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铜绿假单胞菌脂多糖中的独特碳水化合物和脂质分子模式有助于拟南芥防御相关的差异基因表达。

Distinct carbohydrate and lipid-based molecular patterns within lipopolysaccharides from Burkholderia cepacia contribute to defense-associated differential gene expression in Arabidopsis thaliana.

机构信息

Department of Biochemistry, University of Johannesburg, Johannesburg, South Africa.

出版信息

Innate Immun. 2012 Feb;18(1):140-54. doi: 10.1177/1753425910392609. Epub 2011 Jul 6.

DOI:10.1177/1753425910392609
PMID:21733976
Abstract

Lipopolysaccharides are structural components within the cell walls of Gram-negative bacteria. The LPSs as microbe-associated molecular pattern (MAMP) molecules can trigger defense-related responses involved in MAMP-triggered immunity and basal resistance in plants, presumably from an initial perception event. LPS from Burkholderia cepacia as well as two fragments, the glycolipid, lipid A and the polysaccharide (OPS-core) chain, were used to treat Arabidopsis thaliana seedlings to evaluate the eliciting activities of the individual LPS sub-domains by means of Annealing Control Primer-based Differential Display transcript profiling. Genes found to be up-regulated encode for proteins involved in signal perception and transduction, transcriptional regulation and defense - and stress responses. Furthermore, genes encoding proteins involved in chaperoning, secretion, protein-protein interactions and protein degradation were differentially expressed. It is concluded that intact LPS, as well as the two sub-components, induced the expression of a broad range of genes associated with perception and defense as well as metabolic reprogramming of cellular activities in support of immunity and basal resistance. Whilst the lipid A and OPS moieties were able to up-regulate sub-sets of defense-associated genes over the same spectrum of categories as intact LPS, the up-regulation observed with intact LPS was the more comprehensive, suggesting that the lipid A and glycan molecular patterns of the molecule act as partial agonists, but that the intact LPS structure is required for full agonist activity.

摘要

脂多糖是革兰氏阴性细菌细胞壁的结构成分。LPS 作为微生物相关分子模式 (MAMP) 分子,可以触发与植物的 MAMP 触发免疫和基础抗性相关的防御反应,推测是从初始感知事件开始的。使用伯克霍尔德氏菌脂多糖以及两种片段,即糖脂、脂 A 和多糖 (OPS-核心) 链,处理拟南芥幼苗,通过退火控制引物差异显示转录谱分析评估单个 LPS 亚结构域的激发活性。发现上调的基因编码参与信号感知和转导、转录调控以及防御和应激反应的蛋白质。此外,参与伴侣蛋白、分泌、蛋白-蛋白相互作用和蛋白降解的基因也表现出差异表达。结论是,完整的 LPS 以及这两个亚成分,诱导了与感知和防御以及细胞活动代谢重编程相关的广泛基因的表达,以支持免疫和基础抗性。虽然脂 A 和 OPS 部分能够上调与完整 LPS 相同谱类别的防御相关基因,但完整 LPS 观察到的上调更为全面,表明该分子的脂 A 和聚糖分子模式作为部分激动剂起作用,但完整 LPS 结构是完全激动剂活性所必需的。

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