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Transcriptional and Antagonistic Responses of Biocontrol Strain Lysobacter enzymogenes OH11 to the Plant Pathogenic Oomycete Pythium aphanidermatum

机译:生物防治菌株溶菌酶基因OH11对植物病原性卵菌腐霉腐霉的转录和拮抗反应。

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摘要

Lysobacter enzymogenes is a ubiquitous, beneficial, plant-associated bacterium emerging as a novel biological control agent. It has the potential to become a new source of antimicrobial secondary metabolites such as the Heat-Stable Antifungal Factor (HSAF), which is a broad-spectrum antimycotic with a novel mode of action. However, very little information about how L. enzymogenes detects and responds to fungi or oomycetes has been reported. An in vitro confrontation bioassay between the pathogenic oomycete Pythium aphanidermatum and the biocontrol bacterial strain L. enzymogenes OH11 was used to analyze the transcriptional changes in the bacteria that were induced by the oomycetes. Analysis was performed at three time points of the interaction, starting before inhibition zone formation until inhibition zone formation. A L. enzymogenes OH11 DNA microarray was constructed for the analysis. Microarray analysis indicated that a wide range of genes belonging to 14 diverse functions in L. enzymogenes were affected by P. aphanidermatum as critical antagonistic effects occurred. L. enzymogenes detected and responded to the presence of P. aphanidermatum early, but alteration of gene expression typically occurred after inhibition zone formation. The presence of P. aphanidermatum increased the twitching motility and HSAF production in L. enzymogenes. We also performed a contact interaction between L. enzymogenes and P. aphanidermatum, and found that HSAF played a critical role in the interaction. Our experiments demonstrated that L. enzymogenes displayed transcriptional and antagonistic responses to P. aphanidermatum in order to gain advantages in the competition with this oomycete. This study revealed new insights into the interactions between bacteria and oomycete.
机译:溶菌酶基因是一种普遍存在的,有益的,与植物相关的细菌,是一种新型的生物防治剂。它有可能成为抗微生物次级代谢产物的新来源,例如热稳定抗真菌因子(HSAF),它是一种具有新颖作用方式的广谱抗真菌药。然而,关于乳杆菌的酶基因如何检测和响应真菌或卵菌的信息很少。致病性卵菌腐霉腐霉与生防菌菌株酶促产酶乳酸菌OH11之间的体外对抗生物测定用于分析卵菌诱导的细菌转录变化。在相互作用的三个时间点进行分析,从抑制区形成之前开始直至抑制区形成。构建了L.酶基因OH11 DNA微阵列用于分析。基因芯片分析表明,随着关键的拮抗作用的发生,P。aphanidermatum影响了L.酶基因中14种不同功能的广泛基因。 L.酶基因早期发现并响应了P.aphanidermatum的存在,但是基因表达的改变通常在抑制区形成后发生。瓜果假单胞菌的存在增加了L.酶基因的抽动运动和HSAF产生。我们还进行了L.酶基因和P. aphanidermatum之间的接触相互作用,发现HSAF在相互作用中起关键作用。我们的实验表明,L。酶基因显示了对P. aphanidermatum的转录和拮抗反应,以便在与这种卵菌的竞争中获得优势。这项研究揭示了细菌和卵菌之间相互作用的新见解。

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