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参与甲羟戊酸途径的三种关键酶的过表达增强了蒲公英乳胶中的类异戊二烯生物合成。

Isoprenoid biosynthesis in dandelion latex is enhanced by the overexpression of three key enzymes involved in the mevalonate pathway.

作者信息

Pütter Katharina M, van Deenen Nicole, Unland Kristina, Prüfer Dirk, Schulze Gronover Christian

机构信息

Institute of Plant Biology and Biotechnology, Schlossplatz 8, 48143, Muenster, Germany.

Fraunhofer Institute for Molecular Biology and Applied Ecology (IME), Schlossplatz 8, 48143, Muenster, Germany.

出版信息

BMC Plant Biol. 2017 May 22;17(1):88. doi: 10.1186/s12870-017-1036-0.

Abstract

BACKGROUND

Latex from the dandelion species Taraxacum brevicorniculatum contains many high-value isoprenoid end products, e.g. triterpenes and polyisoprenes such as natural rubber. The isopentenyl pyrophosphate units required as precursors for these isoprenoids are provided by the mevalonate (MVA) pathway. The key enzyme in this pathway is 3-hydroxy-methyl-glutaryl-CoA reductase (HMGR) and its activity has been thoroughly characterized in many plant species including dandelion. However, two enzymes acting upstream of HMGR have not been characterized in dandelion latex: ATP citrate lyase (ACL), which provides the acetyl-CoA utilized in the MVA pathway, and acetoacetyl-CoA thiolase (AACT), which catalyzes the first step in the pathway to produce acetoacetyl-CoA. Here we isolated ACL and AACT genes from T. brevicorniculatum latex and characterized their expression profiles. We also overexpressed the well-characterized HMGR, ACL and AACT genes from Arabidopsis thaliana in T. brevicorniculatum to determine their impact on isoprenoid end products in the latex.

RESULTS

The spatial and temporal expression profiles of T. brevicorniculatum ACL and AACT revealed their pivotal role in the synthesis of precursors necessary for isoprenoid biosynthesis in latex. The overexpression of A. thaliana ACL and AACT and HMGR in T. brevicorniculatum latex resulted in the accumulation of all three enzymes, increased the corresponding enzymatic activities and ultimately increased sterol levels by ~5-fold and pentacyclic triterpene and cis-1,4-isoprene levels by ~2-fold. Remarkably high levels of the triterpene precursor squalene were also detected in the triple-transgenic lines (up to 32 mg/g root dry weight) leading to the formation of numerous lipid droplets which were observed in root cross-sections.

CONCLUSIONS

We could show the effective expression of up to three transgenes in T. brevicorniculatum latex which led to increased enzymatic activity and resulted in high level squalene accumulation in the dandelion roots up to an industrially relevant amount. Our data provide insight into the regulation of the MVA pathway in dandelion latex and can be used as a basis for metabolic engineering to enhance the production of isoprenoid end products in this specialized tissue.

摘要

背景

短角蒲公英(Taraxacum brevicorniculatum)的乳胶含有许多高价值的类异戊二烯终产物,例如三萜类化合物和多聚异戊二烯,如天然橡胶。这些类异戊二烯的前体所需的异戊烯基焦磷酸单元由甲羟戊酸(MVA)途径提供。该途径中的关键酶是3-羟基-甲基-戊二酰辅酶A还原酶(HMGR),其活性已在包括蒲公英在内的许多植物物种中得到充分表征。然而,在蒲公英乳胶中,作用于HMGR上游的两种酶尚未得到表征:ATP柠檬酸裂解酶(ACL),它提供MVA途径中使用的乙酰辅酶A;乙酰乙酰辅酶A硫解酶(AACT),它催化产生乙酰乙酰辅酶A的途径的第一步。在这里,我们从短角蒲公英乳胶中分离出ACL和AACT基因,并表征了它们的表达谱。我们还在短角蒲公英中过表达了来自拟南芥的已充分表征的HMGR、ACL和AACT基因,以确定它们对乳胶中类异戊二烯终产物的影响。

结果

短角蒲公英ACL和AACT的时空表达谱揭示了它们在乳胶中类异戊二烯生物合成所需前体合成中的关键作用。拟南芥ACL、AACT和HMGR在短角蒲公英乳胶中的过表达导致了这三种酶的积累,增加了相应的酶活性,并最终使甾醇水平提高了约5倍,五环三萜和顺式-1,4-异戊二烯水平提高了约2倍。在三转基因系中还检测到了极高水平的三萜前体角鲨烯(高达32毫克/克根干重),导致在根横切面中观察到大量脂滴的形成。

结论

我们可以证明多达三个转基因在短角蒲公英乳胶中的有效表达,这导致酶活性增加,并使蒲公英根中角鲨烯积累达到工业相关量的高水平。我们的数据为了解蒲公英乳胶中MVA途径的调控提供了见解,并可作为代谢工程的基础,以提高该特殊组织中类异戊二烯终产物的产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdf4/5441070/a2c5a2e56c96/12870_2017_1036_Fig1_HTML.jpg

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