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美发现来源于海洋双鞭甲藻的聚酮化合物合酶基因
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《生物技术通报》 CAS CSCD 2005年第4期80-80,共1页
Marine Biotechnology 2003年5卷1期1~12页报道:基因组水平上聚酮化合物(多聚乙酰)生物合成途径操作技术的快速发展,为建立其新的生物合成途径提供了基础。
关键词 海洋生物 双鞭甲藻 聚酮化合物合酶基因 美国 生物
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A PKS gene, pks-1, is involved in chaetoglobosin biosynthesis, pigmentation and sporulation in Chaetomium globosum 被引量:7
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作者 HU Yang HAO XiaoRan LOU Jing ZHANG Ping PAN Jiao ZHU XuDong 《Science China(Life Sciences)》 SCIE CAS 2012年第12期1100-1108,共9页
Chaetomium globosum is one of the most common fungi in nature. It is best known for producing chaetoglobosins; however, the molecular basis of chaetoglobosin biosynthesis is poorly understood in this fungus. In this s... Chaetomium globosum is one of the most common fungi in nature. It is best known for producing chaetoglobosins; however, the molecular basis of chaetoglobosin biosynthesis is poorly understood in this fungus. In this study, we utilized RNA inter- ference (RNAi) to characterize a polyketide synthase gene, pks-1, in C. globosum that is involved in the production of chaeto- globosin A. When pks-1 was knocked down by RNAi, the production of chaetoglobosin A dramatically decreased. Knock-down mutants also displayed a pigment-deficient phenotype. These results suggest that the two polyketides, melanin and chaetoglobosin, are likely to share common biosynthetic steps. Most importantly, we found that pks-I also plays a critical role in sporulation. The silenced mutants ofpks-1 lost the ability to produce spores. We propose that polyketides may modulate cellular development via an unidentified action. We also suggest that C. globosum pks-1 is unique because of its triple role in melanin formation, chaetoglobosin biosynthesis and sporulation. This work may shed light on chaetoglobosin biosynthesis and indicates a relationship between secondary metabolism and fungal morphogenesis. 展开更多
关键词 polyketide synthase (PKS) MELANIN chaetoglobosin A Chaetomium globosum
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