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Distal Transport of Exogenously Applied Jasmonoyl–Isoleucine with Wounding Stress

机译:远距离运输外源性茉莉酰基-异亮氨酸与创伤应激

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摘要

Determining the mobile signal used by plants to defend against biotic and abiotic stresses has proved elusive, but jasmonic acid (JA) and its derivatives appear to be involved. Using deuterium-labeled analogs, we investigated the distal transport of JA and jasmonoyl–isoleucine (JA–Ile) in response to leaf wounding in tobacco (Nicotiana tabacum) and tomato (Solanum lycopersicum) plants. We recovered [2H2-2]JA ([2H2]JA) and [2H3-12]JA–Ile ([2H3]JA–Ile) in distal leaves of N. tabacum and S. lycopersicum after treating wounded leaves with [2H2]JA or [2H3]JA–Ile. We found that JA–Ile had a greater mobility than JA, despite its lower polarity, and that application of exogenous JA–Ile to wounded leaves of N. tabacum led to a higher accumulation of JA and JA–Ile in distal leaves compared with wounded control plants. We also found that exudates from the stem of S. lycopersicum plants with damaged leaflets contained JA and JA–Ile at higher levels than in an undamaged plant, and a significant difference in the levels of JA–Ile was observed 30 min after wounding. Based on these results, it was found that JA–Ile is a transportable compound, which suggests that JA–Ile is a signaling cue involved in the resistance to biotic and abiotic stresses in plants.
机译:确定植物用于抵御生物和非生物胁迫的移动信号已难以捉摸,但茉莉酸(JA)及其衍生物似乎涉及其中。使用氘标记的类似物,我们研究了烟草和番茄(茄属植物)对JA和茉莉单基-异亮氨酸(JA-Ile)的远侧运输,以应对叶片受伤。我们恢复了[ 2 H 2 -2] JA([ 2 H 2 ] JA)和[ 2 H 3 -12] JA–Ile([ 2 H 3 ] JA–Ile) 。[tasumum and lycopersicum]用[ 2 H 2 ] JA或[ 2 H 3 ] JA–Ile。我们发现,尽管JA–Ile的极性较低,但其迁移率却比JA高,并且将外源JA–Ile应用于烟草的伤叶与受伤相比,在远端叶片中JA和JA–Ile的积累更高。控制植物。我们还发现,受损小叶的番茄链球菌渗出液中的JA和JA-Ile含量高于未受损植物,并且在受伤后30分钟观察到JA-Ile含量存在显着差异。根据这些结果,发现JA–Ile是一种可运输的化合物,这表明JA–Ile是涉及植物对生物和非生物胁迫的抗性的信号提示。

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