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1.
研究碳源、生长调节物质、氮源、磷酸盐以及有机添加物对黄芩愈伤组织中黄芩苷含量和产量影响的结果表明,在(25±1)℃暗培养条件下,黄芩苷积累的最佳培养基为MS基本培养基,其中氮源浓度为60mmol·L-1(NH4+:NO3-为1:1),KH2PO4浓度为1.5mmol·L-1,附加80g·L-1蔗糖、0.3mg·L-1IAA、2mg·L-16-BA和200mg·L-1蛋白胨。在上述培养基中,黄芩愈伤组织培养40d后的黄芩苷含量达到167.4mg·g-1,产量达到4.8g·L-1,分别是对照的5.54倍和18.2倍。  相似文献   

2.
滇黄芩毛状根的诱导及其黄芩苷含量测定   总被引:1,自引:0,他引:1  
本文利用发根农杆菌A grobacterizum rhizogenes1.2556感染滇黄芩再生苗的茎段和叶片,建立了毛状根培养及其植株再生体系。毛状根可直接从受伤的茎、叶外植体表面产生,在无外源激素的MS固体和液体培养基上自主生长,表现出典型的发根特征。毛状根茎段的诱导率较叶片高,最高可达到14.44%;经rolB基因PCR分析和甘露碱纸电泳检测,证明Ri质粒T-DNA已整合到滇黄芩基因组中并表达;毛状根在附加6-BA2mg/L和NAA0.2mg/L的MS固体培养基上直接诱导不定芽,并在MS培养基上生根,形成再生植株。获得的毛状根系经MS液体培养基培养30d后通过HPLC都能检测到黄芩苷,其中1个转化系黄芩苷含量为2.59%,是药材黄芩的0.20倍,而从3年单位时间黄芩苷生成量计算,毛状根是药材黄芩的7.18倍。本研究建立的毛状根培养体系,将对滇黄芩转基因技术的完善和利用毛状根生产黄芩苷的生物转化提供了实验基础。  相似文献   

3.
光质对悬浮培养黄岑细胞生长及黄岑苷积累的影响   总被引:3,自引:0,他引:3  
研究了不同光质、光强和光期对悬浮培养黄芩(Scutellaria baicalensis)细胞的生长、细胞中苯丙氨酸氨基裂解酶(PAL)活性及黄芩苷含量的影响。白光、紫外光、红光和蓝光对悬浮培养黄芩细胞PAL活性和黄芩苷含量有不同的影响。白光、紫外光和蓝光对PAL活性和黄芩苷的积累具有诱导促进作用,其中紫外光的促进作用最强,白光和蓝光的促进作用较弱,而红光照射对PAL活性和黄芩苷的积累有一定的抑制作用。在0-60μmolm-2s-1紫外光照射强度范围内,PAL活性和黄芩苷含量随着紫外光照射强度的增加而显著提高。实验结果同时表明,红光照射显著促进黄芩细胞的生长,紫外光抑制黄芩细胞的生长,而蓝光和白光对悬浮培养黄芩细胞生长的促进作用不明显。与黑暗(对照)相比,每天8h光照强度为60μmolm-2s-1的紫外光、16h光照强度为50μmolm-2s-1的红光交替处理,在培养12d后,细胞的鲜重和黄芩苷含量为对照的1.16和3.2倍,黄芩苷的产量达到439mgL-1,是对照的3.8倍。  相似文献   

4.
在暗培养条件下,黄芩愈伤组织生长和次级代谢物合成的最佳培养条件:在基本培养基MS中氮源浓度为60mmol/L(NH4 ∶NO3-为1∶1),KH2PO41.5mmol/L,附加80g/L蔗糖,0.3mg/LIAA、2mg/L6-BA和200mg/L蛋白胨,(25±1)℃。培养40d后收获愈伤组织生物量达28.7g/L,总黄酮的含量为354.6mg/g,黄芩苷的含量为167.4mg/g。并发现蔗糖作为一种最佳碳源,在黄芩次级代谢物合成过程中起着至关重要的作用。  相似文献   

