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We recently demonstrated that endogenous abscisic acid (ABA) is involved in methyl jasmonate (MeJA)-induced stomatal closure in Arabidopsis thaliana. In this study, we investigated whether endogenous ABA is involved in MeJA-induced reactive oxygen species (ROS) and nitric oxide (NO) production and cytosolic alkalization in guard cells using an ABA-deficient Arabidopsis mutant, aba2-2, and an inhibitor of ABA biosynthesis, fluridon (FLU). The aba2-2 mutation impaired MeJA-induced ROS and NO production. FLU inhibited MeJA-induced ROS production in wild-type guard cells. Pretreatment with 0.1 μM ABA, which does not induce stomatal closure in the wild type, complemented the insensitivity to MeJA of the aba2-2 mutant. However, MeJA induced cytosolic alkalization in both wild-type and aba2-2 guard cells. These results suggest that endogenous ABA is involved in MeJA-induced ROS and NO production but not in MeJA-induced cytosolic alkalization in Arabidopsis guard cells.  相似文献   
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Methyl jasmonate (MeJA) elicits stomatal closure in many plant species. Stomatal closure is accompanied by large ion fluxes across the plasma membrane (PM). Here, we recorded the transmembrane ion fluxes of H+, Ca2+ and K+ in guard cells of wild‐type (Col‐0) Arabidopsis, the CORONATINE INSENSITIVE1 (COI1) mutant coi1‐1 and the PM H+‐ATPase mutants aha1‐6 and aha1‐7, using a non‐invasive micro‐test technique. We showed that MeJA induced transmembrane H+ efflux, Ca2+ influx and K+ efflux across the PM of Col‐0 guard cells. However, this ion transport was abolished in coi1‐1 guard cells, suggesting that MeJA‐induced transmembrane ion flux requires COI1. Furthermore, the H+ efflux and Ca2+ influx in Col‐0 guard cells was impaired by vanadate pre‐treatment or PM H+‐ATPase mutation, suggesting that the rapid H+ efflux mediated by PM H+‐ATPases could function upstream of the Ca2+ flux. After the rapid H+ efflux, the Col‐0 guard cells had a longer oscillation period than before MeJA treatment, indicating that the activity of the PM H+‐ATPase was reduced. Finally, the elevation of cytosolic Ca2+ concentration and the depolarized PM drive the efflux of K+ from the cell, resulting in loss of turgor and closure of the stomata.  相似文献   
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Methyl jasmonate (MeJA) was identified as an airborne signal involved in mediating interplant defense response communications over a decade ago. However, how MeJA activates plant defense systems and what becomes of the compound after it has done so has, thus far, remained unknown. To investigate this, Achyranthes bidentata plants were exposed to deuterated methyl jasmonate (d2MeJA) followed by absolute quantification of metabolic products of d2MeJA, and emissions of volatile organic compound (VOC) as defensive markers. We found that d2MeJA was metabolized mainly into deuterated jasmonic acid (d2JA) and jasmonoyl isoleucine (d2JA-Ile), and to a much lesser extent, deuterated jasmonoyl leucine (d2JA-Leu). Increases in d2JA-Ile/Leu and also endogenous JA-Ile/Leu were tightly co-related with, and significantly influenced the pattern and amount of, VOC emissions. The amount of accumulated d2JA-IIe was 13.1-fold higher than d2JA-Leu, whereas the amounts of JA-IIe and JA-Leu accumulated were almost identical. This study demonstrates that exogenous MeJA activates defensive systems (such as VOC emissions) in receiver plants by essentially converting itself into JA and JA-IIe and initiating a signal transduction leading to VOC emissions and induction of endogenous JA-IIe and JA-Leu, which in turn cause further amplification of VOC emissions.  相似文献   
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Astragalus membranaceus is a major traditional Chinese medicinal plant. Here, we investigated the mobilizations of seed reserves during its germination and post-germination growth, as well as the effects of exogenous abscisic acid (ABA) and methyl jasmonate (MeJA). It was found that both starch and protein were rapidly mobilized during the seed germination. However, lipid was mostly utilized during the post-germination. Exogenous ABA and MeJA treatments significantly inhibited the germination and post-germination growth. Meanwhile, the treatments decreased the weight of mobilized seed reserves and seed reserves utilization efficiency, retarded the mobilizations of protein and lipid, and led to excessive consumption of carbon energy. Moreover, the treatments changed fatty acid compositions in cotyledons, with the decreasing of the double bond index and average carbon chain length. This study will help us to understand the inhibition mechanism of exogenous ABA and MeJA on the germination and post-germination growth of A. membranaceus.  相似文献   
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CYP83A1基因是萝卜硫素合成代谢中的关键基因,该试验以青花菜品种CDBY-10为材料,利用RACE和RT-PCR方法,获得BoCYP83A1基因的全长序列。该基因全长1 509bp,编码502个氨基酸,包含保守的P450结构域。通过实时荧光定量PCR分析了BoCYP83A1基因在不同品种、不同组织以及不同激素处理下的表达水平。系统进化树分析表明,BoCYP83A1与结球甘蓝亲缘关系最近。BoCYP83A1基因在不同品种间的组织特异性不同:在青花菜品种CDBY-10的根、茎、叶3个组织间表达水平差异较小,在品种CDBY-12中表现为茎叶根,在CDBY-14中则表现为根茎叶。MeJA及SA处理均能够引起BoCYP83A1基因表达量的变化:经MeJA处理后,BoCYP83A1基因表达量升高至对照的1.9倍,而后有少量下降;经SA处理后,BoCYP83A1基因表达水平迅速降低,在6h时降低至对照的0.1倍,而后逐渐回升至对照的表达水平。研究表明,BoCYP83A1基因在不同青花菜品种中的表达特性不同,其表达能够被MeJA和SA所调控。青花菜BoCYP83A1的克隆及鉴定为培育高萝卜硫素含量的青花菜新品种奠定了理论基础。  相似文献   
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茉莉酸甲酯(MeJA)诱导水稻颖花开放   总被引:21,自引:0,他引:21  
水稻颖花的开放是由浆片吸水、膨大并推开内、外颖之间的钩合而造成的。王忠等[1]最早报道颖花因呼吸增强而积累的CO2是促进浆片膨大的主要因素,并建立了用外源CO2或酸溶液诱导水稻开颖的方法。可是,颖花开放之前,其呼吸强度何以能大幅度增加?浆片细胞的吸水...  相似文献   
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