National Key Laboratory for Tropical Crop Breeding/Ministry of Agriculture Key Laboratory of Biology and Genetic Resources of Rubber Tree/State Key Laboratory Breeding Base of Cultivation and Physiology for Tropical Crops, Rubber Research Institute, Chinese Academy of Tropical Agricultural Sciences, Haikou, 571101, Hainan, China.
Department of Urology, Zhongnan Hospital of Wuhan University, School of Pharmaceutical Sciences, Wuhan University, Wuhan, 430071, Hubei, China.
New Phytol. 2024 Jan;241(2):779-792. doi: 10.1111/nph.19375. Epub 2023 Nov 7.
(+)-Nootkatone is a natural sesquiterpene ketone widely used in food, cosmetics, pharmaceuticals, and agriculture. It is also regarded as one of the most valuable terpenes used commercially. However, plants contain trace amounts of (+)-nootkatone, and extraction from plants is insufficient to meet market demand. Alpinia oxyphylla is a well-known medicinal plant in China, and (+)-nootkatone is one of the main components within the fruits. By transcriptome mining and functional screening using a precursor-providing yeast chassis, the complete (+)-nootkatone biosynthetic pathway in Alpinia oxyphylla was identified. A (+)-valencene synthase (AoVS) was identified as a novel monocot-derived valencene synthase; three (+)-valencene oxidases AoCYP6 (CYP71BB2), AoCYP9 (CYP71CX8), and AoCYP18 (CYP701A170) were identified by constructing a valencene-providing yeast strain. With further characterisation of a cytochrome P450 reductase (AoCPR1) and three dehydrogenases (AoSDR1/2/3), we successfully reconstructed the (+)-nootkatone biosynthetic pathway in Saccharomyces cerevisiae, representing a basis for its biotechnological production. Identifying the biosynthetic pathway of (+)-nootkatone in A. oxyphylla unravelled the molecular mechanism underlying its formation in planta and also supported the bioengineering production of (+)-nootkatone. The highly efficient yeast chassis screening method could be used to elucidate the complete biosynthetic pathway of other valuable plant natural products in future.
(+)-诺卡酮是一种广泛应用于食品、化妆品、制药和农业领域的天然倍半萜酮。它也被认为是商业上使用价值最高的萜烯之一。然而,植物中(+)-诺卡酮的含量很少,从植物中提取的量不足以满足市场需求。益智是中国著名的药用植物,(+)-诺卡酮是其果实中的主要成分之一。通过对益智转录组进行挖掘和利用提供前体的酵母底盘进行功能筛选,确定了益智中(+)-诺卡酮的完整生物合成途径。鉴定出一种(+)-柠檬烯合酶(AoVS),它是一种新型的单子叶植物衍生的柠檬烯合酶;通过构建提供柠檬烯的酵母菌株,鉴定出三种(+)-柠檬烯氧化酶 AoCYP6(CYP71BB2)、AoCYP9(CYP71CX8)和 AoCYP18(CYP701A170)。进一步对细胞色素 P450 还原酶(AoCPR1)和三种脱氢酶(AoSDR1/2/3)进行表征,我们成功地在酿酒酵母中重建了(+)-诺卡酮的生物合成途径,为其生物技术生产奠定了基础。鉴定益智中(+)-诺卡酮的生物合成途径揭示了其在植物体内形成的分子机制,并支持(+)-诺卡酮的生物工程生产。高效的酵母底盘筛选方法可用于阐明其他有价值的植物天然产物的完整生物合成途径。