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Membrane fractions from Cucurbita maxima hypocotyls were isolated in a medium which inhibits the action of endogenous phospholipases. After removal of soluble phosphatases by Sepharose 2B-CL column chromatography, an auxin-stimulated ATPase activity was found in membrane fractions from linear sucrose gradients. In the presence of 10-4 M phenylacetic acid (PAA), the stimulation by indol-3-acetic acid (IAA) exhibited a bimodal concentration dependence with maximal stimulation of about 50% at 10-6 M IAA. Without PAA, only a high concentration of 10-4 M IAA was stimulatory, whereas 10-6 M IAA had no apparent effect and 10-8 M IAA exhibited weak inhibition. PAA alone had only weak or no effects. The effects of IAA must be considered as hormone-specific. The ATPase activity in the presence of 10-4 M PAA was activated only by 2,4-dichlorophenoxyacetic acid (2,4-D), an active auxin analogue, but not by the inactive stereoisomers, 2,3-D and 3,5-D. Comparison with marker enzyme profiles suggested that part of the auxin-stimulated ATPase was localized on plasma membranes as well as other compartments. Thus, the auxin-stimulated ATPase may become a useful tool in the investigation of the mechanism of action of auxin.Abbrevations 2,4-D 2,4-dichlorophenoxyacetic acid - 2,3-D 2,3-dichlorophenoxyacetic acid - 3,5-D 3,5-dichlorophenoxyacetic acid - IAA indol-3-acetic acid - PAA phenylacetic acid - MES (2-(N-morpholino))-ethanesulfonic acid - EDTA ethylenediamine tetraacetic acid  相似文献   

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Early embryo development in Fucus distichus is auxin sensitive   总被引:2,自引:0,他引:2  
Auxin and polar auxin transport have been implicated in controlling embryo development in land plants. The goal of these studies was to determine if auxin and auxin transport are also important during the earliest stages of development in embryos of the brown alga Fucus distichus. Indole-3-acetic acid (IAA) was identified in F. distichus embryos and mature tissues by gas chromatography-mass spectroscopy. F. distichus embryos accumulate [(3)H]IAA and an inhibitor of IAA efflux, naphthylphthalamic acid (NPA), elevates IAA accumulation, suggesting the presence of an auxin efflux protein complex similar to that found in land plants. F. distichus embryos normally develop with a single unbranched rhizoid, but growth on IAA leads to formation of multiple rhizoids and growth on NPA leads to formation of embryos with branched rhizoids, at concentrations that are active in auxin accumulation assays. The effects of IAA and NPA are complete before 6 h after fertilization (AF), which is before rhizoid germination and cell division. The maximal effects of IAA and NPA are between 3.5 and 5 h AF and 4 and 5.5 h AF, respectively. Although, the location of the planes of cell division was significantly altered in NPA- and IAA-treated embryos, these abnormal divisions occurred after abnormal rhizoid initiation and branching was observed. The results of this study suggest that auxin acts in the formation of apical basal patterns in F. distichus embryo development.  相似文献   

6.
K. G. Krieger 《Planta》1978,140(2):107-109
Auxin application to the upper side of the pulvinus of primary leaves of Phaseolus vulgaris L. promoted bending away from the place of application. The effect had a latency of less than 20 min and was specifically induced by substances known as active auxins in growth tests (indoleacetic and 1-naphthaleneacetic acid) but not by inactive auxin analogs (2-naphthaleneacetic, 3-indolepropionic and benzoic acid); 2,4-dichlorophenoxyacetic acid, and L-(-)-2,4-dichlorophenoxyisopropionic acid were of intermediate activity. Auxin-promoted bending was reversible and presumably caused by turgor increase in the treated cells.Abbreviations IAA 3-indolacetic acid - NAA naphthylacetic acid  相似文献   

7.
The occurrence of IAA, a plant-growth-regulating substance of the auxin group, was investigated in developing chick embryos. Paperchromatography followed by the Avena curvature test revealed the presence of a substance with auxin activity and the same Rf as IAA. This substance was identified as IAA by combined gas chromato-graphy-mass spectrometry. The amount of IAA in a unit weight of embryo was almost identical during embryo development, the total amount of IAA in an embryo increasing as it developed. The amount of IAA in the whole egg was also examined and it was found that an egg incubated for 9 days at 37°C contained a larger amount of IAA than one not incubated.  相似文献   

