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1.
The Role of Endogenous Abscisic Acid in the Response of Plants to Stress 总被引:10,自引:1,他引:10
When a continuous stream of warm air (38°C) was directedon to the leaves of dwarf bean seedlings they wilted and thengradually regained turgor. This process of adaptation was accompaniedby an increasing abscisic acid (ABA) level in the leaves andan increase in leaf resistance (RL). It is suggested that theleaf-water deficit induced by the warm-air treatment causedthe increase in ABA level and that the latter was responsiblefor stimulating stomatal closure, enabling the plants to regainfull turgor. A similar type of adaptation, brought about byan increased level of ABA in the leaves, is believed to occurin tomato, dwarf bean, and wheat plants when they are flooded.Predictably, in rice, a species adapted to a flooded environment,seedlings showed no increase in ABA level as a result of flooding. It is proposed that adaptation may involve the formation ofan equilibrium between ABA and its conjugate form (i. e. theglucose ester). The ABA-conjugate was observed to disperse slowlyfrom leaves recovering from a water deficit and therefore itmay act as a metabolic back-stop, enabling thefree ABA level to remain high for a period evenwhen the leaves have regained turgor. Abscisic acid appears to be responsible for alleviating theeffects of water stress in plants, making it possible for plantsto pass through periods of stress with little harm. 相似文献
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Spermine Promotes Acclimation to Osmotic Stress by Modifying Antioxidant, Abscisic Acid, and Jasmonic Acid Signals in Soybean 总被引:1,自引:0,他引:1
The possible involvement of spermine (Spm) in the acclimation of soybean to osmotic stress was investigated by determining the changes in photosynthetic pigments, antioxidants, and plant hormone levels in response to applied Spm. Plants were exposed to 9 % PEG-induced osmotic stress with or without 0.4 μM Spm. Osmotic stress reduced the relative water content, chlorophyll a, chlorophyll b, carotenoid, and protein contents in leaves, and these detrimental effects were alleviated by treatment with Spm. Moreover, the significant increase in the content of abscisic acid and decrease in that of jasmonic acid in plants subjected to osmotic stress was attenuated by treatment with Spm. Osmotic stress caused a significant increase in lipid peroxidation when compared to controls, and that was accompanied by a slight reduction in the level of antioxidants and reduced glutathione and in the activities of catalase, superoxide dismutase, peroxidase, and polyphenol oxidase. Spm treatment ameliorated these osmotic stress effects by reducing lipid peroxidation and increasing catalase, superoxide dismutase, peroxidase, and polyphenol oxidase activities. These results indicate that application of Spm could be exploited to alleviate a moderate level of osmotic stress through the regulation of stress-related components such as photosynthetic pigments, plant hormones, and antioxidants. 相似文献
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Md. Rezaul Islam Baohua Feng Tingting Chen Longxing Tao Guanfu Fu 《Journal of Plant Biology》2018,61(5):255-264
Abscisic acid (ABA) is a stress hormone that confers resistance to abiotic stressors, including drought, salt, cold, and heat. In general, antioxidant capacity and heat shock proteins (HSPs) mainly mediate ABA to enhance thermal acclimation in plants, but sugar metabolism and signaling also play critical roles in this response in the presence of ABA. Indeed, ABA accelerates sugar metabolism and transports more carbohydrates to spikelets under heat stress, which is beneficial to plants surviving under stressful conditions. Few studies have summarized the interactions among sucrose metabolism, signaling, and hormones in plants during heat stress, but this topic will likely attract more attention in the future. This article reviews the antioxidant capacity, HSPs, sugar metabolism, hormone crosstalk, and their interactions involved in ABA-induced heat tolerance in plants. Clarifying the underlying mechanisms will be invaluable for breeding heat-resistant cultivars and for developing new tissue culture techniques that reduce heat damage in plants. 相似文献
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Triadimefon Protects Bean Plants from Water Stress through its Effects on Abscisic Acid 总被引:10,自引:0,他引:10
Asare-Boamah N. K.; Hofstra G.; Fletcher R. A.; Dumbroff E. B. 《Plant & cell physiology》1986,27(3):383-390
Triadimefon is a fungicide that has plant growth regulatingproperties. In beans (Phaseolus vulgaris L.) it significantlyreduced shoot weight, shoot length and leaf area, and rootsappeared whiter and thicker in the treated plants. Chlorophylland carotenoid levels were increased in the leaves, but triadimefondid not affect protein levels in either leaves or roots. Triadimefonreduced transpiration and protected the plants from drought.It increased leaf diffusive resistance indicating partial closureof the stomates, and treated plants maintained their water potentialswhile those of the controls declined. Osmotic potentials ofboth treated and control leaves fell, but values in the controlswere significantly lower than those from the treated plants.Three days after treatment with triadimefon in both water stressedand non-stressed plants the abscisic acid levels in the leavesof the treated plants were more than twice the levels of thecontrols. It appears therefore that the protection conveyedby triadimefon during water stress is mediated at least partially,via its effects on ABA levels in treated tissue. (Received October 12, 1985; Accepted January 8, 1986) 相似文献
