数字农科院2.0

Resveratrol distribution in peanuts and its resistance to aflatoxin accumulation

文献类型: 外文期刊

作者: Yang; Boyi; Liu; Wei; Yu; Li; Hu; Xiaofeng; Hu; Kai; Zhang; Zhaowei; Li; Peiwu

作者机构:

关键词: aflatoxin accumulation;peanut;resveratrol distribution

期刊名称: QUALITY ASSURANCE AND SAFETY OF CROPS & FOODS

ISSN: 1757-8361

年卷期: 2025 年 17 卷 3 期

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: The presence of aflatoxin is a major risk factor in peanut processing and consumption. It has been found that resveratrol, which is known to have numerous health benefits, plays a crucial role in resisting aflatoxin. However, the distribution of resveratrol in peanuts is not clearly understood. To address this issue, a peanut recombinant inbred line (RIL) population consisting of 240 lines was used to investigate the distribution of resveratrol and examine its correlation with aflatoxin resistance. We found that resveratrol is controlled by multiple genes, with a significantly higher maximum content (867.0 mu g/kg) in the recombinant inbred population compared to the parental population. Resveratrol content in peanuts showed a significant negative correlation with both aflatoxin B1 levels and total aflatoxin content when it exceeded 300 mu g/kg (correlation coefficients: -0.61 and-0.62, respectively). Exceeding 300 mu g/kg of resveratrol in peanuts effectively inhibited aflatoxin production, suggesting that peanut varieties enriched with resveratrol have resistance against aflatoxin pollution.

分类号:

  • 相关文献

[1]Discovery Of Genomic Regions And C.andidate Genes Controlling Shelling P ercentage Using Qtl-Seq Approach In Cultivated Peanut (Arachis Hypogaea L.). Pandey, Manish K.,Varshney, Rajeev K.,Cai, Yan,Luo, Huaiyong,Chen, Yuning,Chen, Weigang,Wu, Bei,Zhou, Xiaojing,Liu, Nian,Guo, Jianbin,Huang, Li,Jiang, Huifang,Khan, Aamir W.,Liao, Boshou,Lei, Yong. 2019

[2]Next-Generation Sequencing Identified Genomic Region A.nd Diagnostic Markers For R esistance To Bacterial Wilt On Chromosome B02 In Peanut (Arachis Hypogaea L.). Huang, Li,Chen, Weigang,Zhou, Xiaojing,Chen, Yuning,Varshney, Rajeev K.,Khan, Aamir W.,Pandey, Manish K.,Guo, Jianbin,Liao, Boshou,Liu, Nian,Lei, Yong,Luo, Huaiyong,Ren, Xiaoping,Wu, Bei,Jiang, Huifang. 2019

[3]Four Qtl Clusters Containing Major A.nd Stable Qtls For S aturated Fatty Acid Contents In A Dense Genetic Map Of Cultivated Peanut (Arachis Hypogaea L.). Wu, Bei,Ren, Xiaoping,Lei, Yong,Xia, Fujian,Luo, Huaiyong,Liu, Nian,Liao, Boshou,Huang, Li,Huai, Dongxin,Zhou, Xiaojing,Jiang, Huifang,Chen, Yuning,Chen, Weigang,Chen, Hao. 2019

[4]Exploratory Research On Negative-Pressure Soaking T.echnology For Peanut Pods. Xiong, Huiwei,Zhu, Xuejing,Feng, Jianxiong,Xing, Shengping,Min, Hua,Fu, Xiaoji,He, Jialin. 2018

[5]Identification Of Genomic Regions And D.iagnostic Markers For Resistance T o Aflatoxin Contamination In Peanut (Arachis Hypogaea L.). Jiang, Huifang,Huai, Dongxin,Huang, Li,Kang, Yanping,Liu, Nian,Liao, Boshou,Lei, Yong,Luo, Huaiyong,Ren, Xiaoping,Pandey, Manish K.,Varshney, Rajeev K.,Sudini, Hari,Chen, Weigang,Zhou, Xiaojing,Yu, Bolun,Chen, Yuning. 2019

[6]Identification Of Major Qtl For S.eed Number Per Pod O n Chromosome A05 Of Tetraploid Peanut (Arachis Hypogaea L.). Liao, Boshou,Lei, Yong,Ren, Xiaoping,Luo, Huaiyong,Zhao, Jiaojiao,Chen, Weigang,Zhou, Xiaojing,Yan, Liying,Chen, Yuning,Huang, Li,Jiang, Huifang,Guo, Jianbin,Wang, Zhihui,Liu, Nian,Huai, Dongxin,Wan, Liyun. 2019

[7]Aflatoxin contamination of peanuts at harvest in China from 2010 to 2013 and its relationship with climatic conditions. Wu, L. X.,Ding, X. X.,Li, P. W.,Du, X. H.,Zhou, H. Y.,Bai, Y. Zh,Zhang, L. X.,Wu, L. X.,Ding, X. X.,Li, P. W.,Du, X. H.,Wu, L. X.,Ding, X. X.,Li, P. W.,Du, X. H.,Zhang, L. X.,Ding, X. X.,Li, P. W.,Zhou, H. Y.,Bai, Y. Zh,Zhang, L. X.,Ding, X. X.,Li, P. W.,Zhou, H. Y.,Bai, Y. Zh,Zhang, L. X..

