Centre for Novel Agricultural Products, Department of Biology, University of York, Heslington, York, UK.
Department of Chemistry, University of Reading, Reading, UK.
Plant Biotechnol J. 2021 Aug;19(8):1614-1623. doi: 10.1111/pbi.13574. Epub 2021 Mar 18.
To engineer Nicotiana benthamiana to produce novel diterpenoids, we first aimed to increase production of the diterpenoid precursor geranylgeranyl pyrophosphate (GGPP) by up-regulation of key genes of the non-mevalonate (MEP) pathway sourced from Arabidopsis thaliana. We used transient expression to evaluate combinations of the eight MEP pathway genes plus GGPP synthase and a Jatropha curcas casbene synthase (JcCAS) to identify an optimal combination for production of casbene from GGPP. AtDXS and AtHDR together with AtGGPPS and JcCAS gave a 410% increase in casbene production compared to transient expression of JcCAS alone. This combination was cloned into a single construct using the MoClo toolkit, and stably integrated into the N. benthamiana genome. We also created multigene constructs for stable transformation of two J. curcas cytochrome P450 genes, JcCYP726A20 and JcCYP71D495 that produce the more complex diterpenoid jolkinol C from casbene when expressed transiently with JcCAS in N. benthamiana. Stable transformation of JcCYP726A20, JcCYP71D495 and JcCAS did not produce any detectable jolkinol C until these genes were co-transformed with the optimal set of precursor-pathway genes. One such stable homozygous line was used to evaluate by transient expression the involvement of an 'alkenal reductase'-like family of four genes in the further conversion of jolkinol C, leading to the demonstration that one of these performs reduction of the 12,13-double bond in jolkinol C. This work highlights the need to optimize precursor supply for production of complex diterpenoids in stable transformants and the value of such lines for novel gene discovery.
为了在本氏烟中工程化生产新型二萜类化合物,我们首先旨在通过上调源自拟南芥的非甲羟戊酸(MEP)途径的关键基因来增加二萜前体香叶基香叶基焦磷酸(GGPP)的产量。我们使用瞬时表达来评估 8 种 MEP 途径基因加 GGPP 合酶和麻疯树 casbene 合酶(JcCAS)的组合,以确定从 GGPP 生产 casbene 的最佳组合。与单独瞬时表达 JcCAS 相比,AtDXS 和 AtHDR 与 AtGGPPS 和 JcCAS 一起使 casbene 的产量增加了 410%。该组合使用 MoClo 工具包克隆到单个构建体中,并稳定整合到 N. benthamiana 基因组中。我们还创建了多基因构建体,用于稳定转化两种麻疯树细胞色素 P450 基因 JcCYP726A20 和 JcCYP71D495,当与 N. benthamiana 中的 JcCAS 瞬时表达时,它们从 casbene 产生更复杂的二萜类化合物jolkinol C。直到这些基因与最佳的前体途径基因一起转化,稳定转化的 JcCYP726A20、JcCYP71D495 和 JcCAS 才产生任何可检测到的 jolkinol C。使用这样的稳定纯合系通过瞬时表达来评估四个“烯醛还原酶”样家族基因在进一步转化 jolkinol C 中的作用,证明其中一个基因在 jolkinol C 中还原 12,13-双键。这项工作强调了在稳定转化体中生产复杂二萜类化合物需要优化前体供应的必要性,以及此类系用于新基因发现的价值。