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Key message
The Arabidopsis SAUR36 , renamed RAG1 , integrates auxin and gibberellin signals to regulate apical hook maintenance in etiolated seedlings, hypocotyl elongation in the light and fertility.Abstract
Phytohormone signalling intermediates integrate responses to developmental cues and the variety of environmental inputs thereby governing all aspects of plant growth and development. At the genetic level, interactions of different phytohormone signalling pathways lead to the regulation of overlapping sets of target genes. We have characterised SMALL AUXIN UP RNA 36 (SAUR36, At2g45210) whose expression is induced by auxins and repressed by gibberellins. Its expression appears to be restricted to elongating tissues. Germination responses to treatments with paclobutrazol and exogenous abscisic acid were affected in knock-out, knock-down as well as ectopic expression lines. At later stages of development, however, transgenic plants with reduced levels of SAUR36 expression appeared similar to wild-type plants, while ectopic expression of SAUR36 led to the absence of apical hooks in etiolated seedlings and longer hypocotyls in light-grown seedlings. Mature plants ectopically expressing SAUR36 further displayed strongly reduced fertility and wavy growth of inflorescence axes, the latter of which could be linked to defects in auxin transport. Taken together, our data suggest that SAUR36 plays a role in the regulation of seed germination by gibberellins and abscisic acid, light-dependent hypocotyl elongation as well as apical hook formation or maintenance. Therefore, we propose that it could act as one of the converging points of auxin and gibberellin signal integration in controlling key plant developmental events. Hence, we named the gene RESPONSE TO AUXINS AND GIBBERELLINS 1 (RAG1). 相似文献2.
Blue light-induced regulation of cell elongation is a component of the signal response pathway for both phototropic curvature and inhibition of stem elongation in higher plants. To determine if blue light regulates cell elongation in these responses through shared or discrete pathways, phototropism and hypocotyl elongation were investigated in several blue light response mutants in Arabidopsis thaliana. Specifically, the blu mutants that lack blue light-dependent inhibition of hypocotyl elongation were found to exhibit a normal phototropic response. In contrast, a phototropic null mutant (JK218) and a mutant that has a 20- to 30-fold shift in the fluence dependence for first positive phototropism (JK224) showed normal inhibition of hypocotyl elongation in blue light. F1 progeny of crosses between the blu mutants and JK218 showed normal phototropism and inhibition of hypocotyl elongation, and approximately 1 in 16 F2 progeny were double mutants lacking both responses. Thus, blue light-dependent inhibition of hypocotyl elongation and phototropism operate through at least some genetically distinct components. 相似文献
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Effects of catecholamines and their derivatives on gibberellicacid (GA)-induced lettuce hypocotyl elongation was studied,because catecholamines have a chemical structure similar tothe dihydroconiferyl alcohol that has been isolated from lettucecotyledons as a GA synergist. Epinephrine, norepinephrine, dopamineand 3,4-dihydroxymandelic acid synergistically enhanced thepromoting effect of GA on hypocotyl elongation. In contrast,metanephrine, normetanephrine, DOPA and 3-methoxy-4- hydroxymandelicacid did not enhance the GA effect. The action of catecholamineswas inhibited by trans-cinnamic acid which competitively inhibitedthe action of dihydroconiferyl alcohol; this suggests that thereceptor site for catecholamines is the same as that for dihydroconiferylalcohol. The basic ethyl acetate fraction from lettuce seedlingssynergistically enhanced the GA effect. TLC analyses of thisbasic ethyl acetate fraction revealed that the chromatographicarea corresponding to authentic catecholamines could enhancethe GA effect. From these results, a possible role for catecholamines in theregulation of lettuce hypocotyl elongation caused by GA wasposited, and is discussed here. (Received May 15, 1979; ) 相似文献
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Plant Growth Regulation - Hypocotyl length is determined by cell division and elongation, which are associated with canonical cell cycle and endoreduplication. Plant hormone brassinosteroid (BR) is... 相似文献
