Pessoa Daniella Duarte Villarinho, Dos-Santos Carlos Magno, Vidal Marcia Soares, Baldani José Ivo, Tadra-Sfeir Michelle Zibetti, de Souza Emanuel Maltempi, Simoes-Araujo Jean Luis
Programa de Pós-Graduação em Biotecnologia Vegetal, Centro de Ciências da Saúde, UFRJ, Rio de Janeiro, RJ 21941-590 Brazil.
Laboratório de Genética e Bioquímica, Embrapa Agrobiologia, Seropédica, RJ 23890-000 Brazil.
3 Biotech. 2021 Jun;11(6):292. doi: 10.1007/s13205-021-02848-y. Epub 2021 May 24.
Bacterial transcriptome profiling in the presence of plant fluids or extracts during microbial growth may provide relevant information on plant-bacteria interactions. Here, RNA sequencing (RNA-Seq) was used to determine the transcriptomic profile of strain HRC54 at the early stages of response to sugarcane apoplastic fluid. Differentially expressed gene (DEG) analysis was performed using the DESeq2 and edgeR packages, followed by functional annotation using Blast2GO and gene ontology enrichment analysis using the COG and KEGG databases. After 2 h of sugarcane apoplastic fluid addition to the HRC54 culture, respectively, 44 and 45 genes were upregulated and downregulated. These genes were enriched in bacterial metabolism (e.g., oxidoreductase and transferase), ABC transporters, motility, secretion systems, and signal transduction. RNA-Seq expression profiles of 12 genes identified in data analyses were verified by RT-qPCR. The results suggested that HRC54 recognized sugarcane apoplastic fluid as the host signal, and some DEGs were closely involved at the early stages of the establishment of plant-bacteria interactions.
The online version contains supplementary material available at 10.1007/s13205-021-02848-y.
在微生物生长过程中,在植物汁液或提取物存在的情况下进行细菌转录组分析,可能会提供有关植物与细菌相互作用的相关信息。在这里,RNA测序(RNA-Seq)被用于确定菌株HRC54在对甘蔗质外体汁液反应早期的转录组概况。使用DESeq2和edgeR软件包进行差异表达基因(DEG)分析,随后使用Blast2GO进行功能注释,并使用COG和KEGG数据库进行基因本体富集分析。在向HRC54培养物中添加甘蔗质外体汁液2小时后,分别有44个和45个基因上调和下调。这些基因富集于细菌代谢(如氧化还原酶和转移酶)、ABC转运蛋白、运动性、分泌系统和信号转导。数据分析中鉴定出的12个基因的RNA-Seq表达谱通过RT-qPCR进行了验证。结果表明,HRC54将甘蔗质外体汁液识别为宿主信号,并且一些差异表达基因在植物与细菌相互作用建立的早期密切相关。
在线版本包含可在10.1007/s13205-021-02848-y获取的补充材料。