.
植物内源激素直接参与植物生命的所有活动。激素在植物中的含量极低,且性质不稳定,加上长春花(Catharan.thusroseus(L_)G.Don)中文多灵(vindoline)、长春质碱(catharanthine)等众多生物碱类的干扰,使得长春花植物内源激素的测定十分困难。目前对于长春花中内源激素的分离和检测尚未见报道。本文以固相萃取和高效液相色谱法测定了长春花中的3种内源激素含量,取得了理想的效果。  相似文献   

8.
采用双三元液相色谱(Dual gradient liquid chromatography,DGLC)建立了在线固相萃取技术与电喷雾串联质谱联用方法(Online SPE DGLC-ESI MS/MS),并成功应用于实际样品检测。本方法同时检测大豆不同部位中的4种酸碱性植物激素(赤霉素(GA3)、吲哚乙酸(IAA)、玉米素(ZT)和脱落酸(ABA))。通过考察固相萃取富集柱、分析色谱柱、流动相对植物激素的保留和选择性的影响,获得较高的灵敏度、回收率、稳定性及精密度。大豆样品经液氮低温研磨,以80%甲醇溶液提取,再经离心稀释过滤后,进样分析。进样后样品经在线固相萃取Hypersep Retain AX柱洗脱保留,目标分析物依次转移至分析柱Acclaim PA2色谱柱,并以0.1%甲酸和甲醇溶液作为流动相进行梯度洗脱,采用选择反应监测离子模式(SRM)同时采集正负离子通道进行定性分析,基质标准曲线外标法进行定量分析,GA3,IAA,ZT在0.1~50μg/L范围内线性良好,检出限为0.0002μg/g;ABA在0.5~50μg/L的范围内线性良好,其检出限为0.0010μg/g。以0.8,4.0和40μg/L分别为低、中、高浓度考察4种植物激素的回收率为76.1%~93.5%,RSD为0.8%~6.0%。结果表明,籽粒中含有的ABA浓度明显高于其它部位。本研究为快速准确地分离和测定大豆不同部位内源激素提供了有效方法。  相似文献   

9.
感染MLO泡桐组培苗代谢变化与致病机理的关系   总被引:10,自引:0,他引:10  
感染泡桐丛枝病类菌原体(PWB-MLO)的泡桐组培苗表现出典型的丛枝症状。电子显微镜和DAPI荧光显微镜检查结果显示病苗的症状严重度与其韧皮部筛管内MLO密度成正相关。HPLC分析病与健株内源激素和酚类物质含量,发现病株游离IAA含量明显低于健康对照,并且IAA含量变化与邻苯二酚含量变化呈显著正相关性(r=0.90,n=11)。细胞分裂素(Z+ZR,iPA)、GA_3和ABA含量变化与MLO侵染关系不密切。病健株抽提液过氧化物酶、IAA氧化酶、多酚氧化酶和苯丙氨酸裂解酶(PAL)活性的差异,以及外源NAA和邻苯二酚处理对病苗与健苗生长的不同影响进一步反映了MLO、邻苯二酚和IAA相互联系和作用的本质。  相似文献   

10.
梯度洗脱测定植物源调节剂中内源激素方法探讨   总被引:8,自引:0,他引:8  
建立了梯度洗脱高效液相色谱法同时测定内源激素赤霉素(GA3)、吲哚乙酸(3-IAA)、脱落酸(ABA)、细胞分裂素(6-BA)和α-萘乙酸(α-NAA)等5种植物内源激素的方法,采用Hypersil ODS C18柱和紫外检测器,以甲醇、乙腈和0.6%的乙酸为流动相梯度洗脱,分别在各组分的保留时间段设置其最佳检测波长,在12 min内可将上述5种内源激素的各组分分离完全,峰形良好,该方法的回收率可达到90%~96%,线性相关系数(r)大于0.998,检出限在0.02~0.3 μg/g之间.还探讨了各组分的最佳检测条件和梯度洗脱存在的问题及解决方法.  相似文献   