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The effect of light on IAA-induced elongation of light-growncucumber hypocotyl sections was examined. There was no differencein the optimal concentration of IAA between light and darknessand the biphasic pattern of IAA-induced elongation also wasobtained in both states. Elongation of the first phase was notaffected by light, but that of the second phase was influencedby the light condition of the first phase; dark incubation forthe first 3 hr resulted in a larger IAA-induced elongation inthe second phase. For the maximum IAA-induced elongation, atleast 3 hr of light exposure in the second phase was necessary.Simultaneously applied photosynthetic inhibitors, DCMU, CMUand o-phenanthroline, synergistically enhanced IAA-induced elongationin light, but not in the dark. They were not effective whenIAA treatment preceded the treatment with them. (Received April 3, 1978; ) 相似文献
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Summary Hypocotyl elongation in two varieties of Petunia and in Grand Rapids lettuce is shown to be affected by a high-energy reaction and by phytochrome action. These two photoreactions interact in such a way that, on the one hand, shortening of the hypocotyls due to the high-energy reaction can be entirely masked by brief terminal far-red light treatment, while on the other hand, there is no evidence of phytochrome action unless brief exposures to red light are preceded by relatively long exposure of high-intensity.The action spectra for the high-energy reaction show peak effectiveness at wavelengths of 430–450 m, with a minor peak at 660 m in Comanche Petunia, at 700 m in Pink Cascade Petunia, and at 720 m in Grand Rapids lettuce.Prior treatment with DCMU did not reduce the effect of high-intensity light on hypocotyl lengths in lettuce.The nature of the high-energy reaction, and the relation between it and phytochrome action are discussed. Besides these two photoreactions there appears to be a direct effect of light on elongation, blue light preventing, and far-red light accelerating, elongation during actual exposure.With 9 Figures in the Text 相似文献
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The effect of dihydroconiferyl alcohol (DCA) on elongation ofcucumber hypocotyl segments was studied. DCA did not influenceelongation when given alone, but synergistically enhanced IAA-inducedelongation. The stimulating effect of DCA was conspicuous particularlywhen it was given together with suboptimal concentrations ofIAA. DCA hardly influenced GA-induced elongation in the presenceof 2% sucrose. (Received May 22, 1974; ) 相似文献
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Genetic analysis of the role of gibberellin in the red light inhibition of stem elongation in etiolated seedlings 总被引:2,自引:4,他引:2 下载免费PDF全文
Red light causes a reduction in the extension growth of dark-grown seedlings. The involvement of gibberellin in this process was tested by screening a number of gibberellin synthesis and gibberellin response mutants of Pisum sativum L. for the kinetic response of stem growth inhibition by red light. Gibberellin deficient dwarfs, produced by mutant alleles at the Le, Na, and Ls loci, and gibberellin response mutants produced by mutant alleles at the La and Cry2, Lka, and Lkb loci were tested. Extension growth of expanding third internodes of dark-grown seedlings was recorded with high resolution using angular position transducers. Seedlings were treated with red light at a fluence rate of 4 micromoles per square meter per second either continuously or for 75 seconds, and the response was measured over 9 hours. With certain small exceptions, the response to the red light treatments was similar in all the mutants and wild types examined. The lag time for the response was approximately 1 hour and a minimum in growth rate was reached by 3 to 4 hours after the onset of the light treatment. Growth rate depression at this point was about 80%. Seedlings treated with 75 seconds red light recovered growth to a certain extent. Red/far-red treatments indicated that the response was mediated largely by phytochrome. The similar responses to red light among these wild-type and mutant genotypes suggest that the short-term (i.e. 9 hour) response to red light is not mediated by either a reduction in the level of gibberellin or a reduction in the level or affinity of a gibberellin receptor. 相似文献
