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Nitric Oxide Production Induced in Roots of Lotus japonicus by Lipopolysaccharide from Mesorhizobium loti

机译:豆s根瘤菌脂多糖诱导的莲Ro根中一氧化氮的产生

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摘要

Lipopolysaccharide (LPS) is a bacterial molecule that induces nitric oxide (NO) production and triggers defense systems in plant–pathogen interactions. NO production is induced in the roots of Lotus japonicus after inoculation of the roots with its microsymbiont Mesorhizobium loti. However, the rhizobial molecule that induces NO production has not yet been identified. We investigated NO production in the roots of L. japonicus by treatment with LPS of M. loti. LPS was prepared by phenol–hot water extraction and separated into several fractions: polysaccharide, lipooligosaccharide, oligosaccharide and lipid A. In the roots of L. japonicus, NO production was observed with an NO-specific fluorescent dye 4, 10 and 24 h after treatment with each fraction of LPS. NO production was detected 4 h after treatment with all fractions. NO production was also detectable 24 h after treatment, except after treatment with the polysaccharide and oligosaccharide fractions. Expression of a class 1 hemoglobin gene and application of an NO scavenger showed that the treatment with LPS and LOS induced a similar response to inoculation with M. loti. These data suggest that LPS of M. loti induces NO production after inoculation with M. loti.
机译:脂多糖(LPS)是一种细菌分子,可诱导一氧化氮(NO)的产生并触发植物与病原体相互作用的防御系统。用其微共生的中生根瘤菌接种根后,未在莲the的根中诱导产生NO。然而,尚未鉴定出诱导NO产生的根瘤菌分子。我们研究了用L. M. loti处理L. japonicus根中是否产生NO。 LPS是通过苯酚-热水萃取制得的,分为几个部分:多糖,脂寡糖,寡糖和脂质A。在日本刺槐的根中,观察到NO特异性荧光染料在第4、10和24小时后会产生NO。用LPS的每一部分进行治疗。用所有级分处理4小时后均未检测到产生。除了用多糖和寡糖级分处理后,在处理后24小时也未检测到NO产生。 1类血红蛋白基因的表达和NO清除剂的应用表明,用LPS和LOS进行处理可对接种洛氏支原体产生相似的反应。这些数据表明,接种洛氏支原体后LPS可引起NO的产生。

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