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Characterization and analysis of an industrial strain of Streptomyces bingchenggensis by genome sequencing and gene microarray

机译:利用基因组测序和基因芯片对冰城链霉菌工业菌株进行鉴定和分析

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摘要

Streptomyces bingchenggensis is a soil bacterium that produces milbemycins, a family of macrolide antibiotics that are commercially important in crop protection and veterinary medicine. In addition, S. bingchenggensis produces many other natural products including the polyether nanchangmycin and novel cyclic pentapeptides. To identify the gene clusters involved in the biosynthesis of these compounds, and better clarify the biochemical pathways of these gene clusters, the whole genome of S. bingchenggensis was sequenced, and the transcriptome profile was subsequently investigated by microarray. In comparison with other sequenced genomes in Streptomyces, S. bingchenggensis has the largest linear chromosome consisting of 11 936 683 base pairs (bp), with an average GC content of 70.8%. The 10 023 predicted protein-coding sequences include at least 47 gene clusters correlated with the biosynthesis of known or predicted secondary metabolites. Transcriptional analysis demonstrated an extremely high expression level of the milbemycin gene cluster during the entire growth period and a moderately high expression level of the nanchangmycin gene cluster during the initial hours that subsequently decreased. However, other gene clusters appear to be silent. The genome-wide analysis of the secondary metabolite gene clusters in S. bingchenggensis, coupled with transcriptional analysis, will facilitate the rational development of high milbemycins-producing strains as well as the discovery of new natural products.
机译:bingchenggensis链霉菌是一种土壤细菌,可产生milbemycins,milbemycins是一种大环内酯类抗生素,在作物保护和兽医学上具有重要的商业意义。此外,冰城葡萄球菌还生产许多其他天然产物,包括聚醚南昌霉素和新型环状五肽。为了鉴定参与这些化合物生物合成的基因簇,并更好地阐明这些基因簇的生化途径,对冰城链球菌的全基因组进行了测序,然后通过微阵列研究了转录组概况。与链霉菌中的其他测序基因组相比,冰城葡萄球菌具有最大的线性染色体,由11 936 683个碱基对(bp)组成,平均GC含量为70.8%。 10 023个预测的蛋白质编码序列包括至少47个与已知或预测的次级代谢产物的生物合成相关的基因簇。转录分析表明,米尔贝霉素基因簇在整个生长期中的表达水平极高,而南昌霉素基因簇在最初的几个小时内呈中等程度的表达水平,随后逐渐下降。但是,其他基因簇似乎是沉默的。对冰城链球菌次生代谢产物基因簇进行全基因组分析,再加上转录分析,将有助于合理生产高米尔倍霉素的菌株,并发现新的天然产物。

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