11.
梯度洗脱高效液相色谱法测定红花玉兰中4种植物激素   总被引:1,自引:0,他引:1  
建立了梯度洗脱高效液相色谱法测定红花玉兰中赤霉素(GA3)、生长素(IAA)、脱落酸(ABA)和玉米素(ZT)等4种植物激素的方法。采用Agilent ZORBAX SB-C18柱和紫外检测器,以甲醇和0.1 mol/L乙酸作为流动相进行梯度洗脱,流速1 mL/min,进样量10μL。GA3,IAA和ABA的检测波长为254 nm,柱温35℃;ZT的检测波长为270 nm,柱温40℃。采用外标法进行定量测定,4种植物激素的相关系数均大于0.9990。4种激素的回收率为98.1%~125.2%,相对标准偏差为0.31%~0.92%,日内和日间精密度RSD均<10%。方法可适用于红花玉兰多种组织的植物激素测定,为红花玉兰生长发育特性的研究奠定了基础。  相似文献   

12.
RESEARCH NOTE     
Abstract— The endogenous levels of indole-3-acetic acid (IAA), abscisic acid (ABA) and gibberellins (GA) were examined by gas chromatography-mass spectrometry in Prunus cerasus plantlets grown under different light conditions in relation to previous work on the photocontrol of stem elongation. The endogenous levels of free and conjugated IAA in the apical sections of red-grown shoots were about two-fold higher than those in the blue-treated plants, and these corresponded with maximum shoot elongation. By contrast, greater concentrations of ABA and GA were found in blue-grown plants compared to red with intermediate shoot growth. When blue was combined with red or far red, lower levels of IAA, ABA and GA correlated with less growth. These results suggest that the regulation of stem elongation by phytochrome and a blue-absorbing pigment may, at least in part, occur through a modulation of hormone levels.  相似文献   

13.
In recent plant hormone research, there is an increased demand for a highly sensitive and comprehensive analytical approach to elucidate the hormonal signaling networks, functions, and dynamics. We have demonstrated the high sensitivity of a comprehensive and quantitative analytical method developed with nanoflow liquid chromatography-electrospray ionization-ion trap mass spectrometry (LC-ESI-IT-MS/MS) under multiple-reaction monitoring (MRM) in plant hormone profiling. Unlabeled and deuterium-labeled isotopomers of four classes of plant hormones and their derivatives, auxins, cytokinins (CK), abscisic acid (ABA), and gibberellins (GA), were analyzed by this method. The optimized nanoflow-LC-ESI-IT-MS/MS method showed ca. 5-10-fold greater sensitivity than capillary-LC-ESI-IT-MS/MS, and the detection limits (S/N = 3) of several plant hormones were in the sub-fmol range. The results showed excellent linearity (R2 values of 0.9937-1.0000) and reproducibility of elution times (relative standard deviations, RSDs, <1.1%) and peak areas (RSDs, <10.7%) for all target compounds. Further, sample purification using Oasis HLB and Oasis MCX cartridges significantly decreased the ion-suppressing effects of biological matrix as compared to the purification using only Oasis HLB cartridge. The optimized nanoflow-LC-ESI-IT-MS/MS method was successfully used to analyze endogenous plant hormones in Arabidopsis and tobacco samples. The samples used in this analysis were extracted from only 17 tobacco dry seeds (1 mg DW), indicating that the efficiency of analysis of endogenous plant hormones strongly depends on the detection sensitivity of the method. Our analytical approach will be useful for in-depth studies on complex plant hormonal metabolism.  相似文献   

14.
建立了同时检测水稻中6种内源性植物激素脱落酸( Abscisic acid,ABA)、吲哚-3-乙酸( Indole-3-acetic acid, IAA)、水杨酸( Salicylic acid,SA)、茉莉酸( Jasmonic acid,JA)、吲哚-3-丙酸( Indole-3-propionic acid, IPA)和吲哚-3-丁酸( Indole-3-butyric acid,IBA)的全自动在线固相萃取-液相色谱-串联质谱方法。植物样品经过甲醇提取,采用C18固相萃取柱富集净化,流动相将待测物洗脱至C18分析色谱柱进行分离,最终使用串联四极杆质谱进行检测。方法的线性范围为8~320μg/L,相关系数为R2≥0.99;方法的检出限(S/N=3)范围为0.1~0.8μg/kg;实际样品中方法回收率范围为71.2%~126%,RSD<13%。应用本方法快速、准确地检测了水稻幼穗中多种内源性植物激素的含量,并与目前植物学领域内常用的检测方法进行了比较。同时,本方法对水稻受伤叶片的内源植物激素含量变化进行了定量分析,其含量随受伤时间的变化趋势与其生物背景的实验结果相吻合。  相似文献   