8.
拟南芥 MeIAA 抗性突变体的筛选和初步图位克隆分析   总被引:3,自引:1,他引:2  
生长素是最重要的植物激素之一, 参与了植物生长发育的各个方面。植物体内游离的IAA是生长素的主要活性形式, 在IAA甲基转移酶1(IAMT1)的作用下, IAA可以转变为IAA甲酯 (MeIAA)。MeIAA本身没有活性, 在植物体内的MeIAA酯解酶作用下可以重新转变为IAA。 MeIAA是非极性分子, 能够在植物体内自由扩散。利用MeIAA的这种特殊性质筛选突变体, 可以分离到MeIAA代谢途径或者IAA途径中新的成分。我们对拟南芥种子进行EMS诱变, 通过观察黑暗下下胚轴的生长情况, 筛选MeIAA的抗性突变体。我们成功分离到了8株可能的抗性突变体, 并对其中的一个Methyl -IAA resistant 1 (mir1) 突变体进行了深入分析。MeIAA抗性突变体的筛选将为进一步了解MeIAA的代谢、IAA稳态调控和响应机理提供新的材料。  相似文献   

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Arabidopsis ATP-binding cassette B4 (ABCB4) is a root-localised auxin efflux transporter with reported auxin uptake activity in low auxin concentrations. Results reported here demonstrate that ABCB4 is a substrate-activated regulator of cellular auxin levels. The contribution of ABCB4 to shootward auxin movement at the root apex increases with auxin concentration, but in root hair elongation assays ABCB4-mediated uptake is evident at low concentrations as well. Uptake kinetics of ABCB4 heterologously expressed in Schizosaccharomyces pombe differed from the saturation kinetics of AUX1 as uptake converted to efflux at threshold indole-3-acetic acid (IAA) concentrations. The concentration dependence of ABCB4 appears to be a direct effect on transporter activity, as ABCB4 expression and ABCB4 plasma membrane (PM) localisation at the root apex are relatively insensitive to changes in auxin concentration. However, PM localization of ABCB4 decreases with 1-naphthylphthalamic acid (NPA) treatment. Unlike other plant ABCBs studied to date, and consistent with decreased detergent solubility, ABCB4(pro) :ABCB4-GFP is partially internalised in all cell types by 0.05% DMSO, but not 0.1% ethanol. In trichoblasts, ABCB4(pro) :ABCB4-GFP PM signals are reduced by >200 nm IAA and 2,4-dichlorophenoxyacetic acid (2,4-D). In heterologous systems and in planta, ABCB4 transports benzoic acid with weak affinity, but not the oxidative catabolism products 2-oxindole-3-acetic-acid and 2-oxindole-3-acetyl-β-D-glucose. ABCB4 mediates uptake, but not efflux, of the synthetic auxin 2,4-D in cells lacking AUX1 activity. Results presented here suggest that 2,4-D is a non-competitive inhibitor of IAA transport by ABCB4 and indicate that ABCB4 is a target of 2,4-D herbicidal activity.  相似文献   

11.
生长素是最重要的植物激素之一,参与了植物生长发育的各个方面。植物体内游离的IAA是生长素的主要活性形式,在IAA甲基转移酶1(IAMT1)的作用下,IAA可以转变为IAA甲酯(MelAA)。MelAA本身没有活性,在植物体内的MelAA酯解酶作用下可以重新转变为IAA。MelAA是非极性分子,能够在植物体内自由扩散。利用MelAA的这种特殊性质筛选突变体,可以分离到MelAA代谢途径或者IAA途径中新的成分。我们对拟南芥种子进行EMS诱变,通过观察黑暗下下胚轴的生长情况,筛选MelAA的抗性突变体。我们成功分离到了8株可能的抗性突变体,并对其中的一个Methyl-JAAresistant1(mir1)突变体进行了深入分析。MelAA抗性突变体的筛选将为进一步了解MelAA的代谢、IAA稳态调控和响应机理提供新的材料。  相似文献   