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The phototropin photoreceptors transduce blue-light signals into several physiological and developmental responses in plants. A transient rise in cytoplasmic calcium (Ca2+) that begins within seconds of phototropin 1 (phot1) excitation is believed to be an important element in the transduction pathways leading to one or more of the phot1-dependent responses. The goal of the present work was to determine whether the Ca2+ response was necessary for (a). the inhibition of hypocotyl elongation that develops within minutes of the irradiation, and (b). hypocotyl phototropism (curved growth of the stem in response to asymmetric illumination). After determining that pulses of light delivering photon fluences of between 1 and 1000 micromol m-2 induced growth inhibition mediated by phot1 without significant interference from other photosensory pathways, the effect of blocking the Ca2+ rise was assessed. Treatment of seedlings with a Ca2+ chelator prevented the rise in cytoplasmic Ca2+ and prevented phot1-mediated growth inhibition. However, the same chelator treatment did not impair phot1-mediated phototropism. Thus, it appears that the early, transient rise in cytoplasmic Ca2+ is an important intermediary process in at least one but not all phot1-signaling pathways. 相似文献
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George Bawa Lingyang Feng Guopeng Chen Hong Chen Yun Hu Tian Pu Yajiao Cheng Jianyi Shi Te Xiao Wenguan Zhou Taiwen Yong Xin Sun Feng Yang Wenyu Yang Xiaochun Wang 《Physiologia plantarum》2020,170(3):345-356
Soybean is an important oilseed crop grown globally. However, two examples of environmental stresses that drastically regulate soybean growth are low light and high-temperature. Emerging evidence suggests a possible interconnection between these two environmental stimuli. Low light and high-temperature as individual factors have been reported to regulate plant hypocotyl elongation. However, their interactive signal effect on soybean growth and development remains largely unclear. Here, we report that gibberellins (GAs) and auxin are required for soybean hypocotyl elongation under low light and high-temperature interaction. Our analysis indicated that low light and high-temperature interaction enhanced the regulation of soybean hypocotyl elongation and that the endogenous GA3, GA7, indole-3-acetic acid (IAA), and indole-3-pyruvate (IPA) contents significantly increased. Again, analysis of the effect of exogenous phytohormones and biosynthesis inhibitors treatments showed that exogenous GA, IAA, and paclobutrazol (PAC), 2, 3, 5,-triiodobenzoic acid (TIBA) treatments significantly regulated soybean seedlings growth under low light and high-temperature interaction. Further qRT-PCR analysis showed that the expression level of GA biosynthesis pathway genes (GmGA3ox1, GmGA3ox2 and GmGA3) and auxin biosynthesis pathway genes (GmYUCCA3, GmYUCCA5 and GmYUCCA7) significantly increased under (i) low light and high-temperature interaction and (ii) exogenous GA and IAA treatments. Altogether, these observations support the hypothesis that gibberellins and auxin regulate soybean hypocotyl elongation under low light and high-temperature stress interaction. 相似文献
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Structure-activity relationships of the cotyledon factor wereexamined by testing the effect of various substances structurallyrelated to the cotyledon factor (dihydroconiferyl alcohol) ongibberellin-induced lettuce hypocotyl elongation. The biological activity of the cotyledon factor, 3-(4-hydroxy-3-methoxyphenyl)propan-1-ol, disappeared if the phenolic hydroxy group was maskedwith a methoxy or glucosyl group. Oxidation of the alcoholicgroup in the side chain to a carboxylic group decreased thebiological activity of the cotyledon factor. As to relationshipsbetween the biological activity and length of the alkyl sidechain, the propane type was found to be much more active thanthe methane, ethane or butane type. The presence of a C = Cbond in the alkyl side chain made the cotyledon factor biologicallyinactive. Some antioxidants of indole-3-acetic acid were alsoassayed for cotyledon factor-like activity, since the cotyledonfactor is a polyphenol. However, known antioxidants such asrutin, pyrocatechol, chlorogenic acid, caffeic acid and ferulicacid did not show cotyledon factor-like activity. From these results, structural requirements of the cotyledonfactor as a gibberellin synergist were discussed. (Received June 17, 1975; ) 相似文献
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Mechanical inhibition of hypocotyl elongation induces radial enlargement: implications for cytokinin action 下载免费PDF全文