15.
The endogenous levels of indole-3-acetic acid (IAA), gibberellins (GAs), abscisic acid (ABA) and cytokinins (CKs) and their changes were investigated in shoot tips of ten longan (Dimocarpus longan Lour.) trees for off-season flowering until 60 days after potassium chlorate treatment in comparison with those of ten control (untreated) longan trees. These analytes were extracted and interfering matrices removed with a single mixed-mode solid phase extraction under optimum conditions. The recoveries at three levels of concentration were in the range of 72-112%. The endogenous plant hormones were separated and quantified by liquid chromatography-electrospray ionization-mass spectrometry (LC-ESI-MS). Detection limits based on the signal-to-noise ratio ranged from 10 ng mL−1 for gibberellin A4 (GA4) to 200 ng mL−1 for IAA. Within the first week after potassium chlorate treatment, dry weight (DW) amounts in the treated longan shoot tips of four gibberellins, namely: gibberellin A1(GA1), gibberellic acid (GA3), gibberellin A19 (GA19) and gibberellin A20 (GA20), were found to increase to approximately 25, 50, 20 and 60 ng g−1 respectively, all of which were significantly higher than those of the controls. In contrast, gibberellin A8 (GA8) obtained from the treated longan was found to decrease to approximately 20 ng g−1 DW while that of the control increased to around 80 ng g−1 DW. Certain CKs which play a role in leaf bud induction, particularly isopentenyl adenine (iP), isopentenyl adenosine (iPR) and dihydrozeatin riboside (DHZR), were found to be present in amounts of approximately 20, 50 and 60 ng g−1 DW in the shoot tips of the control longan. The analytical results obtained from the two-month off-season longan flowering period indicate that high GA1, GA3, GA19 and GA20 levels in the longan shoot tips contribute to flower bud induction while high levels of CKs, IAA and ABA in the control longan contribute more to the vegetative development.  相似文献   

16.
We synthesized nine novel triazole-compoimds and investigated their plant growth regulatory activity.Compoimd CGR3,with metlioxvacyl on 3-position of triazole ring,showed better activity,promoting root length not only for mungbean,but also tor wheat.Additionally,CGR3 changed the level of endogenous hormones in mungbean roots,the most obvious effect was the increase of IAA,being 4.9 times greater than that of the control at the 96th hour after treatment.Among the synthesized new 1,2,4-triazol derivatives,CGR3 could be applied as a new agrochemical,functioning as a root growth stimulant,which promotes primary root length,influences the levels of endogenous honnones(IAA,ABA and GA3)to play an important role in controlling the primary root development.  相似文献   

17.
Ma Z  Ge L  Lee AS  Yong JW  Tan SN  Ong ES 《Analytica chimica acta》2008,610(2):274-281
Coconut (Cocos nucifera L.) water, which contains many uncharacterized phytohormones is extensively used as a growth promoting supplement in plant tissue culture. In this paper, a high-performance liquid chromatography (HPLC) method was developed for the simultaneous determination of various classes phytohormones, including indole-3-acetic acid (IAA), indole-3-butyric acid (IBA), abscisic acid (ABA), gibberellic acid (GA), zeatin (Z), N6-benzyladenine (BA), α-naphthaleneacetic acid (NAA) and 2,4-dichlorophenoxyacetic acid (2,4-D) in young coconut water (CW). The analysis was carried out using a reverse-phase HPLC gradient elution, with an aqueous mobile phase (containing 0.1% formic acid, pH adjusted to 3.2 with triethylamine (TEA)) modified by methanol, and solute detection made at 265 nm wavelength. The method was validated for specificity, quantification, accuracy and precision. After preconcentration of putative endogenous phytohormones in CW using C18 solid-phase extraction (SPE) cartridges, the HPLC method was able to screen for putative endogenous phytohormones present in CW. Finally, the identities of the putative phytohormones present in CW were further confirmed using independent liquid chromatography–tandem mass spectrometry (LC–MS/MS) equipped with an electrospray ionization (ESI) interface.  相似文献   

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