12.
Summary Epiphytic microorganisms present on cotton plants synthesized 3-indoleacetic acid (IAA) from tryptophan. Microorganisms from the root zone synthesized 3 times the amount of IAA when compared with the shoot zone and the root zone contained a much higher number of microorganisms. IAA-synthesizing activity was eliminated when the tissues were treated with a weak solution of mercuric chloride. Various tests on the possible accumulation of IAA from external sources showed that IAA synthesized outside the plant does not accumulate in the plant. Although epiphytic microorganisms synthesize IAA in large amounts, they do not influence the IAA content of the plant due to (1) lack of available tryptophan, (2) destruction of the auxin by the microflora, and (3) the polar movement of the auxin.  相似文献   

13.
The correlation between auxin and RNA metabolism was investigated in lentil roots. IAA and NAA both cause a considerable rise in the RNA level of germinating lentil roots, though no effect of IAA was found on the DNA level. In untreated germinating roots various sections were isolated and a direct relation found between RNA and auxin content, and an indirect relation between RNA content and auxin oxidase activity. In excised roots, incubated for 24 hours, the loss of RNA is paralleled by a loss of endogenous auxin. Excised roots treated with 10?4M IAA or M 10?4 NAA loose little RNA. The findings suggest that in lentil roots the RNA levels may be controlled by auxin levels, which in turn may be controlled by the levels of auxin oxidase.  相似文献   

14.
Bound auxin formation in growing stems   总被引:4,自引:3,他引:1       下载免费PDF全文
Davies PJ 《Plant physiology》1976,57(2):197-202
The term “bound auxin” is herein used to describe auxin conjugates insoluble in organic solvents which dissolve indoleacetic acid (IAA) and its derivatives, but hydrolyzable by NaOH to release IAA. Bound auxin from pea stems was fractionated into water-soluble, water-insoluble/NaOH-hydrolyzable, and insoluble components. Formation of bound auxin commenced with 15 minutes of applying exogenous labeled IAA, and progressively increased in amount, relative to IAA uptake, over 6 hours. Formation was not restricted to any particular zone of the stem and occurred in both light- and dark-grown stems. A greater quantity of bound auxin was formed in light-grown stems, reaching 4.2 and 7.7%, of the IAA taken up, in the water-soluble and water-insoluble/NaOH-hydrolyzable fractions after 6 hours. The presence of sucrose, during either the IAA treatment or an aging pretreatment had no effect, though 6 hours aging did cause a subsequent increase in the water-insoluble fraction of the bound auxin. Bound auxin formation in light-grown stems was dependent on respiratory metabolism, being reduced by KCN. It was also reduced, compared to total uptake, by inhibitors of RNA, and protein synthesis (6-methylpurine and cycloheximide) but only when the inhibitors preceded auxin addition and were present for a 4-hour period. Addition of inhibitors following auxin had no effect, suggesting an early inductive effect of auxin on bound auxin formation. Inhibitors of cell elongation had no effect. Deoxyglucose, an inhibitor of glucan synthesis, had only a small effect on the water-soluble fraction. Bound auxin is an important auxin product in growing plants. Its function is unknown, but some possibilities are discussed.  相似文献   

