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本文引用的文献

1
Plant- and microbe-derived compounds affect the expression of genes encoding antifungal compounds in a pseudomonad with biocontrol activity.植物和微生物衍生的化合物影响具有生物防治活性的假单胞菌中编码抗真菌化合物的基因表达。
Appl Environ Microbiol. 2011 Apr;77(8):2807-12. doi: 10.1128/AEM.01760-10. Epub 2011 Feb 25.
2
A LuxR homologue of Xanthomonas oryzae pv. oryzae is required for optimal rice virulence.稻黄单胞菌野油菜致病变种的 LuxR 同源物对于水稻的最佳致病性是必需的。
Mol Plant Pathol. 2007 Jul;8(4):529-38. doi: 10.1111/j.1364-3703.2007.00415.x.
3
Inactivation of the GacA response regulator in Pseudomonas fluorescens Pf-5 has far-reaching transcriptomic consequences.荧光假单胞菌 Pf-5 中 GacA 反应调节子的失活会产生深远的转录组后果。
Environ Microbiol. 2010 Apr;12(4):899-915. doi: 10.1111/j.1462-2920.2009.02134.x. Epub 2010 Jan 18.
4
Genomics of secondary metabolite production by Pseudomonas spp.假单胞菌属次级代谢产物生成的基因组学
Nat Prod Rep. 2009 Nov;26(11):1408-46. doi: 10.1039/b817075b. Epub 2009 Oct 1.
5
Dimerization of the quorum-sensing transcription factor TraR enhances resistance to cytoplasmic proteolysis.群体感应转录因子TraR的二聚化增强了对细胞质蛋白酶解的抗性。
Mol Microbiol. 2009 Jul;73(1):32-42. doi: 10.1111/j.1365-2958.2009.06730.x. Epub 2009 May 11.
6
LuxR-family 'solos': bachelor sensors/regulators of signalling molecules.LuxR 家族“独体”:信号分子的单身传感器/调节因子
Microbiology (Reading). 2009 May;155(Pt 5):1377-1385. doi: 10.1099/mic.0.026849-0. Epub 2009 Apr 21.
7
Orphan LuxR regulators of quorum sensing.群体感应的孤儿LuxR调节因子。
FEMS Microbiol Rev. 2009 Jul;33(4):739-56. doi: 10.1111/j.1574-6976.2009.00163.x. Epub 2009 Apr 15.
8
An orphan LuxR homolog of Sinorhizobium meliloti affects stress adaptation and competition for nodulation.苜蓿中华根瘤菌的一个孤儿LuxR同源物影响胁迫适应和结瘤竞争。
Appl Environ Microbiol. 2009 Feb;75(4):946-55. doi: 10.1128/AEM.01692-08. Epub 2008 Dec 16.
9
OryR is a LuxR-family protein involved in interkingdom signaling between pathogenic Xanthomonas oryzae pv. oryzae and rice.OryR是一种LuxR家族蛋白,参与致病性水稻白叶枯病菌与水稻之间的跨界信号传导。
J Bacteriol. 2009 Feb;191(3):890-7. doi: 10.1128/JB.01507-08. Epub 2008 Nov 21.
10
Host Crop Affects Rhizosphere Colonization and Competitiveness of 2,4-Diacetylphloroglucinol-Producing Pseudomonas fluorescens.生境作物影响 2,4-二乙酰基间苯三酚产生荧光假单胞菌的根际定殖和竞争力。
Phytopathology. 2006 Jul;96(7):751-62. doi: 10.1094/PHYTO-96-0751.

细菌 LuxR 调控子亚家族,对植物化合物作出响应。

Bacterial subfamily of LuxR regulators that respond to plant compounds.

机构信息

Bacteriology Group, International Centre for Genetic Engineering and Biotechnology, Padriciano 99, 34149 Trieste, Italy.

出版信息

Appl Environ Microbiol. 2011 Jul;77(13):4579-88. doi: 10.1128/AEM.00183-11. Epub 2011 Apr 29.

DOI:10.1128/AEM.00183-11
PMID:21531826
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3127701/
Abstract

Pseudomonas fluorescens are rhizobacteria known for their biocontrol properties. Several antimicrobial functions are crucial for this process, and the experiments described here investigate the modulation of their expression during the plant-bacterium interaction. The role of a LuxR family regulator in interkingdom signaling has been investigated using genome-scale transcriptome analysis, gene promoter studies in vivo and in vitro, biocontrol assays, and response to plant compounds. PsoR, a LuxR solo or orphan regulator of P. fluorescens, was identified. PsoR is solubilized and activates a lux-box-containing promoter only in the presence of macerated plants, suggesting the presence of a plant molecule(s) that most likely binds to PsoR. Gene expression profiles revealed that genes involved in the inhibition of plant pathogens were affected by PsoR, including a chitinase gene, iron metabolism genes, and biosynthetic genes of antifungal compounds. 2,4-Diacetylphloroglucinol production is PsoR dependent both in vitro and in vivo. psoR mutants were significantly reduced for their ability to protect wheat plants from root rot, and damping-off caused by Pythium ultimum infection. PsoR most likely senses a molecule(s) in the plant and modulates expression of genes that have a role in biocontrol. PsoR and related proteins form a subfamily of LuxR family regulators in plant-associated bacteria.

摘要

荧光假单胞菌是一种根际细菌,以其生物防治特性而闻名。有几种抗菌功能对这个过程至关重要,这里描述的实验研究了它们在植物-细菌相互作用过程中的表达调控。使用全基因组转录组分析、体内和体外基因启动子研究、生物防治测定以及对植物化合物的反应,研究了 LuxR 家族调节剂在种间信号传递中的作用。鉴定了荧光假单胞菌的 LuxR 家族调节剂 PsoR。PsoR 在植物组织匀浆存在的情况下可溶解并激活含有 lux 框的启动子,这表明存在一种可能与 PsoR 结合的植物分子。基因表达谱显示,参与抑制植物病原体的基因受到 PsoR 的影响,包括几丁质酶基因、铁代谢基因和抗真菌化合物的生物合成基因。2,4-二乙酰基间苯二酚的产生既依赖于 PsoR 体外也依赖于体内。psoR 突变体在保护小麦植物免受根腐病和由终极腐霉引起的猝倒病方面的能力显著降低。PsoR 很可能感知植物中的一种或多种分子,并调节生物防治相关基因的表达。PsoR 和相关蛋白在与植物相关的细菌中形成 LuxR 家族调节剂的一个亚家族。