5.
从印度娃儿藤节间外植体获取愈伤组织,分析了糖、赤霉素(GA3)及脱落酸(ABA)对愈伤组织形成体细胞的影响。实验证明,含4μmol/L2,4-二氯苯氧乙酸(2,4-D)的MS培养基是获得具有成胚功能的愈伤组织的最佳培养基。在含有6μmol/L激动素(Kn)的MS培养基上,高达69%的愈伤组织分化为体细胞胚,平均单位外植体(每克愈伤组织)产胚25个。在6μmol/LKn存在的条件下,分析了蔗糖、葡糖糖对胚产生的影响,不同的糖及不同糖浓度对体细胞胚的发生影响很大。6μmol/L Kn与200mmol/L蔗糖处理胚胎发生率最大(71%),单位外植体生成49个胚。然而葡萄糖与Kn、或者葡糖糖、蔗糖与Kn三者加在一起则降低成胚率及产胚数。一定浓度的GA3和ABA能促进体细胞胚的产生。在含200mmol/L蔗糖的培养基中加10μmol/LGA3胚的生成率为98%,单位外植体产胚51个。在含200mmol/L蔗糖的培养基中加2μmol/L ABA能显著增加体细胞胚的量,该培养基上每外植体平均生成44个胚,产率为95%。本研究显示,含200mmol/L蔗糖的培养基中分别加入6μmol/L Kn、10μmol/L GA3或者2μmol/L ABA能显著提高印度娃儿藤体细胞胚发生率,而单独的葡萄糖或葡糖糖和蔗糖则有抑制作用。得到的胚均能正常发育并分化为植株。  相似文献   

6.
为探讨黄芩苷对脂多糖(LPS)诱导的大鼠心肌细胞凋亡、炎症及磷脂酰肌醇3-激酶(PI3K)/蛋白激酶B(AKT)信号通路的调控作用,该研究体外培养大鼠心肌H9C2细胞,将其分为对照组(不做干预)、LPS组(10μg/m L LPS)、实验组(10μg/m L LPS+10、20、40、80μmol/L黄芩苷)、黄芩苷+Y组(10μg/m L LPS+10μmol/L黄芩苷+5μmol/L PI3K/AKT通路抑制剂LY294002)、抑制剂组(10μg/m L LPS+5μmol/L LY294002)和黄芩苷+A组[10μg/m L LPS+10μmol/L黄芩苷+100 ng/mL PI3K/AKT通路激活剂胰岛素样生长因子-I(IGF-I)]。用细胞计数试剂盒-8测定细胞活力;酶联免疫吸附试验检测炎症因子白细胞介素-1β(IL-1β)、IL-6和IL-10的含量; Hoechst33258染色法测定细胞凋亡率; 5-乙炔基-2’脱氧尿嘧啶核苷测定细胞增殖率;蛋白免疫印迹法测定PI3K/AKT相关蛋白、细胞周期蛋白D1(Cyclin D1)和半胱氨酸天冬氨酸蛋白酶-3(Caspas...  相似文献   

7.
滇黄芩器官发生与不同继代次数遗传稳定性的RAPD分析   总被引:2,自引:0,他引:2  
本研究以滇黄芩不带腋芽茎段为外植体,采用不同配比激素的MS培养基建立了滇黄芩器官发生,植株再生体系.结果表明,茎段在MS+6-BA 2 mg/L+NAA 0.5 mg/L培养基上培养时,愈伤组织诱导率达到100%:以相同培养基进行分化,并在MS+6-BA 2 mg/L+NAA 0.2 mg/L培养基上扩繁丛生芽.在1/2MS+IBA 0.2 mg/L培养基诱导生根,扦插继代.利用RAPD分析不同继代次数再生植株,所用的39条随机引物中只有1条引物带型发生变化.说明经组织培养获得的再生植株遗传稳定,可多次继代培养,为滇黄芩进一步遗传操作和扩大药材资源奠定基础.  相似文献   

8.
应用植物组织化学定位方法,研究了组织培养滇黄芩再生植株中黄酮类化合物的积累分布状态;并且通过HPLC对滇黄芩再生植株中黄芩苷的含量进行测定。结果表明,滇黄芩再生植株黄酮类化合物主要存在于营养器官的表皮和皮层,以及茎、叶腺毛中。同时,测定再生植株中黄芩苷的含量表明,地下部分(根)含量为0.12%;地上部分(茎、叶)含量为0.43%。  相似文献   