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Abscisic Acid and Abiotic Stress Signaling 总被引:1,自引:0,他引:1
Narendra Tuteja 《Plant signaling & behavior》2007,2(3):135-138
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A Possible Role for Jasmonic Acid in Adaptation of Barley Seedlings to Salinity Stress 总被引:6,自引:0,他引:6
T. D. Tsonev G. N. Lazova Z. G. Stoinova L. P. Popova 《Journal of Plant Growth Regulation》1998,17(3):153-159
The changes caused by NaCl salinity and jasmonic acid (JA) treatment (8 days) on growth and photosynthesis of barley plants
(Hordeum vulgare L., var. Alfa) have been studied. Gas exchange measurements and analysis of enzyme activities were used to study the reactions
of photosynthesis to salinity and JA. Both 100 mm NaCl and 25 μm JA treatment led to a noticeable decrease in both the initial slope of the curves representing net photosynthetic rate vs
intercellular CO2 concentration and the maximal rate of photosynthesis. The calculated values of the intercellular CO2 concentration, CO2 compensation point, and maximal carboxylating efficiency of ribulose-1,5-bisphosphate carboxylase support the suggestion
that biochemical factors are involved in the response of photosynthesis to JA and salinity stress. The activities of phosphoenolpyruvate
carboxylase and carbonic anhydrase increased more than twofold. Pretreatment with JA for 4 days before salinization diminished
the inhibitory effect of high salt concentration on the growth and photosynthesis. The results are discussed in terms of a
possible role of JA in increasing salinity tolerance of the barley plants.
Received September 8, 1997; accepted May 19, 1998 相似文献
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茉莉酸与植物抗性相关基因的表达 总被引:3,自引:0,他引:3
茉莉酸(jasmonic acid,JA)及其甲酯(MeJA)是调节高等植物的发育、应答外界刺激、调节基因表达的天然高等植物激素.JA最初是从真菌Lasiodiplodia theobromae培养液中分离到的.已研究过的所有高等植物中都有JA,估计其正常水平<10μmol·L-1.植物组织中JA的水平在花和果实等繁殖器官特别是未成熟的果皮中最高,根和成熟的叶片中则低得多.JA在植物组织中的液相和气相中可快速运动.1nmol·L-1的JA和1μmol·L-1的MeJA就能诱导植物基因表达水平的变化[1]. 相似文献
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Abscisic Acid Translocation and Influence of Water Stress on Grain Abscisic Acid Content 总被引:1,自引:0,他引:1
The movement of foliar applied [1-14C]abscisic acid (ABA) inwheat plants (Triticum aestivum L., cv. Kolibri) was investigatedat two stages of grain development (1000 grains, weight 19 and24 g dry matter). [114C]ABA seemed to be readily translocated within 12h into the developing grains as well as in other plant parts.A subsequent rapid metabolism took place leading to a decreasedactivity of the ABA-containing chromatogram fraction in theyounger plants 48 h after application. The metabolism seemodto be less intensive in the older grains, where the activityrunning with the ABA increased over 64 h. Treating the leaves of barley plants (Hordeum vulgare, L., cv.Union) 2 weeks after anthesis with a gentle stream of warm air(36° C) resulted in a significant increase in the ABA contentof all parts of the ear. The results mentioned above indicatethat this may be partially due to translocation from other partsof the plant such as the leaves. 相似文献
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Spirituality and the big five personality traits may be risk or protective factors for coping with stress. We hypothesized young adults who reported higher spirituality ratings would demonstrate lower sympathetic nervous system arousal and better emotional coping when exposed to a laboratory stressor compared to those who rated themselves lower in spirituality. We also compared spirituality groups on trait anger, neuroticism, conscientiousness, extraversion, agreeableness and openness to experience. Eighty participants completed trait-state anger, personality and spirituality questionnaires and were grouped into low, average and high spirituality. Participants’ physiological responses were monitored before and during a stressful event. Significant differences were found between low, average and high spirituality groups’ respiration rate and emotional response to the stressor. Significant differences were also found between spirituality groups in extraversion, agreeableness, conscientiousness, trait anger and neuroticism. Females reported higher levels of spirituality and conscientiousness than males. 相似文献
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Localized Wounding by Heat Initiates the Accumulation of Proteinase Inhibitor II in Abscisic Acid-Deficient Plants by Triggering Jasmonic Acid Biosynthesis 总被引:5,自引:0,他引:5 下载免费PDF全文
Herde O Atzorn R Fisahn J Wasternack C Willmitzer L Pena-Cortes H 《Plant physiology》1996,112(2):853-860
