Henan Engineering Laboratory for Bioconversion Technology of Functional Microbes, College of Life Sciences, Henan Normal University, Xinxiang, 453007, China.
Department of Biological Sciences, Xi'an Jiaotong-Liverpool University, Suzhou, 215123, Jiangsu, China.
Arch Microbiol. 2021 Dec 21;204(1):41. doi: 10.1007/s00203-021-02647-2.
Chlorella vulgaris is a biomass energy provider with promising potential to help alleviate the energy crisis. Streptomyces sp. hsn06, as an actinomycete, can harvest C. vulgaris biomass safely and efficiently through flocculation activity, and proteins contribute greatly to the flocculation effect. However, potential flocculation protein-related genes are unclear. The mycelia of strain hsn06 after culture with glucose as the sole carbon source exhibited significantly higher flocculation activity as well as higher protein contents than those cultured with starch as the carbon source. To further explore the flocculation mechanism, the mycelia of strain hsn06 with distinct flocculation activities after culture with different carbon sources were examined by transcriptome analysis. We found that 403 genes were differentially up-regulated in mycelia cultured with glucose, compared to those cultured with starch as the carbon source. Five significantly differentially expressed protein-related genes were determined and confirmed by qRT-PCR, which indicated that three of the selected genes were potential flocculation-related genes. These results advance our understanding of potential flocculation-related genes during the harvesting of microalgal biomass.
小球藻是一种生物质能源提供者,具有缓解能源危机的巨大潜力。HSN06 号链霉菌作为一种放线菌,通过絮凝活性可以安全有效地收获小球藻生物质,而蛋白质对絮凝效果贡献巨大。然而,潜在的絮凝蛋白相关基因尚不清楚。以葡萄糖为唯一碳源培养的菌株 hsn06 的菌丝体表现出比以淀粉为碳源培养的菌丝体更高的絮凝活性和更高的蛋白质含量。为了进一步探索絮凝机制,我们对以不同碳源培养后具有明显絮凝活性的菌株 hsn06 的菌丝体进行了转录组分析。结果发现,与以淀粉为碳源培养的菌丝体相比,以葡萄糖为碳源培养的菌丝体中有 403 个基因差异上调。通过 qRT-PCR 确定并验证了 5 个差异表达的蛋白相关基因,表明所选的 3 个基因是潜在的絮凝相关基因。这些结果有助于我们了解在微藻生物质收获过程中潜在的絮凝相关基因。