9.
本研究旨在探讨柔毛淫羊藿愈伤组织的最佳诱导条件和愈伤组织中总黄酮、淫羊藿苷含量。采用正交试验设计方法研究不同外植体、培养基、培养温度和光照条件对柔毛淫羊藿愈伤组织诱导的影响,分光光度法测定愈伤组织中总黄酮含量,高效液相色谱法测定其中淫羊藿苷含量。结果显示,以幼叶为外植体,培养基为N6+2, 4-D 3 mg/L+6-BA 1 mg/L+NAA 0.5 mg/L,在黑暗或弱光(1 000 Lx)和(21±1)℃条件下愈伤组织诱导效果最好;愈伤组织中总黄酮和淫羊藿苷含量分别达5.24%和0.564%,与叶中含量无显著差异。初步建立了柔毛淫羊藿愈伤组织诱导的适宜培养条件,为高产淫羊藿总黄酮和淫羊藿苷的组培苗生产和细胞悬浮培养体系的建立提供了依据。  相似文献   

10.
以杂景天的子叶、胚轴为外植体,接种在附加不同激素组合的MS培养基上诱导愈伤组织产生,愈伤组织经继代培养后,用高效液相色谱检测红景天苷含量.结果显示,杂景天的子叶是诱导愈伤组织的理想外植体,子叶在MS 1 mg/L BA 0.5 mg/L 2,4-D和MS 1 mg/L BA 0.5 mg/L NAA培养基上的愈伤组织诱导率较高(81.8%、80%).愈伤组织有红、绿2种类型.HPLC检测显示红色愈伤组织不含红景天苷,绿色愈伤组织红景天苷含量为0.288 6%.表明利用组织培养生产红景天苷是可行的.  相似文献   

11.
In the present study, we investigated the role of gibberellic acid (GA3) and indole acetic acid (IAA) in the gravity response of stems and tension wood formation using two-year-old stems of Fraxinus mandshurica Rupr. var.japonica Maxim seedlings. Forty-five seedlings were used and divided into nine groups that included five seedlings in each group. Seedlings were treated with applications of GA3 alone at concentrations of 2.89 × 10-8and 2.89 × 10-7 μmol/L, IAA alone at concentrations of 5.71×10-8 and 5.71 ×10-7 μmol/L, or their combination to the apical bud of the stem using a micropipette. Seedlings were positioned horizontally after the first treatment.The same treatments were repeated six times per week. At the end of the experiment, all seedlings were harvested. Then, stem segments were cut under a light microscope. Application of exogenous GA3 at the higher concentration stimulated the upward bending of stems, whereas exogenous IAA had no effect. A synergistic effect of GA3 and IAA on upward stem bending was observed following application of the two combinations of GA3 and IAA. Moreover, application of exogenous GA3 at the higher dose stimulated wood formation on both the upper and lower sides of the stems, whereas the mixture of GA3 and IAA had a synergistic effect on wood formation in horizontal stems. Application of exogenous IAA alone at the lower concentration (5.71×10-8 μ mol/L) or application of a mixture of the higher concentrations of GA3 (2.89 × 10-7 μmol/L) and IAA (5.71×10-7 μmol/L) inhibited the development of gelatinous fibers (the G-layer) of tension wood on the upper side of the horizontal stems. The differentiation of gelatinous fibers of tension wood was not inhibited by GA3when it was applied alone, whereas the development of the gelatinous fibers of tension wood was strongly affected by the application of IAA. The findings of the present study suggest that the development of the G-layer is not related to the dose of GA3, but needs a relatively lower concentration of IAA.  相似文献   

12.
Growth Hormones and Propagation of Cymbidium in vitro   总被引:2,自引:0,他引:2  
Protocorms of Cymbidium (Orchidaceae) were grown on solid or liquid medium with macro-nutrients according to Wimber (van Raalte 1967) and iron, micro-nutrients and vitamins according to Nitsch (1968) the medium also contained 2% sucrose. The effects of 1) the auxins; indol-3yl-acetic acid (IAA), α-naphthaleneacetic acid (NAA) and 2,4-dichlorophenoxyacetic acid (2,4-D); 2) the cytokinins; 6-furfurylaminopurine (kinetin) and benzyladenine (BA) and 3) the gibberellin; gibberellic acid (GA) were examined alone or in combinations. IAA had no effect alone. NAA resulted in optimal fresh weight at 10 μM and the protocorms were vigorous, but lighter green than usual. 2,4-D caused a high weight increase at 1 μM, but the protocorms were abnormal. Higher concentrations of NAA and 2,4-D inhibited chlorophyll synthesis. On solid medium kinetin (100 μM) induced a growth of many small shoots, but had no effect on the fresh weight. In liquid medium, kinetin promoted a callus formation and fresh weight increase. BA had effects similar to kinetin, but at lower concentrations. GA alone promoted shoot and leaf growth. Combinations of kinetin and NAA resulted in a maximal fresh weight increase at kinetin concentrations one tenth of the NAA concentrations. The optimal growth and the best development occurred at 10 μM NAA and 1 μM kinetin. NAA and kinetin together could limit the shoot and leaf growth induced by GA.  相似文献   

