College of Life Sciences, Henan Agricultural University, Zhengzhou, People's Republic of China.
PLoS One. 2013 Apr 24;8(4):e61693. doi: 10.1371/journal.pone.0061693. Print 2013.
Mushroom β-glucans are potent immunological stimulators in medicine, but their productivities are very low. In this study, we successfully improved its production by promoter engineering in Pleurotus ostreatus. The promoter for β-1,3-glucan synthase gene (GLS) was replaced by the promoter of glyceraldehyde-3-phosphate dehydrogenase gene of Aspergillus nidulans. The homologous recombination fragment for swapping GLS promoter comprised five segments, which were fused by two rounds of combined touchdown PCR and overlap extension PCR (TD-OE PCR), and was introduced into P. ostreatus through PEG/CaCl2-mediated protoplast transformation. The transformants exhibited one to three fold higher transcription of GLS gene and produced 32% to 131% higher yield of β-glucans than the wild type. The polysaccharide yields had a significant positive correlation to the GLS gene expression. The infrared spectra of the polysaccharides all displayed the typical absorption peaks of β-glucans. This is the first report of successful swapping of promoters in filamentous fungi.
蘑菇β-葡聚糖是医学中有效的免疫刺激剂,但它们的产量非常低。在这项研究中,我们通过对糙皮侧耳(Pleurotus ostreatus)的启动子工程成功提高了其产量。β-1,3-葡聚糖合酶基因(GLS)的启动子被构巢曲霉(Aspergillus nidulans)的甘油醛-3-磷酸脱氢酶基因的启动子所取代。用于交换 GLS 启动子的同源重组片段由五个片段组成,通过两轮组合的降落 PCR 和重叠延伸 PCR(TD-OE PCR)融合,并通过 PEG/CaCl2 介导的原生质体转化引入糙皮侧耳。转化子的 GLS 基因转录水平提高了 1 到 3 倍,β-葡聚糖的产量比野生型提高了 32%到 131%。多糖产量与 GLS 基因表达呈显著正相关。多糖的红外光谱均显示出β-葡聚糖的典型吸收峰。这是首次成功交换丝状真菌启动子的报道。