15.
Aux/IAA proteins contain a potent transcriptional repression domain   总被引:21,自引:0,他引:21  
  相似文献   

16.
Back TG  Janzen L  Pharis RP  Yan Z 《Phytochemistry》2002,59(6):627-634
The following six novel methyl ether derivatives of brassinolide were prepared and their brassinosteroid activity was measured by means of the rice leaf lamina inclination bioassay: 2-O-methylbrassinolide, 3-O-methylbrassinolide, 2,22,23-tri-O-methylbrassinolide, 3,22,23-tri-O-methylbrassinolide, 2-O-methyl-25-methoxybrassinolide and 3-O-methyl-25-methoxybrassinolide. Brassinolide was used as a standard for comparison. All six compounds were also tested in the presence of 1000 ng of indole-3-acetic acid (IAA), an auxin that synergizes the effects of brassinosteroids. The 2-O-methyl- and 3-O-methylbrassinolide derivatives showed weak activity at high doses, which was enhanced by IAA, especially in the case of the 3-O-methyl derivative. Similarly, the 2,22,23-tri-O-methyl- and 3,22,23-tri-O-methyl derivatives displayed weak bioactivity on their own, but significantly stronger activity when applied with IAA. The 3-O-methyl and 3,22,23-tri-O-methyl analogues plus IAA were comparable in bioacivity to brassinolide alone, but were less active than brassinolide plus IAA. In each case, O-methylation at C-2 resulted in a greater loss of activity than O-methylation at C-3 under the same conditions. The relatively strong activity of 3,22,23-tri-O-methylbrassinolide in the presence of IAA is especially noteworthy as it indicates that free hydroxyl groups at C-3, C-22, and C-23 are not essential for bioactivity. Finally, 2-O-methyl- and 3-O-methyl-25-methoxybrassinolide were essentially inactive alone, and showed only a modest increase in bioactivity when coapplied with IAA.  相似文献   

17.
The auxin-binding protein 1 (ABP1) has already been proved to be an extracellular receptor of auxin in single cell systems. Protoplasts of maize coleoptiles respond to auxin with an increase in volume. The 2-naphthaleneacetic acid (2-NAA), an inactive auxin analog, acts as an anti-auxin in protoplast swelling, as it suppresses the effect of indole-3-acetic acid (IAA). Antibodies raised against box a of ABP1 induce protoplast swelling in the absence of auxin. This response is inhibited by pre-incubation with 2-NAA. The effect of 2-NAA on swelling induced by agonistic antibodies appears to depend on the binding characteristics of the antibody. ScFv12, an antibody directed against box a, box c and the C-terminal domain of ABP1 also exhibits auxin-agonist activity which is, however, not abolished by 2-NAA. Neither does 2-NAA affect the activity of the C-terminal peptide of ABP1, which is predicted to interact with putative binding proteins of ABP1. These results support the view that box a and box c of ABP1 are auxin-binding domains.  相似文献   

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Summary 3-Methyleneoxindole (MO), a metabolite of the plant auxin indole-3-acetic acid (IAA), was more active than IAA in supporting Stage II and III micropropagation of several plant species. In Stage II micropropagation, characterized by the rapid numerical increase of shoots, the optimal IAA concentration was 0.01 mM compared to 0.1 mM MO for most plants. In Stage III micropropagation where auxin is required for the rhizogenic response, 0.1 μM MO was more effective than 0.01 mM IAA. Inhibition analysis of plant growth with chlorogenic acid (CGA) suggested an obligatory role for MO in IAA-mediated auxin reactions: CGA, which blocks the enzymatic oxidation of IAA to MO, in vivo, completely abolished IAA's ability to support the growth of explants during micropropagation. In contrast, CGA did not inhibit the auxin activity of MO, the product of the blocked reaction. The growth rate and rooting efficiency of tobacco propagules in Stage III medium was improved substantially if these were first exposed to a high concentrations of MO and subsequently transferred to media containing low or no MO.  相似文献   

20.
通过外施二氯喹啉酸、生长素处理,研究二氯喹啉酸对稗草Echinochloa crusgalli生长特性、蛋白浓度、过氧化物酶及超氧化物歧化酶活性、生长素含量的影响。结果表明,800 g·hm-2二氯喹啉酸处理24 h未对S型稗草的生长产生明显抑制,而二氯喹啉酸单独处理及外施IAA的二氯喹啉酸处理均能显著增加R型稗草鲜重。在不施药、二氯喹啉酸单独处理、二氯喹啉酸与IAA共同处理的条件下,R型稗草比S型稗草的蛋白浓度分别提高23.5%、29.8%和64.0%,R型稗草表现出较高的抗逆境耐受能力。经二氯喹啉酸处理后,两种生物型稗草SOD活性上升,POD活性下降。施外源IAA能提高S型稗草POD活性,而对R型稗草SOD、POD活性影响不显著。提高生长素含量可显著促进R型稗草的生长。  相似文献   

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