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香茶菜中龙脑脱氢酶的全基因组鉴定和功能特征分析。

Genome-wide identification and functional characterization of borneol dehydrogenases in Wurfbainia villosa.

机构信息

School of Pharmaceutical Science, Guangzhou University of Chinese Medicine, Guangzhou, 510006, People's Republic of China.

Key Laboratory of Chinese Medicinal Resource from Lingnan (Ministry of Education), Guangzhou University of Chinese Medicine, Guangzhou, 510006, People's Republic of China.

出版信息

Planta. 2023 Aug 22;258(4):69. doi: 10.1007/s00425-023-04221-0.

Abstract

Genome-wide screening of short-chain dehydrogenases/reductases (SDR) family reveals functional diversification of borneol dehydrogenase (BDH) in Wurfbainia villosa. Wurfbainia villosa is an important medicinal plant, the fruits of which accumulate abundant terpenoids, especially bornane-type including borneol and camphor. The borneol dehydrogenase (BDH) responsible for the conversion of borneol to camphor in W. villosa remains unknown. BDH is one member of short-chain dehydrogenases/reductases (SDR) family. Here, a total of 115 classical WvSDR genes were identified through genome-wide screening. These WvSDRs were unevenly distributed on different chromosomes. Seven candidate WvBDHs based on phylogenetic analysis and expression levels were selected for cloning. Of them, four BDHs can catalyze different configurations of borneol and other monoterpene alcohol substrates to generate the corresponding oxidized products. WvBDH1 and WvBDH2, preferred (+)-borneol to (-)-borneol, producing the predominant ( +)-camphor. WvBDH3 yielded approximate equivalent amount of (+)-camphor and (-)-camphor, in contrast, WvBDH4 generated exclusively (+)-camphor. The metabolic profiles of the seeds showed that the borneol and camphor present were in the dextrorotatory configuration. Enzyme kinetics and expression pattern in different tissues suggested WvBDH2 might be involved in the biosynthesis of camphor in W. villosa. All results will increase the understanding of functional diversity of BDHs.

摘要

通过全基因组筛选发现短链脱氢酶/还原酶(SDR)家族中的广泛存在,揭示了黄杨叶九里香中龙脑脱氢酶(BDH)的功能多样化。黄杨叶九里香是一种重要的药用植物,其果实中积累了丰富的萜类化合物,特别是莰烷型包括龙脑和樟脑。负责将龙脑转化为黄杨叶九里香中樟脑的龙脑脱氢酶(BDH)尚不清楚。BDH 是短链脱氢酶/还原酶(SDR)家族的一员。在这里,通过全基因组筛选共鉴定出 115 个经典的 WvSDR 基因。这些 WvSDR 不均匀地分布在不同的染色体上。基于系统发育分析和表达水平选择了 7 个候选 WvBDH 进行克隆。其中,4 个 BDH 可以催化不同构型的龙脑和其他单萜醇底物生成相应的氧化产物。WvBDH1 和 WvBDH2 优先(+)-龙脑对(-)-龙脑,生成主要的(+)-樟脑。WvBDH3 生成(+)-樟脑和(-)-樟脑的量大致相等,而 WvBDH4 则仅生成(+)-樟脑。种子的代谢谱表明存在的龙脑和樟脑均为右旋构型。不同组织中的酶动力学和表达模式表明,WvBDH2 可能参与了黄杨叶九里香中樟脑的生物合成。所有结果将增加对 BDH 功能多样性的理解。

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