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马铃薯(Solanum tuberosum)对香豆酰奎尼酸/莽草酸3'-羟化酶的克隆及功能特性分析

Cloning and functional characterization of a p-coumaroyl quinate/shikimate 3'-hydroxylase from potato (Solanum tuberosum).

作者信息

Knollenberg Benjamin J, Liu Jingjing, Yu Shu, Lin Hong, Tian Li

机构信息

Department of Plant Sciences, University of California, Davis, CA, 95616, USA; The Huck Institutes of the Life Sciences, Pennsylvania State University, State College, PA, 16801, USA.

Department of Plant Sciences, University of California, Davis, CA, 95616, USA; State Key Laboratory of Subtropical Silviculture, Zhejiang A & F University, Hangzhou, Zhejiang, 311300, China.

出版信息

Biochem Biophys Res Commun. 2018 Feb 5;496(2):462-467. doi: 10.1016/j.bbrc.2018.01.075. Epub 2018 Jan 11.

Abstract

Chlorogenic acid (CGA) plays an important role in protecting plants against pathogens and promoting human health. Although CGA accumulates to high levels in potato tubers, the key enzyme p-coumaroyl quinate/shikimate 3'-hydroxylase (C3'H) for CGA biosynthesis has not been isolated and functionally characterized in potato. In this work, we cloned StC3'H from potato and showed that it catalyzed the formation of caffeoylshikimate and CGA (caffeoylquinate) from p-coumaroyl shikimate and p-coumaroyl quinate, respectively, but was inactive towards p-coumaric acid in in vitro enzyme assays. When the expression of StC3'H proteins was blocked through antisense (AS) inhibition under the control of a tuber-specific patatin promoter, moderate changes in tuber yield as well as phenolic metabolites in the core tuber tissue were observed for several AS lines. On the other hand, the AS and control potato lines exhibited similar responses to a bacterial pathogen Pectobacterium carotovorum. These results suggest that StC3'H is implicated in phenolic metabolism in potato. They also suggest that CGA accumulation in the core tissue of potato tubers is an intricately controlled process and that additional C3'H activity may also be involved in CGA biosynthesis in potato.

摘要

绿原酸(CGA)在保护植物抵御病原体和促进人类健康方面发挥着重要作用。尽管CGA在马铃薯块茎中积累到很高水平,但参与CGA生物合成的关键酶对香豆酰奎尼酸/莽草酸3'-羟化酶(C3'H)尚未在马铃薯中分离出来并进行功能鉴定。在这项研究中,我们从马铃薯中克隆了StC3'H,并表明它分别催化对香豆酰莽草酸和对香豆酰奎尼酸形成咖啡酰莽草酸和CGA(咖啡酰奎尼酸),但在体外酶促试验中对香豆酸无活性。当通过反义(AS)抑制在块茎特异性马铃薯patatin启动子的控制下阻断StC3'H蛋白的表达时,在几个AS株系中观察到块茎产量以及块茎核心组织中酚类代谢物有适度变化。另一方面,AS马铃薯株系和对照株系对细菌性病原菌胡萝卜软腐果胶杆菌表现出相似的反应。这些结果表明StC3'H参与马铃薯中的酚类代谢。它们还表明马铃薯块茎核心组织中CGA的积累是一个复杂调控的过程,并且额外的C3'H活性可能也参与马铃薯中CGA的生物合成。

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