Division of Microbiology, ICAR-Indian Agricultural Research Institute, New Delhi, India.
Division of Microbiology, ICAR-Indian Agricultural Research Institute, New Delhi, India.
Microbiol Res. 2019 Oct;227:126292. doi: 10.1016/j.micres.2019.06.002. Epub 2019 Jun 17.
Azotobacter chroococcum (Az) and Trichoderma viride (Tv) represent agriculturally important and beneficial plant growth promoting options which contribute towards nutrient management and biocontrol, respectively. When Az and Tv are co-cultured, they form a biofilm, which has proved promising as an inoculant in several crops; however, the basic aspects related to regulation of biofilm formation were not investigated. Therefore, whole transcriptome sequencing (Illumina NextSeq500) and gene expression analyses were undertaken, related to biofilm formation vis a vis Tv and Az growing individually. Significant changes in the transcriptome profiles of biofilm were recorded and validated through qPCR analyses. In-depth evaluation also identified several genes (phoA, phoB, glgP, alg8, sipW, purB, pssA, fadD) specifically involved in biofilm formation in Az, Tv and Tv-Az. Genes coding for RNA-dependent RNA polymerase, ABC transporters, translation elongation factor EF-1, molecular chaperones and double homeobox 4 were either up-regulated or down-regulated during biofilm formation. To our knowledge, this is the first report on the modulation of gene expression in an agriculturally beneficial association, as a biofilm. Our results provide insights into the regulatory factors involved during biofilm formation, which can help to improve the beneficial effects and develop more effective and promising plant- microbe associations.
节杆菌(Az)和绿色木霉(Tv)是农业上重要且有益的植物促生选项,分别有助于养分管理和生物防治。当 Az 和 Tv 共培养时,它们会形成生物膜,这已被证明是几种作物中一种有前途的接种剂;然而,关于生物膜形成的调节的基本方面尚未得到研究。因此,进行了全转录组测序(Illumina NextSeq500)和基因表达分析,以研究与 Tv 和 Az 单独生长相比生物膜形成的情况。记录了生物膜转录组图谱的显著变化,并通过 qPCR 分析进行了验证。深入评估还确定了几个基因(phoA、phoB、glgP、alg8、sipW、purB、pssA、fadD)在 Az、Tv 和 Tv-Az 中特异性参与生物膜形成。在生物膜形成过程中,编码 RNA 依赖性 RNA 聚合酶、ABC 转运蛋白、翻译延伸因子 EF-1、分子伴侣和双同源盒 4 的基因要么上调,要么下调。据我们所知,这是首次报道农业有益相关物作为生物膜的基因表达调控。我们的研究结果提供了对生物膜形成过程中涉及的调节因子的深入了解,这有助于提高有益效果并开发更有效和有前途的植物-微生物关联。