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Hydroperoxides of fatty acids induce programmed cell death in tomato protoplasts

机译:脂肪酸的氢过氧化物诱导番茄原生质体中程序性细胞死亡

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摘要

Arachidonic acid (AA) is a fatty acid elicitor abundant in the glycerolipids of the late blight pathogen Phytophthora infestans and related Oomycete species. Lipoxygenases (LOX), which catalyze the addition of molecular oxygen to the 1 or 5 position of a cis, cis-1,4+Z,Z-pentadiene system in polyunsaturated fatty acids, is induced in host plants such as tomato and potato during infection by P. infestans. Here it is reported that AA, the LOX metabolites of AA, 5- and 15-hydroperoxyeicosatetraenioc acid (5- and 15-HpETE), and the LOX metabolite of linoleic acid, 9-hydroperoxyoctadecadienoic acid (9-HpODE), are potent inducers of programmed cell death (PCD) in tomato protoplasts. 5- and 15-HpETE increased DNA fragmentation as detected by terminal deoxynucleotidyl transferase-mediated dUTP-X nick end labeling (TUNEL) and increased DNA laddering as visualized by ligation-mediated PCR. Background levels of DNA laddering were decreased in intensity by Zn2+ and increased by Ca2+, effects that are consistent with the reported action of these cations on PCD-associated endonucleases in other systems, H2O2 methyl jasmonate, and linoleic and linolenic acids were not toxic to tomato protoplasts at concentrations up to 350 muM, and lipid peroxides (LD100 = 80 muM) were far more potent inducers of death than free AA within this same concentration range. These results indicate the potential of fatty acid peroxides and LOX-related metabolism to engage an apoptotic type of PCD in higher plant cells.
机译:花生四烯酸(AA)是一种晚疫病病原菌疫霉和相关卵菌种的甘油脂中丰富的脂肪酸引发剂。脂氧合酶(LOX)可以催化分子氧添加到多不饱和脂肪酸中的顺式,顺式-1,4 + Z,Z-戊二烯系统的1或5位,在番茄和马铃薯等宿主植物中诱导P. infestans感染。据报道,AA,AA的LOX代谢产物,5-和15-氢过氧二十二碳四烯酸(5-和15-HpETE)和亚油酸的LOX代谢物,9-氢过氧十八碳二烯酸(9-HpODE)是有效的诱导剂。番茄原生质体中程序性细胞死亡(PCD)的变化。如通过末端脱氧核苷酸转移酶介导的dUTP-X缺口末端标记(TUNEL)检测到的,5-和15-HpETE的DNA片段增加,而通过连接介导的PCR可见,DNA的梯形增加。 DNA梯级化的背景水平在Zn2 +的作用下降低了强度,在Ca2 +的作用下增加了,其作用与这些阳离子对其他系统中PCD相关的核酸内切酶,H2O2茉莉酸甲酯和亚油酸和亚麻酸的毒性作用一致。在相同的浓度范围内,原生质体的浓度高达350μM,脂质过氧化物(LD100 = 80μM)比游离AA更有效地导致死亡。这些结果表明,脂肪酸过氧化物和LOX相关的代谢具有参与高等植物细胞中凋亡型PCD的潜力。

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