Lessons learned from metabolic engineering in hairy roots: Transcriptome and metabolic profile changes caused by Rhizobium-mediated plant transformation in Cucurbitaceae species

被引:5
作者
Almeida, Aldo [1 ,4 ]
Favero, Bruno Trevenzoli [1 ]
Dong, Lemeng [2 ]
Gardenas, Pablo D. [1 ]
Saenz-Mata, Jorge [3 ]
Lutken, Henrik [1 ]
Bak, Soren [1 ]
机构
[1] Univ Copenhagen, Dept Plant & Environm Sci, Thorvaldsensvej 40, DK-1871 Frederiksberg, Denmark
[2] Univ Amsterdam, Swammerdam Inst Life Sci, Sci Pk 904, NL-1098 XH Amsterdam, Netherlands
[3] Univ Juarez Estado Durango, Fac Ciencias Biol, Av Univ S-N, Gomez Palacio 35010, Durango, Mexico
[4] Carlsberg Res Lab, DK-1799 Copenhagen, Denmark
关键词
AGROBACTERIUM-RHIZOGENES; SECONDARY METABOLISM; ALKALOID PRODUCTION; ROLC GENES; TL-DNA; CULTURES; BIOSYNTHESIS; ONCOGENE; PLASMID; ACTIVATION;
D O I
10.1016/j.plaphy.2023.107797
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Cucurbitaceae species are used in traditional medicine around the world. Cucurbitacins are highly oxygenated triterpenoids found in Cucurbitaceae species and exhibit potent anticancer activity alone and in combination with other existing chemotherapeutic drugs. Therefore, increasing production of these specialized metabolites is of great relevance. We recently showed that hairy roots of Cucurbita pepo can be used as a platform for metabolic engineering of cucurbitacins to modify their structure and increase their production. To study the changes in cucurbitacin accumulation upon formation of hairy roots, an empty vector (EV) control and Cucurbitacin inducing bHLH transcription factor 1 (CpCUCbH1)-overexpressing hairy roots of C. pepo were compared to untransformed (WT) roots. Whilst CpCUCbH1- overexpression increased production of cucurbitacins I and B by 5-fold, and cucurbitacin E by 3-fold when compared to EV lines, this increase was not significantly different when compared to WT roots. This indicated that Rhizobium rhizogenes transformation lowered the cucurbitacins levels in hairy roots, but that increasing expression of cucurbitacin biosynthetic genes by CpCUCbH1-overexpression restored cucurbitacin production to WT levels. Subsequent metabolomic and RNA-seq analysis indicated that the metabolic profile and transcriptome of hairy roots was significantly changed when compared to WT roots. Interestingly, it was observed that 11% of the differentially expressed genes were transcription factors. It was noteworthy that the majority of transcripts showing highest Pearson correlation coefficients to the Rhizobium rhizogenes genes rolB, rolC and ORF13a, were predicted to be transcription factors. In summary, hairy roots are an excellent platform for metabolic engineering of plant specialized metabolites, but these extensive transcriptome and metabolic profile changes should be considered in subsequent studies.
引用
收藏
页数:8
相关论文
共 52 条
[1]   Anti-inflammatory activities of cucurbitacin E isolated from Citrullus lanatus var. citroides: Role of reactive nitrogen species and cyclooxygenase enzyme inhibition [J].
Abdelwahab, Siddig Ibrahim ;
Hassan, Loiy Elsir Ahmed ;
Sirat, Hasnah Mohd ;
Yagi, Sakina M. Ahmed ;
Koko, Waleed S. ;
Mohan, Syam ;
Taha, Manal Mohamed Elhassan ;
Ahmad, Syahida ;
Chuen, Cheah Shiau ;
Narrima, Putri ;
Rais, Mohd Mustafa ;
Hadi, A. Hamid A. .
FITOTERAPIA, 2011, 82 (08) :1190-1197
[2]   Metabolic engineering of cucurbitacins in Cucurbita pepo hairy roots [J].
Almeida, Aldo ;
Dong, Lemeng ;
Thorsen, Theis H. ;
Raadam, Morten H. ;
Khakimov, Bekzod ;
Carreno-Quintero, Natalia ;
Kampranis, Sotirios C. ;
Bak, Soren .
FRONTIERS IN PLANT SCIENCE, 2022, 13
[3]   A Single Oxidosqualene Cyclase Produces the Seco-Triterpenoid α-Onocerin [J].
Almeida, Aldo ;
Dong, Lemeng ;
Khakimov, Bekzod ;
Bassard, Jean-Etienne ;
Moses, Tessa ;
Lota, Frederic ;
Goossens, Alain ;
Appendino, Giovanni ;
Bak, Soren .
PLANT PHYSIOLOGY, 2018, 176 (02) :1469-1484
[4]   The rolB plant oncogene affects multiple signaling protein modules related to hormone signaling and plant defense [J].
Bulgakov, Victor P. ;
Vereshchagina, Yulia V. ;
Bulgakov, Dmitry V. ;
Veremeichik, Galina N. ;
Shkryl, Yuri N. .
SCIENTIFIC REPORTS, 2018, 8
[5]   The rolB gene activates secondary metabolism in Arabidopsis calli via selective activation of genes encoding MYB and bHLH transcription factors [J].
Bulgakov, Victor P. ;
Veremeichik, Galina N. ;
Grigorchuk, Valeria P. ;
Rybin, Viacheslav G. ;
Shkryl, Yuri N. .
PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2016, 102 :70-79
[6]   Recent Advances in the Understanding of Agrobacterium rhizogenes-Derived Genes and Their Effects on Stress Resistance and Plant Metabolism [J].
Bulgakov, Victor P. ;
Shkryl, Yuri N. ;
Veremeichik, Galina N. ;
Gorpenchenko, Tatiana Y. ;
Vereshchagina, Yuliya V. .
BIOTECHNOLOGY OF HAIRY ROOT SYSTEMS, 2013, 134 :1-22
[7]   The rolB and rolC genes activate synthesis of anthraquinones in Rubia cordifolia cells by mechanism independent of octadecanoid signaling pathway [J].
Bulgakov, VP ;
Tchernoded, GK ;
Mischenko, NP ;
Shkryl, YN ;
Fedoreyev, SA ;
Zhuravlev, YN .
PLANT SCIENCE, 2004, 166 (04) :1069-1075
[8]   Effects of Ca2+, channel blockers and protein kinase/phosphatase inhibitors on growth and anthraquinone production in Rubia cordifolia callus cultures transformed by the rolB and rolC genes [J].
Bulgakov, VP ;
Tchernoded, GK ;
Mischenko, NP ;
Shkryl, YN ;
Glazunov, VP ;
Fedoreyev, SA ;
Zhuravlev, YN .
PLANTA, 2003, 217 (03) :349-355
[9]   Transcription Factor SmWRKY1 Positively Promotes the Biosynthesis of Tanshinones in Salvia miltiorrhiza [J].
Cao, Wenzhi ;
Wang, Yao ;
Shi, Min ;
Hao, Xiaolong ;
Zhao, Weiwei ;
Wang, Yu ;
Ren, Jie ;
Kai, Guoyin .
FRONTIERS IN PLANT SCIENCE, 2018, 9
[10]   Blast2GO:: a universal tool for annotation, visualization and analysis in functional genomics research [J].
Conesa, A ;
Götz, S ;
García-Gómez, JM ;
Terol, J ;
Talón, M ;
Robles, M .
BIOINFORMATICS, 2005, 21 (18) :3674-3676