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脂多糖诱导的引发增强了在受到……挑战的珍珠粟中一氧化氮介导的防御反应激活。 (原文中“challenged with”后面缺少具体内容)

Lipopolysaccharide-induced priming enhances NO-mediated activation of defense responses in pearl millet challenged with .

作者信息

Lavanya S N, Udayashankar A C, Raj S Niranjan, Mohan Chakrabhavi Dhananjaya, Gupta V K, Tarasatyavati C, Srivastava R, Nayaka S Chandra

机构信息

1Department of Studies in Biotechnology, University of Mysore, Manasagangotri, Mysore, 570006 India.

2Department of Studies in Microbiology, Karnataka State Open University, Mukthagangotri, Mysore, 570006 India.

出版信息

3 Biotech. 2018 Nov;8(11):475. doi: 10.1007/s13205-018-1501-y. Epub 2018 Nov 10.

Abstract

Lipopolysaccharide (LPS) elicitors isolated from UOM SAR 14 effectively induced systemic and durable resistance against pearl millet downy mildew disease caused by the oomycete . Rapid and increased callose deposition and HO accumulation were evidenced in downy mildew susceptible seeds pre-treated with LPS (SLPS) in comparison with the control seedlings, which also correlated with expression of various other defense responses. Biochemical analysis of enzymes and quantitative real-time polymerase chain reaction data suggested that LPS protects pearl millet against downy mildew through the activation of plant defense mechanisms such as generation of nitric oxide (NO), increased expression, and activities of defense enzymes and proteins. Elevation of NO concentrations was shown to be essential for LPS-mediated defense manifestation in pearl millet and had an impact on the other downstream defense responses like enhanced activation of enzymes and pathogen-related (PR) proteins. Temporal expression analysis of defense enzymes and PR-proteins in SLPS seedlings challenged with the downy mildew pathogen revealed that the activity and expression of peroxidase, phenylalanine ammonia lyase, and the PR-proteins (PR-1 and PR-5) were significantly enhanced compared to untreated control. Higher gene expression and protein activities of hydroxyproline-rich glycoproteins (HRGPs) were observed in SLPS seedlings which were similar to that of the resistant check. Collectively, our results suggest that, in pearl millet-downy mildew interaction, LPS pre-treatment affects defense signaling through the central regulator NO which triggers the activities of PAL, POX, PR-1, PR-5, and HRGPs.

摘要

从UOM SAR 14中分离出的脂多糖(LPS)激发子能有效诱导对由卵菌引起的珍珠粟霜霉病的系统和持久抗性。与对照幼苗相比,用LPS预处理的霜霉病易感种子(SLPS)中观察到胼胝质沉积迅速增加以及H2O2积累,这也与各种其他防御反应的表达相关。对酶的生化分析和定量实时聚合酶链反应数据表明,LPS通过激活植物防御机制(如一氧化氮(NO)的产生、防御酶和蛋白质的表达及活性增加)来保护珍珠粟免受霜霉病侵害。NO浓度的升高被证明对珍珠粟中LPS介导的防御表现至关重要,并对其他下游防御反应(如酶和病程相关(PR)蛋白的激活增强)产生影响。对受霜霉病病原菌攻击的SLPS幼苗中防御酶和PR蛋白的时间表达分析表明,与未处理的对照相比,过氧化物酶、苯丙氨酸解氨酶和PR蛋白(PR - 1和PR - 5)的活性和表达显著增强。在SLPS幼苗中观察到富含羟脯氨酸糖蛋白(HRGP)的基因表达和蛋白活性较高,这与抗性对照相似。总体而言,我们的结果表明,在珍珠粟 - 霜霉病相互作用中,LPS预处理通过中央调节因子NO影响防御信号传导,NO触发PAL、POX、PR - 1、PR - 5和HRGP的活性。

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