Excised elongating segments from 3-day-old soybean (Glycine max var. Wayne) seedlings radially enlarged when auxin-promoted elongation was mechanically inhibited. Growth was similar to segments treated with auxin plus cytokinin. This observation suggests that cytokinin does not necessarily directly “reorient” cell enlargement. Cytokinin-induced radial cell growth may be a secondary effect of cytokinin's inhibition of auxin-promoted elongation. 相似文献
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The occurrence of catecholamines in lettuce seedlings was examined by bioassay and gas chromatography-mass spectrometry (GC-MS), since synthetic catecholamines can synergistically enhance the stimulating effect of gibberellic acid (GA3) on hypocotyl elongation of decotylized lettuce seedlings. The catecholamine fraction on TLC obtained from lettuce seedlings synergistically enhanced the GA3 effect on hypocotyl elongation. The analysis of the catecholamine fraction from lettuce seedlings by GC-MS demonstrated the occurrence of dopamine. 相似文献
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Daphne Vince 《Planta》1967,75(4):291-308
Summary The ability of gibberellic acid (GA3) to prevent the light inhibition of stem elongation in peas was examined for several varieties under a wide range of irradiation conditions.A saturating dose of GA3 largely prevented the inhibitory effect of red light on total stem height in Duke of Albany (tall), Alaska (medium) and Meteor (dwarf) although a small, but statistically significant, effect persisted in all varieties after 3 days of light. The growth of the second internode was, however, markedly inhibited by red light even with a saturating dose of GA3. With gibberellin there was no difference between the effects of continuous red light and 15 minutes per day on height but the second internode was much shorter in the former treatment. The number of internodes present was the same in both cases and, therefore, the upper internodes in continuous light were as long or longer than in the 15-minute treatment. The number of internodes was only slightly fewer in darkness than in light so that, with GA3, the effect of red light was transient and only the growth of the lower internodes was inhibited. Without GA3 overall height was less in both red light treatments than in darkness for all three varieties.In blue light, on the other hand, there was no difference depending on whether height or internode length is considered, and even with a saturating dose of GA3 the growth rate remained depressed in continuous blue light. There was, however, some interaction between blue light and GA3.Red/far-red reversal experiments showed that in the varieties Alska and Duke of Albany the far-red stimulation of elongation persisted in the presence of a saturating dose of GA3 while for the dwarf variety Meteor there was a significant interaction between far-red and GA3.At least a quantitative difference was found between tall and dwarf peas in their response to light. Tall varieties showed a much greater effect of a prolonged exposure to blue and a smaller effect of a short exposure to red than dwarf varieties. Increasing the duration of exposure to red increasingly inhibited the growth of tall varieties. The medium variety Alaska grew to approximately the same height in continuous red and blue light. 相似文献
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DCCD, an inhibitor of membrane-bound ATPases, markedly inhibitedboth the endogenous and IAA-induced growth of cucumber hypocotylsections. The inhibition was negated by the simultaneous applicationof ADP, ATP and 3',5'-cyclic AMP. The effect of these nucleotideswas similar to that of GA3. Adenine, adenosine, AMP, 2',3'-cyclicAMP, CTP, GTP, ITP and UTP were all ineffective. (Received April 26, 1976; ) 相似文献
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Hypocotyl cell elongation has been studied as a model to understand how cellular expansion contributes to plant organ growth. Hypocotyl elongation is affected by multiple environmental factors, including light quantity and light quality. Red light inhibits hypocotyl growth via the phytochrome signaling pathways. Proteins of the FLAVIN-BINDING KELCH REPEAT F-BOX 1 / LOV KELCH PROTEIN 2 / ZEITLUPE family are positive regulators of hypocotyl elongation under red light in Arabidopsis. These proteins were suggested to reduce phytochrome-mediated inhibition of hypocotyl elongation. Here, we show that ZEITLUPE also functions as a positive regulator in warmth-induced hypocotyl elongation under light in Arabidopsis. 相似文献