首页> 美国卫生研究院文献>Frontiers in Plant Science >Water Stress Responses of Tomato Mutants Impaired in Hormone Biosynthesis Reveal Abscisic Acid Jasmonic Acid and Salicylic Acid Interactions
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Water Stress Responses of Tomato Mutants Impaired in Hormone Biosynthesis Reveal Abscisic Acid Jasmonic Acid and Salicylic Acid Interactions

机译:激素生物合成受损的番茄突变体的水分胁迫响应揭示了脱落酸茉莉酸和水杨酸的相互作用

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摘要

To investigate the putative crosstalk between JA and ABA in Solanum lycopersicum plants in response to drought, suppressor of prosystemin-mediated responses2 (spr2, JA-deficient) and flacca (flc, ABA-deficient) mutants together with the naphthalene/salicylate hydroxylase (NahG) transgenic (SA-deficient) line were used. Hormone profiling and gene expression of key enzymes in ABA, JA and SA biosynthesis were analyzed during early stages of drought. ABA accumulation was comparable in spr2 and wild type (WT) plants whereas expression of 9-cis-epoxycarotenoid dioxygenase 1 (NCED1) and NCED2 was different, implying a compensation mechanism between NCED genes and an organ-specific regulation of NCED1 expression. JA levels and 12-oxo-phytodienoic acid reductase 3 (OPR3) expression in flc plants suggest that ABA regulates the induction of the OPR3 gene in roots. By contrast, ABA treatment to flc plants leads to a reduction of JA and SA contents. Furthermore, different pattern of SA accumulation (and expression of isochorismate synthase and phenylalanine ammonia lyase 1) was observed between WT seedlings and mutants, suggesting that SA plays an important role on the early response of tomato plants to drought and also that JA and ABA modulate its biosynthesis. Finally, hormone profiling in spr2 and NahG plants indicate a crosstalk between JA and SA that could enhance tolerance of tomato to water stress.
机译:为了调查茄和茄中JA和ABA在干旱响应中的交互作用,抑制prosystemin介导的响应2(spr2,JA缺失)和flacc(flc,ABA缺失)突变体以及萘/水杨酸羟化酶(NahG) )使用转基因(SA缺陷)品系。在干旱的早期阶段,分析了ABA,JA和SA生物合成过程中的激素谱和关键酶的基因表达。 ABA积累在spr2和野生型(WT)植物中相当,而9-顺式-环氧类胡萝卜素双加氧酶1(NCED1)和NCED2的表达则不同,这暗示了NCED基因之间的补偿机制和NCED1表达的器官特异性调节。 FLC植物中的JA水平和12-氧-植物二烯酸还原酶3(OPR3)表达表明ABA调节根中OPR3基因的诱导。相反,对flc植物的ABA处理导致JA和SA含量的降低。此外,WT幼苗和突变体之间观察到SA积累的不同模式(以及等渗酸合酶和苯丙氨酸氨裂合酶1的表达),这表明SA在番茄植物对干旱的早期响应中起重要作用,并且JA和ABA调节它的生物合成。最后,spr2和NahG植物中的激素分析表明JA和SA之间的串扰可以增强番茄对水分胁迫的耐受性。

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