To test whether the response to electrical current and heat treatment is due to the same signaling pathway that mediates mechanical wounding, we analyzed the effect of electric-current application and localized burning on proteinase inhibitor II (Pin2) gene expression in both wild-type and abscisic acid (ABA)-deficient tomato (Lycopersicon esculentum Mill.) and potato (Solanum phureja) plants. Electric-current application and localized burning led to the accumulation of Pin2 mRNA in potato and tomato wild-type plants. Among the treatments tested, only localized burning of the leaves led to an accumulation of Pin2 mRNA in the ABA-deficient plants. Electric-current application, like mechanical injury, was able to initiate ABA and jasmonic acid (JA) accumulation in wild-type but not in ABA-deficient plants. In contrast, heat treatment led to an accumulation of JA in both wild-type and ABA-deficient plants. Inhibition of JA biosynthesis by aspirin blocked the heat-induced Pin2 gene expression in tomato wild-type leaves. These results suggest that electric current, similar to mechanical wounding, requires the presence of ABA to induce Pin2 gene expression. Conversely, burning of the leaves activates Pin2 gene expression by directly triggering the biosynthesis of JA by an alternative pathway that is independent of endogenous ABA levels. 相似文献
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Interaction of Osmotic Stress, Temperature, and Abscisic Acid in
the Regulation of Gene Expression in Arabidopsis 总被引:12,自引:0,他引:12 下载免费PDF全文
The impact of simultaneous environmental stresses on plants and how they respond to combined stresses compared with single stresses is largely unclear. By using a transgene (RD29A-LUC) consisting of the firefly luciferase coding sequence (LUC) driven by the stress-responsive RD29A promoter, we investigated the interactive effects of temperature, osmotic stress, and the phytohormone abscisic acid (ABA) in the regulation of gene expression in Arabidopsis seedlings. Results indicated that both positive and negative interactions exist among the studied stress factors in regulating gene expression. At a normal growth temperature (22°C), osmotic stress and ABA act synergistically to induce the transgene expression. Low temperature inhibits the response to osmotic stress or to combined treatment of osmotic stress and ABA, whereas low temperature and ABA treatments are additive in inducing transgene expression. Although high temperature alone does not activate the transgene, it significantly amplifies the effects of ABA and osmotic stress. The effect of multiple stresses in the regulation of RD29A-LUC expression in signal transduction mutants was also studied. The results are discussed in the context of cold and osmotic stress signal transduction pathways. 相似文献
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Gang-Ping Hao ;Xiu-Hai Zhang ;Yong-Qin Wang ;Zhong-Yi Wu ;Cong-Lin Huang 《Acta Botanica Sinica》2009,(2):175-183
Drought tolerance is a comprehensive quantitative trait that is being understood further at the molecular genetic level. Abscisic acid (ABA) is the main drought-induced hormone that regulates the expression of many genes related to drought responses. 9-cis-epoxycarotenoid dioxygenase (NCED3) is thought to be a key enzyme in ABA biosynthesis. In this paper, we measured the ABA content increase under drought stress, and sequenced and compared the sequence of AtNCED3 among 22 Arabidopsis thaliana accessions. The results showed that the fold of ABA content increase under drought stress was highly variable among these accessions. High density single nucleotide polymorphism (SNP) and insertion/deletion (indel) were found in the AtNCED3 region, on average one SNP per 87.4 bp and one indel per 502 bp. Nucleotide diversity was significantly lower in the coding region than that in non-coding regions. The results of an association study with ANOVA analysis suggested that the 274th site (P←→S) and the 327th site (P←→R) amino acid variations might be the cause of ABA content increase of 163av accession under drought stress. 相似文献
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Drought tolerance is a comprehensive quantitative trait that is being understood further at the molecular genetic level. Abscisic acid (ABA) is the main drought-induced hormone that regulates the expression of many genes related to drought responses. 9-cis-epoxycarotenoid dioxygenase (NCED3) is thought to be a key enzyme in ABA biosynthesis. In this paper, we measured the ABA content increase under drought stress, and sequenced and compared the sequence of AtNCED3 among 22 Arabidopsis thaliana accessions. The results showed that the fold of ABA content increase under drought stress was highly variable among these accessions. High density single nucleotide polymorphism (SNP) and insertion/deletion (indel) were found in the AtNCED3 region, on average one SNP per 87.4 bp and one indel per 502 bp. Nucleotide diversity was significantly lower in the coding region than that in non-coding regions. The results of an association study with ANOVA analysis suggested that the 274th site (P←→S) and the 327th site (P←→R) amino acid variations might be the cause of ABA content increase of 163av accession under drought stress. 相似文献