American Journal of Plant Sciences

Volume 4, Issue 3 (March 2013)

ISSN Print: 2158-2742   ISSN Online: 2158-2750

Google-based Impact Factor: 1.20  Citations  h5-index & Ranking

Overexpression of ARAhPR10, a Member of the PR10 Family, Decreases Levels of Aspergillus flavus Infection in Peanut Seeds

HTML  Download Download as PDF (Size: 328KB)  PP. 602-607  
DOI: 10.4236/ajps.2013.43079    4,410 Downloads   6,523 Views  Citations

ABSTRACT

Peanut (Arachis hypogaea L.) is one of the most susceptible host crops to Aspergillus flavus invasion and subsequent aflatoxin contamination. In this report, a new member of PR10 family putative resistant gene (designated as ARAhPR10, No. EU661964.1) encoding a PR10 protein was isolated and characterized. Analysis of qRT-PCR showed that the expression of ARAhPR10 was induced by pre-harvested A. flavus infection, but no significant difference was observed between resistant genotype GT-C20” and susceptible genotype Yueyou 7”. Seven transgenic peanut lines expressing the ARAhPR10 gene under the control of 35S promoter were obtained using the Agrobacterium tumefaciens-mediated method. Real time RT-PCR results showed that the expression level of the ARAhPR10 was significantly higher and the A. flavus infection and aflatoxin content were significantly lower in seeds of transgenic lines than that of the wild type. A significant negative correlation between ARAhPR10 expression at transcript level and seeds aflatoxin production was observed. Combining the previous results, it is suggested that ARAhPR10 expression play an important role in peanut host resistance to A. flavus infection and aflatoxin producing.

Share and Cite:

C. Xie, S. Wen, H. Liu, X. Chen, H. Li, Y. Hong and X. Liang, "Overexpression of ARAhPR10, a Member of the PR10 Family, Decreases Levels of Aspergillus flavus Infection in Peanut Seeds," American Journal of Plant Sciences, Vol. 4 No. 3, 2013, pp. 602-607. doi: 10.4236/ajps.2013.43079.

Cited by

[1] Gene co-expression network analysis of the comparative transcriptome identifies hub genes associated with resistance to Aspergillus flavus L. in cultivated …
Frontiers in Plant …, 2022
[2] Progress in research on mechanism of resistance to Aspergillus flavus L. infection and aflatoxin production in peanut
jie, C Peng-pei, GUO Jun-jia… - … JOURNAL OF OIL …, 2021
[3] 花生抗黄曲霉菌侵染和产毒机制研究进展
中国油料作物 …, 2021
[4] Functional Biology and Molecular Mechanisms of Host-Pathogen Interactions for Aflatoxin Contamination in Groundnut (Arachis hypogaea L.) and Maize (Zea …
2020
[5] Role of Pathogen-Related Protein 10 (PR 10) under Abiotic and Biotic Stresses in Plants
2020
[6] Strategies to Understand Aspergillus flavus Resistance Mechanism in Arachis hypogaea L
2019
[7] Biotechnological Strategies for Development of Aflatoxin-Free Crops
2019
[8] A sugarcane pathogenesis-related protein, ScPR10, plays a positive role in defense responses under Sporisorium scitamineum, SrMV, SA, and MeJA stresses.
Plant cell reports, 2017
[9] Functional characterization of a pathogenesis-related protein family 10 gene, LrPR10-5, from Lilium regale Wilson
Australasian Plant Pathology, 2017
[10] Functional roles of the pepper leucine-rich repeat protein and its interactions with pathogenesis-related and hypersensitive-induced proteins in plant cell death and immunity
Planta, 2017
[11] A sugarcane pathogenesis-related protein, ScPR10, plays a positive role in defense responses under Sporisorium scitamineum, SrMV, SA, and MeJA stresses
Plant Cell Reports, 2017
[12] Functional roles of the pepper leucine-rich repeat protein and its interactions with pathogenesis-related and hypersensitive-induced proteins in plant cell death and …
Planta, 2017
[13] Peanut ethylene-responsive element binding factor (AhERF6) improves cold and salt tolerance in Arabidopsis
Acta Physiologiae Plantarum, 2016
[14] Soybean Diseases
2016
[15] Diseases of edible oilseed crops
2015
[16] Biotechnological advances for combating Aspergillus flavus and aflatoxin contamination in crops
Plant Science, 2015
[17] The pathogenesis related class 10 proteins in plant defense against biotic and abiotic stresses
2015
[18] Role of Pathogen related protein families in defence mechanism with potential role in applied biotechnology
2014
[19] IDENTIFICATION OF ABIOTIC STRESS TOLERANT GENE (S) FROM ROSELLE (Hibiscus sabdariffa L.)
2014
[20] National Centre of Excellence in Molecular Biology (CEMB), University of the Punjab Lahore-Pakistan
2014

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.