[8]The effect of low water content on seed longevity. Hu, CL,Zhang, YL,Tao, M,Hu, XR,Jiang, CY. 1998

[9]Nitrogen and carbon mineralization of surface-applied and incorporated winter wheat and peanut residues. Jin, Ke,Sleutel, Steven,De Neve, Stefaan,Gabriels, Donald,Hofman, Georges,Jin, Ke,Cai, Dianxiong,Jin, Jiyun. 2008

[10]The antisense expression of AhPEPC1 increases seed oil production in peanuts (Arachis hypogaea L.). Pan, L.,Zhang, J.,Wan, Y.,Liu, F.,Pan, L.,Zhang, J.,Chi, X.,Chen, N.,Chen, M.,Wang, M.,Wang, T.,Yang, Z.,Zhang, Z.,Yu, S.,Chi, X.. 2016

[11]Detection of gamma-irradiated peanuts by ESR spectroscopy and GC analysis of hydrocarbons. Li, Wei Ming,Li, An,Ha, Yi Ming,Wang, Feng,Zhang, Yan Li. 2011

[12]Fourier Transform Infrared Spectral Analysis on Peanut (Arachis Hypogaea) Plants under Calcium Deficiency Stress. Gao Li-li,Wang Sheng-feng,Han Ya,Liu Zi-fei,Huang Jin-sheng,Wang Hong,Gao Li-li,Liu Zi-fei,Huang Jin-sheng,Hilman,Liu Rong-le,Hilman. 2014

[13]Co-Localization Of Major Quantitative Trait L.oci For Pod Size A nd Weight To A 3.7 Cm Interval On Chromosome A05 In Cultivated Peanut (Arachis Hypogaea L.). Luo, Huaiyong,Pandey, Manish K.,Liao, Boshou,Liu, Fei,Xu, Zhijun,Zhou, Xiaojing,Ren, Xiaoping,Varshney, Rajeev K.,Li, Zhendong,Guo, Baozhu,Huang, Li,Chen, Weigang,Chen, Yuning,Lei, Yong,Li, Xinping,Jiang, Huifang,Jiang, Xiangguo. 2017

[14]PROTEIN CONTENTS IN DIFFERENT PEANUT VARIETIES AND THEIR RELATIONSHIP TO GEL PROPERTY. Wang, Li,Liu, Hongzhi,Liu, Li,Wang, Qiang,Du, Yin,Zhang, Jianshu,Li, Qizhai.

[15]Peanut ethylene-responsive element binding factor (AhERF6) improves cold and salt tolerance in Arabidopsis. Zhang, Jiancheng,Liu, Fengzhen,Wan, Yongshan,Zhang, Jiancheng,Chen, Na,Zhang, Zhimeng,Pan, Lijuan,Chen, Mingna,Wang, Mian,Wang, Tong,Chi, Xianyuan,Yang, Zhen,Yu, Shanlin,Chi, Xianyuan.

[16]Diversity characterization and association analysis of agronomic traits in a Chinese peanut (Arachis hypogaea L.) mini-core collection. Jiang, Huifang,Huang, Li,Ren, Xiaoping,Chen, Yuning,Zhou, Xiaojing,Huang, Jiaquan,Lei, Yong,Yan, Liying,Wan, Liyun,Liao, Boshou,Xia, Youlin. 2014

[17]Comparative proteomics analysis of developing peanut aerial and subterranean pods identifies pod swelling related proteins. Zhu, Wei,Zhang, Erhua,Li, Haifen,Chen, Xiaoping,Zhu, Fanghe,Hong, Yanbin,Liang, Xuanqiang,Zhu, Wei,Liao, Boshou,Liu, Shengyi.

[18]Screening and transcriptome analysis of water deficiency tolerant germplasms in peanut (Arachis hypogaea). Shen, Yi,Liu, Yonghui,Chen, Zhide,Shen, Yi,Zhiguo, E.,Zhang, Xiaojun.

[19]Dissection Of The Genetic Basis Of Oil Content In Chinese Peanut Cultivars Through Association Mapping. Liu, Nian,Jiang, Huifang,Chen, Yuning,Lei, Yong,Liao, Boshou,Pandey, Manish K.,Varshney, Rajeev K.,Ren, Xiaoping,Huai, Dongxin,Wu, Bei,Huang, Li,Chen, Weigang,Guo, Jianbin,Chen, Haiwen,Luo, Huaiyong,Zhou, Xiaojing. 2020

[20]Genome-Wide Identification Of Peanut Kcs Genes Reveals That Ahkcs1 And Ahkcs28 Are Involved In Regulating Vlcfa Contents In Seeds. Huai, Dongxin,Li, Yang,Wang, Peng,Wang, Peng,Huang, Yi,Jiang, Huifang,Lei, Yong,Liao, Boshou,Xue, Xiaomeng,Li, Jianguo,Yan, Liying,Chen, Yuning,Wang, Xin,Liu, Nian,Kang, Yanping,Wang, Zhihui. 2020

作者其他论文 更多>>