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商业重要海参糙海参体壁中皂苷生物合成途径的证据。

Evidence for a Saponin Biosynthesis Pathway in the Body Wall of the Commercially Significant Sea Cucumber Holothuria scabra.

机构信息

Genecology Research Center, Faculty of Science, Health, Engineering and Education, University of the Sunshine Coast, Maroochydore DC 4558, Queensland, Australia.

CSIRO Agriculture and Food, St Lucia, Brisbane 4067, Queensland, Australia.

出版信息

Mar Drugs. 2017 Nov 7;15(11):349. doi: 10.3390/md15110349.

Abstract

The sea cucumber (phylum Echinodermata) body wall is the first line of defense and is well known for its production of secondary metabolites; including vitamins and triterpenoid glycoside saponins that have important ecological functions and potential benefits to human health. The genes involved in the various biosynthetic pathways are unknown. To gain insight into these pathways in an echinoderm, we performed a comparative transcriptome analysis and functional annotation of the body wall and the radial nerve of the sea cucumber ; to define genes associated with body wall metabolic functioning and secondary metabolite biosynthesis. We show that genes related to signal transduction mechanisms were more highly represented in the body wall, including genes encoding enzymes involved in energy production. Eight of the core triterpenoid biosynthesis enzymes were found, however, the identity of the saponin specific biosynthetic pathway enzymes remains unknown. We confirm the body wall release of at least three different triterpenoid saponins using solid phase extraction followed by ultra-high-pressure liquid chromatography-quadrupole time of flight-mass spectrometry. The resource we have established will help to guide future research to explore secondary metabolite biosynthesis in the sea cucumber.

摘要

海参(棘皮动物门)的体壁是第一道防线,以产生具有重要生态功能和对人类健康潜在益处的次生代谢产物而闻名,包括维生素和三萜糖苷皂苷。参与各种生物合成途径的基因尚不清楚。为了深入了解棘皮动物的这些途径,我们对海参的体壁和放射神经进行了比较转录组分析和功能注释,以确定与体壁代谢功能和次生代谢物生物合成相关的基因。我们表明,与信号转导机制相关的基因在体壁中表达更为丰富,包括编码参与能量产生的酶的基因。发现了 8 种核心三萜类生物合成酶,但皂苷特定生物合成途径酶的身份仍不清楚。我们通过固相萃取和超高压液相色谱-四极杆飞行时间质谱联用证实了至少三种不同的三萜皂苷从体壁释放。我们建立的资源将有助于指导未来的研究,以探索海参中的次生代谢物生物合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7440/5706039/89336639bc6c/marinedrugs-15-00349-g001.jpg

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