13.
Experiments employing sequences of three media demonstrated the effect of growth substances on the induction of apogamy. The most effective sequence was 4% sucrose 1–14 days, 4% sucrose plus growth substance 15–28 days, and 0.1% sucrose 29–56 days. In this sequence concentrations of NAA, IAA, and GA promoted apogamous shoot formation. A higher NAA concentration than optimal for shoot formation stimulated apogamous root formation in all medium sequences. Kinetin was without effect or inhibitory to apogamy. Combination of kinetin/GA or GA/NAA concentrations did not increase the apogamous response. One combination of the kinetin/NAA concentrations had a synergistic effect on the apogamous shoot formation. Additions of GA to the synergistic kinetin/NAA combination had an antagonistic effect on the apogamous response.  相似文献   

14.
A healthy root system is vital for tissue culture plantlet survival and rapid adaptation from the in vitro microenvironment to glasshouse conditions. Optimization of the root induction medium is an effective way to promote root induction and elongation. Levels of three auxins (α-naphthaleneacetic acid [NAA], 3-indoleacetic acid [IAA], and 3-indolebutyric acid [IBA]) and copper sulfate (CuSO4) have been investigated in a series of experiments with a sorghum inbred line, Tx430. Significant improvement in root proliferation and shoot growth were observed on Murashige and Skoog (MS) medium supplemented with 1 μmol/L CuSO4, 1 mg/L NAA, 1 mg/L IAA, and 1 mg/L IBA. On average, one explant (the original in vitro-derived shoot) of Tx430 regenerated 56.7 roots, which was 20-fold higher on the optimal medium than on MS control medium. Another tested genotype SA281 showed similar response patterns as Tx430 across media. In addition, 100% of Tx430 and SA281 plantlets originating from the optimized root induction medium all survived after being transferred to potting soil in the glasshouse. The results demonstrate that a combination of auxins (NAA, IAA, and IBA) and CuSO4 together at optimal concentrations provide additive effects on promoting root proliferation and explant growth of in vitro sorghum in root induction medium, and subsequently resulted in 100% survival rate of plantlets ex tissue culture. Compared with two published and frequently used root induction media, the optimized medium significantly enhanced root induction and plantlet growth.  相似文献   

15.
Heinz Jansen 《Planta》1967,74(4):371-378
Summary Root formation of tomato cuttings was always inhibited by GA, never promoted. The number of roots was reduced and the roots appeared later, so that at the end of the experiment (13 days later) a reduced dry weight resulted. The effect depended on the concentration of GA, the lowest effective concentration being 10-3 mg/l. Root formation decreased up to 1000 mg/l GA. An effect on the shoot was noted at concentrations above 10 mg/l. Counts of root primordias after 3–5 days showed the same diminution of root formation. The growth of existing primordias seemed not to be influenced by GA.Short-time treatments with GA had a smaller effect, but a 3-day absorption-period resulted in the same decrease as a treatment during the whole experiment. When GA was given after the experiment had started, the first 3 days of treatment were again the most effective. This result shows that the induction of root primordias is inhibited or at least retarded.CCC had no effect on root formation nor was it able to alter the inhibition by GA. IAA alone did not promote the rooting process. In combination with GA (concentration range for both 10-3–1 mg/l) IAA never reduced the inhibition by GA. On the contrary, 1 mg/l IAA+GA was somewhat more inhibitive than GA alone.  相似文献   

16.
An efficient protocol has been developed for in vitro plant regeneration via multiple shoot induction in lucerne (Medicago sativa L). Shoot tips from in vitro grown 5–6 days old seedlings of 3 cultivars, LLC-3, Chetak and RL-88 were used as explants for multiple shoot induction on MS medium supplemented with cytokinins. Maximum of 14 shoots per apical meristem were observed in case of cv Chetak on MS medium supplemented with BAP (12.6 μM) and KN (9.3 μM). Shoot elongation on MS medium supplemented with GA (5.8 μM), while root induction was achieved on MS medium supplemented with IAA (11.4 μM) and activated charcoal (2.0 g l?1). Tissue raised plants showed 75% survival after transfer to soil under field conditions.  相似文献   

