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Preliminary investigations on the pathogenesis-related protein expression profile of the medicinal herb Macleaya cordata and anti-bacterial properties of recombinant proteins.

Authors :
Chen, Jinjun
Liu, Zihao
Liu, Yisong
Zhang, Xuewen
Zeng, Jianguo
Source :
Phytochemistry. Apr2021, Vol. 184, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

The plant pathogenesis-related (PR) proteins play a crucial role in the defense of plants against pathogens and orchestrate the innate immune system of plants. In this paper, a non-normalized cDNA library of the leaf was constructed to obtain a comprehensive view of PR proteins of Macleaya cordata. Specifically, 511 expressed sequence tags (ESTs) were generated using Sanger sequencing. All ESTs were assembled into 364 non-redundancy sequences, including 78 clusters and 286 singlets. The PR protein expression profile of the medicinal herb M. cordata has been investigated and is represented by defensin, lipid-transfer protein, (S)-norcoclaurine synthase, and major allergen protein, suggesting that the herb contains rich active proteins against pathogens. Furthermore, two defensins were selected for recombinant expression in yeast, and the antimicrobial activities were explored. Since they both present a broad antimicrobial spectrum, they are of particular importance for agricultural and medicinal applications. Our study describes defensins in Papaveraceae for the first time and provides novel insights into the effective components. In addition to the alkaloids, PR proteins (such as defensins, lipid transfer proteins, (S) - norcoclaurine synthase, major allergen protein, and Class IV chitinases) are involved in the antibacterial and anti-inflammatory activities of M. cordata. [Display omitted] • Five families of pathogenesis-related proteins are discovered from Macleaya cordata. • Two defensins show diverse sequences with the same 4 disulfide bonds scaffold. • Two defensins are recombinant expressed and purified. • Two defensins both show a wide antimicrobial spectrum. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00319422
Volume :
184
Database :
Academic Search Index
Journal :
Phytochemistry
Publication Type :
Academic Journal
Accession number :
149395803
Full Text :
https://doi.org/10.1016/j.phytochem.2021.112667