نتایج جستجو برای: phenylpropanoid pathway

تعداد نتایج: 314097  

Journal: :Plant Growth Regulation 2023

Baishouwu (Cynanchum auriculatum), a medicinal and food dual-use plant, has been cultivated for centuries is favored by consumers. C. auriculatum tuberous roots contain enormous amounts of flavonoids, lignin, other nutrients. However, the developmental characteristics phenylpropanoid metabolic mechanism in have not clarified. Here, phenotypes at three stages were observed, compared with root fo...

Journal: :Microbial Cell Factories 2021

Abstract Background Phenylpropanoid including raspberry ketone, is a kind of important natural plant product and widely used in pharmaceuticals, chemicals, cosmetics, healthcare products. Bioproduction phenylpropanoid Escherichia coli other microbial cell factories an attractive approach considering the low contents plants. However, it usually difficult to produce high titer production when fer...

Journal: :The Plant journal : for cell and molecular biology 2009
Alex Van Moerkercke Ines Schauvinhold Eran Pichersky Michel A Haring Robert C Schuurink

The exact biosynthetic pathways leading to benzoic acid (BA) formation in plants are not known, but labeling experiments indicate the contribution of both beta-oxidative and non-beta-oxidative pathways. In Petunia hybrida BA is a key precursor for the production of volatile benzenoids by its flowers. Using functional genomics, we identified a 3-ketoacyl-CoA thiolase, PhKAT1, which is involved i...

Journal: :Agronomy 2023

The red root of Salvia miltiorrhiza Bunge, a famous traditional Chinese medicine (TCM), was caused by tanshinone in epidermis cells. In order to study the biological function ncRNAs synthesis, expression patterns mRNA and were comprehensively analyzed (high content) white (low tissues derived from same plant. A total 731 differentially expressed genes (DEGs) mainly enriched primary metabolic pa...

2015
Neta Manela Moran Oliva Rinat Ovadia Noga Sikron-Persi Biruk Ayenew Aaron Fait Gad Galili Avichai Perl David Weiss Michal Oren-Shamir

Environmental stresses such as high light intensity and temperature cause induction of the shikimate pathway, aromatic amino acids (AAA) pathways, and of pathways downstream from AAAs. The induction leads to production of specialized metabolites that protect the cells from oxidative damage. The regulation of the diverse AAA derived pathways is still not well understood. To gain insight on that ...

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