Integrated Analyses of Metabolomic Profiling and Associated Gene Expression of Catharanthus roseus Seedling Reveal the Metabolic Alternations of Primary Metabolites and Flavonoids During the Apical Hook Opening Phase

Author(s):  
Bofan Yu ◽  
Yang Liu ◽  
Jia Liu ◽  
Xiaorui Guo ◽  
Zhonghua Tang
2021 ◽  
Vol 43 (11) ◽  
pp. 2085-2103
Author(s):  
Yongliang Liu ◽  
Barunava Patra ◽  
Sanjay Kumar Singh ◽  
Priyanka Paul ◽  
Yan Zhou ◽  
...  

Abstract Plants synthesize a vast array of specialized metabolites that primarily contribute to their defense and survival under adverse conditions. Many of the specialized metabolites have therapeutic values as drugs. Biosynthesis of specialized metabolites is affected by environmental factors including light, temperature, drought, salinity, and nutrients, as well as pathogens and insects. These environmental factors trigger a myriad of changes in gene expression at the transcriptional and posttranscriptional levels. The dynamic changes in gene expression are mediated by several regulatory proteins that perceive and transduce the signals, leading to up- or down-regulation of the metabolic pathways. Exploring the environmental effects and related signal cascades is a strategy in metabolic engineering to produce valuable specialized metabolites. However, mechanistic studies on environmental factors affecting specialized metabolism are limited. The medicinal plant Catharanthus roseus (Madagascar periwinkle) is an important source of bioactive terpenoid indole alkaloids (TIAs), including the anticancer therapeutics vinblastine and vincristine. The emerging picture shows that various environmental factors significantly alter TIA accumulation by affecting the expression of regulatory and enzyme-encoding genes in the pathway. Compared to our understanding of the TIA pathway in response to the phytohormone jasmonate, the impacts of environmental factors on TIA biosynthesis are insufficiently studied and discussed. This review thus focuses on these aspects and discusses possible strategies for metabolic engineering of TIA biosynthesis. Purpose of work Catharanthus roseus is a rich source of bioactive terpenoid indole alkaloids (TIAs). The objective of this work is to present a comprehensive account of the influence of various biotic and abiotic factors on TIA biosynthesis and to discuss possible strategies to enhance TIA production through metabolic engineering.


PeerJ ◽  
2020 ◽  
Vol 8 ◽  
pp. e8704 ◽  
Author(s):  
Hongju Jian ◽  
Ling Xie ◽  
Yanhua Wang ◽  
Yanru Cao ◽  
Mengyuan Wan ◽  
...  

The winter oilseed ecotype is more tolerant to low temperature than the spring ecotype. Transcriptome and metabolome analyses of leaf samples of five spring Brassica napus L. (B. napus) ecotype lines and five winter B. napus ecotype lines treated at 4 °C and 28 °C were performed. A total of 25,460 differentially expressed genes (DEGs) of the spring oilseed ecotype and 28,512 DEGs of the winter oilseed ecotype were identified after cold stress; there were 41 differentially expressed metabolites (DEMs) in the spring and 47 in the winter oilseed ecotypes. Moreover, more than 46.2% DEGs were commonly detected in both ecotypes, and the extent of the changes were much more pronounced in the winter than spring ecotype. By contrast, only six DEMs were detected in both the spring and winter oilseed ecotypes. Eighty-one DEMs mainly belonged to primary metabolites, including amino acids, organic acids and sugars. The large number of specific genes and metabolites emphasizes the complex regulatory mechanisms involved in the cold stress response in oilseed rape. Furthermore, these data suggest that lipid, ABA, secondary metabolism, signal transduction and transcription factors may play distinct roles in the spring and winter ecotypes in response to cold stress. Differences in gene expression and metabolite levels after cold stress treatment may have contributed to the cold tolerance of the different oilseed ecotypes.


2014 ◽  
Vol 522-524 ◽  
pp. 311-315
Author(s):  
Ying Liu ◽  
De Wen Li ◽  
Zhong Hua Zhang ◽  
Yuan Gang Zu

The alkaloids contents were investigated by High performance liquid chromatography (HPLC) in Catharanthus roseus aseptic seedlings leaves, the expressions of terpenoid indole alkaloids (TIAs) biosynthesis pathway genes were detected by semi-quantitative RT-PCR. The plastic films treatment induces a low light condition. HPLC analysis shows, the contents of vindoline (VIN) and catharanthine (CAT) are slight increase first and significant decrease (p<0.05) under plastic films, the vinblastine (VBL) content increase and reach the maximum (0.028 mg g-1±0.0051) on the 15th day of treatment. TIA biosynthesis pathway genes expression change under low light. The correlation analysis indicates, VIN accumulation is significantly correlated with the gene expression of desacetoxyvindoline-4-hydroxylase (D4h) and deacetylvindoline-4-O-acetyl transferase (Dat), and CAT accumulation is significantly correlated with strictosidine synthase (Str) gene expression (p<0.05). The low light treatment with plastic films accelerates the accumulation of VBL in C. roseus seedlings leaves.


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