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低 温 下 野 油菜 黄 单 胞 菌 NPS3121 的 转 录 谱:植 物 病 原 细 菌 的 生 理 学。

Transcriptional profile of P. syringae pv. phaseolicola NPS3121 at low temperature: physiology of phytopathogenic bacteria.

机构信息

Departamento de Ingeniería Genética, CINVESTAV-IPN Unidad Irapuato, Apdo Postal 629, Irapuato, Gto, CP 36821, Mexico.

出版信息

BMC Microbiol. 2013 Apr 12;13:81. doi: 10.1186/1471-2180-13-81.

Abstract

BACKGROUND

Low temperatures play key roles in the development of most plant diseases, mainly because of their influence on the expression of various virulence factors in phytopathogenic bacteria. Thus far, studies regarding this environmental parameter have focused on specific themes and little is known about phytopathogenic bacteria physiology under these conditions. To obtain a global view regarding phytopathogenic bacteria strategies in response to physiologically relevant temperature changes, we used DNA microarray technology to compare the gene expression profile of the model bacterial pathogen P. syringae pv. phaseolicola NPS3121 grown at 18°C and 28°C.

RESULTS

A total of 236 differentially regulated genes were identified, of which 133 were up-regulated and 103 were down-regulated at 18°C compared to 28°C. The majority of these genes are involved in pathogenicity and virulence processes. In general, the results of this study suggest that the expression profile obtained may be related to the fact that low temperatures induce oxidative stress in bacterial cells, which in turn influences the expression of iron metabolism genes. The expression also appears to be correlated with the profile expression obtained in genes related to motility, biofilm production, and the type III secretion system.

CONCLUSIONS

From the data obtained in this study, we can begin to understand the strategies used by this phytopathogen during low temperature growth, which can occur in host interactions and disease development.

摘要

背景

低温在大多数植物病害的发展中起着关键作用,主要是因为它们影响植物病原菌中各种毒力因子的表达。到目前为止,关于这一环境参数的研究主要集中在特定主题上,而对植物病原菌在这些条件下的生理学知之甚少。为了全面了解植物病原菌对生理相关温度变化的策略,我们使用 DNA 微阵列技术比较了模式细菌病原体 P. syringae pv. phaseolicola NPS3121 在 18°C 和 28°C 下的基因表达谱。

结果

共鉴定出 236 个差异调节基因,其中 133 个在 18°C 时上调,103 个在 18°C 时下调与 28°C 相比。这些基因大多数参与致病性和毒力过程。总的来说,这项研究的结果表明,获得的表达谱可能与低温诱导细菌细胞氧化应激这一事实有关,这反过来又影响铁代谢基因的表达。这种表达似乎也与与运动性、生物膜产生和 III 型分泌系统相关的基因的表达谱有关。

结论

从本研究获得的数据中,我们可以开始了解这种植物病原菌在低温生长过程中使用的策略,这种策略可能发生在宿主相互作用和疾病发展过程中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8d9/3639832/de09808d9c40/1471-2180-13-81-1.jpg

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