Plant Secondary Metabolites with an Overview of Populus

Author:

Movahedi AliORCID,Almasi Zadeh Yaghuti Amir,Wei Hui,Rutland Paul,Sun Weibo,Mousavi Mohaddeseh,Li DaweiORCID,Zhuge QiangORCID

Abstract

Populus trees meet continuous difficulties from the environment through their life cycle. To warrant their durability and generation, Populus trees exhibit various types of defenses, including the production of secondary metabolites. Syntheses derived from the shikimate-phenylpropanoid pathway are a varied and plentiful class of secondary metabolites manufactured in Populus. Amongst other main classes of secondary metabolites in Populus are fatty acid and terpenoid-derivatives. Many of the secondary metabolites made by Populus trees have been functionally described. Any others have been associated with particular ecological or biological processes, such as resistance against pests and microbial pathogens or acclimatization to abiotic stresses. Still, the functions of many Populus secondary metabolites are incompletely understood. Furthermore, many secondary metabolites have therapeutic effects, leading to more studies of secondary metabolites and their biosynthesis. This paper reviews the biosynthetic pathways and therapeutic impacts of secondary metabolites in Populus using a genomics approach. Compared with bacteria, fewer known pathways produce secondary metabolites in Populus despite P. trichocarpa having had its genome sequenced.

Funder

Nanjing Forestry University

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference117 articles.

1. Salicaceae: Willow, Populus, Salicaceae, Rhabdophaga Rosaria, Idesia, Chosenia, Azara, Abatia, Bivinia,2010

2. Poplars and Willows: Trees for Society and the Environment;Isebrands,2014

3. Phytochemical and Pharmacological Importance of Plant Secondary Metabolites in Modern Medicine;Velu,2018

4. Antioxidant capacity and phenol content of selected Algerian medicinal plants

5. Silencing CAFFEOYL SHIKIMATE ESTERASE Affects Lignification and Improves Saccharification in Poplar

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