17.
In the present study, several kinds of phytohormones were used for the control of sex differentiation of the potentially female floral buds of Lagenaria siceraria var. hispida in vitro. It was shown that both GA3 and STS (silver thiosulphate) could effectively change the direction of sex differentiation of the potentially female floral buds in vitro. In the MS medium, supplemented with IAA, BA and ACC(1-aminocyclopropane-l-carboxylic acid) at l nmol/L, male flowers would be induced from the potentially female floral buds by the addition of GA3 (1–500μmol/L). Herein the male flowers were induced more effectively by GA3 within 5–-20 μmol/L but it was not as effective as STS. In the MS medium supplemented with IAA, BA and ACC at 1 nmol/L and with GA3 at 20 nmol/L more male flowers were differentiated from the potentially female floral buds with the addition of STS within 100–500 μmol/L. On the contrary, when the MS medium were supplemented with IAA and ACC at 1 nmol/L and with BA increased to 100 nmol/L more female flowers were differentiated from the potentially female floral buds, even with addition of 10–50 nmol/L of GA3.  相似文献   

18.
A rapid and high frequency plant propagation system has been established in Cymbopogon martinii var motia using rhizome culture. Different concentrations of auxins, such as 5.36 μM Napthalene acetic acid (NAA) and 5.71μM Indole 3acetic acid (IAA) satisfactorily induced shoot buds when applied individually or in combination with 4.40μM N6-Benzyladenine (BA) on MS medium. Multiple shoot proliferation was noted when induced microshoots were cultured on MS medium supplemented with BA either alone or with NAA. Shoot bud induction and multiple shoot formation were enhanced significantly with the application of growth additives like coconut water (CW) and biotin. Out of the two auxins (IAA and IBA) tested, rooting percentage and number of roots/shoot was significantly higher on 1/2 MS medium supplemented with 4.90 μM Indole 3- butyric acid (IBA). Twelve reproducible ISSR primers efficiently screened 16 randomly chosen regenerants of C. martinii with similar monomorphic banding profiles exhibiting genetic stability of the regenerants.  相似文献   

19.
Summary All parts of leafy spurge seedlings can be regenerated when isolated and placed onto B5 medium. One-centimeter isolated hypocotyl segments were tested successfully for their usefulness as a bioassay system by comparing the response of auxins, herbicides, and cytokinins. Indole-3-acetic acid (IAA) was the most effective auxin to stimulate root formation. IAA was effective whether the hypocotyl segments remained on the same medium up to 60 days, or the segments were transferred to basal media after 2 or 5 days (pulse treatment). Pulse treatments with the other auxins resulted in stimulation of root formation; continuous or 5-day pulses of higher concentrations of indole-3-butyric acid,α-naphthaleneacetic acid and especially 2,4-dichlorophenoxyacetic acid and picloram formed excessive callus instead of roots. Picloram did not stimulate root formation, whether the treatment was continuous or pulse-treated. No roots formed with continuous picloram at 0.1 mg/liter or greater, but transfer to basal media did result in root and shoot formation at about 50% of the number formed on the controls. Lesser picloram concentrations had no effect. Shoots formed readily on untreated (control) segments, but continuous treatment with all three cytokinins, kinetin, zeatin, and zeatin riboside, increased the numbers of shoots about equally. Root formation was inhibited by the cytokinins at the higher concentrations (0.1 to 0.2 mg/liter). With the exception of a 5-day pulse of 0.04 mg/liter IAA, the auxins did not stimulate shoot formation, but generally inhibited shoot formation, even in pulse-treated cultures.  相似文献   

20.
以艾西丝南瓜带芽茎段为外植体,研究了基本培养基、激素、糖、光照、培养基支持物等因子对芽增殖及不定根形成的影响。结果表明:艾西丝南瓜芽增殖的最佳培养条件为:MS+BA 0.5~1.0 mg/L+IAA 0.1~0.5 mg/L+食用白糖30 g/L,芽的月[KG(*9]增殖系数稳定在10左右;不定根诱导的适宜条件是:[KG)]1/2MS+食用白糖20 g/L,生根率达86%;且自然散射光条件(1000~5000Lx)优于灯光(1000~2000Lx);以脱脂棉作生根培养基支持物效果优于琼脂,其芽增殖系数和生根率分别提高26%和7%。  相似文献   

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