数字农科院2.0

Protective effects of resveratrol on honeybee health: Mitigating pesticide-induced oxidative stress and enhancing detoxification

文献类型: 外文期刊

作者: Linlin Liu;Min Shi;Yanyan Wu;Jiali Hao;Junxiu Guo;Shanshan Li;Pingli Dai;Jing Gao

作者机构:

关键词: Antioxidant;Deltamethrin;Dinotefuran;Oxidative stress;Resveratrol;Tebuconazole

期刊名称: Pesticide Biochemistry and Physiology

ISSN: 0048-3575

年卷期: 2025 年 210 卷

页码:

收录情况: SCIE(2025版)

摘要: The widespread use of pesticides poses a significant threat to honeybee health by impacting their survival, behavior, immune function, and detoxification capacity. While phytochemicals such as resveratrol (RSV) have shown potential in mitigating oxidative stress and enhancing antioxidant defenses, their role in improving honeybee tolerance to pesticide exposure remains underexplored. In this study, we investigated the effects of RSV supplementation on honeybees exposed to three pesticides: dinotefuran (DIN), tebuconazole (TEB), and deltamethrin (DEL). The results showed that RSV supplementation significantly improved survival, feed intake, mobility, and gustatory sensitivity, indicating its protective effects against pesticide toxicity. Furthermore, RSV helped normalize impaired detoxification enzyme activities, including SOD, POD, catalase, and glutathione reductase, and reduced ROS levels and lipid peroxidation. Gene expression analysis revealed that RSV modulates Toll pathway-related genes like defensin and apidaecin, alleviating immune suppression caused by pesticides. Additionally, RSV influenced the insulin/insulin-like growth factor signaling (IIS) pathway by reducing ilp1 and inr1 expression, potentially mitigating metabolic stress. These findings demonstrate that protective effects of RSV may be linked to its ability to counter oxidative stress, restore mitochondrial function, and enhance energy metabolism. Furthermore, RSV is widely available, cost-effective, and easily incorporated into bee feed, making it feasible for large-scale application. This study highlights the protective role of RSV in pesticide detoxification in honeybees, offering new perspectives for honeybee health management and environmental toxicology research. By reducing the adverse effects of pesticides on honeybees, the application of RSV not only contributes to maintaining ecological balance but also supports sustainable agricultural practices. Future research should focus on optimizing its dosage, evaluating long-term effects, and investigating its impact on colony dynamics to facilitate its practical implementation in apiculture.

分类号:

  • 相关文献

[1]Impact of chiral tebuconazole on the flavor components and color attributes of Merlot and Cabernet Sauvignon wines at the enantiomeric level. Zhao S., Li M., Simal-Gandara J.,田健., Chen J., Dai X., Kong Z.. 2022

[2]Resveratrol inhibits African swine fever virus replication via the Nrf2-mediated reduced glutathione and antioxidative activities. Liu, Di,Li, Lian-Feng,Zhai, Huanjie,Wang, Tao,Lan, Jing,Cao, Mengxiang,Yao, Meng,Wang, Yijing,Li, Jia,Song, Xin,Sun, Yuan,Qiu, Hua-Ji. 2025

[3]Nutritional composition and antioxidant activity of twenty mung bean cultivars in China. Zhenxing Shi,Yang Yao,Yingying Zhu,GuixingRen. 2016

[4]Effects of Sihuang Zhili Granules on the Diarrhea Symptoms, Immunity, and Antioxidant Capacity of Poultry Challenged with Lipopolysaccharide (LPS). Wang, Shaolong,Li, Chong,Zhang, Chaosheng,Liu, Guohua,Zheng, Aijuan,Qiu, Kai,Chang, Wenhuan,Chen, Zhimin. 2023

[5]Genome-Wide CRISPR/Cas9 Screen Identifies New Genes Critical for Defense Against Oxidant Stress in Toxoplasma gondii. Yun Chen,Qi Liu,Jun Xin Xue,Man Yu Zhang,Xiao Ling Geng,Quan Wang,Wei Jiang. 2021

[6]Advances in the Application of Phytogenic Extracts as Antioxidants and Their Potential Mechanisms in Ruminants. Minyu Piao,Yan Tu,Naifeng Zhang,Qiyu Diao,Yanliang Bi. 2023

[7]Reactive oxygen species signaling in melatonin-mediated plant stress response. Golam Jalal Ahammed,Zhe Li,Jingying Chen,Yifan Dong,Kehao Qu,Tianmeng Guo,Fenghua Wang,Airong Liu,Shuangchen Chen,Xin Li. 2024

[8]Effects of Crude Extract of Glycyrrhiza Radix and Atractylodes macrocephala on Immune and Antioxidant Capacity of SPF White Leghorn Chickens in an Oxidative Stress Model. Chaosheng Zhang,Shaolong Wang,Yunsheng Han,Aijuan Zheng,Guohua Liu,Kun Meng,Peilong Yang,Zhimin Chen. 2024

[9]Plant-derived squalene supplementation improves growth performance and alleviates acute oxidative stress-induced growth retardation and intestinal damage in piglets. Junquan Tian,Qian Jiang,Xuetai Bao,Fan Yang,Yuying Li,Haihui Sun,Kang Yao,Yulong Yin. 2023

[10]Impact of chiral tebuconazole on the flavor components and color attributes of Merlot and Cabernet Sauvignon wines at the enantiomeric level. Zhao S., Li M., Simal-Gandara J., Tian J., Chen J., Dai X., Kong Z.. 2022

[11]Development of a Monoclonal Antibody-Based Enzyme Immunoassay for the Pyrethroid Insecticide Deltamethrin. Kong, Ye,Zhang, Qi,Zhang, Wen,Li, Peiwu,Zhang, Wen,Li, Peiwu,Zhang, Qi,Gee, Shirley J..

[12]DGE analysis of changes in gene expression in response to temperature and deltamethrin stress in the silkworm (Bombyx mori). Tang, Xudong,Li, Nan,Wang, Wei,Yu, Jie,Xu, Li,Shen, Zhongyuan,Tang, Xudong,Xu, Li,Shen, Zhongyuan. 2016

[13]The in vitro efficacy of deltamethrin and alpha-cypermethrin against "engorged female Haemaphysalis qinghaiensis ticks (Acari: Ixodidae). Ma, Miling,Guan, Guiquan,Liu, Qing,Dang, Zhisheng,Liu, Aihong,Ren, Qiaoyun,Liu, Zhijie,Li, Youquan,Chen, Ze,Liu, Junlong,Yang, Jifei,Yin, Hong,Luo, Jianxun. 2013

[14]EFFECTS OF SUBLETHAL CONCENTRATIONS OF BIFENTHRIN AND DELTAMETHRIN ON FECUNDITY, GROWTH, AND DEVELOPMENT OF THE HONEYBEE APIS MELLIFERA LIGUSTICA. Dai, Ping-Li,Wang, Qiang,Liu, Feng,Wang, Xing,Wu, Yan-Yan,Zhou, Ting,Dai, Ping-Li,Wang, Qiang,Liu, Feng,Wu, Yan-Yan,Zhou, Ting,Sun, Ji-Hu.

[15]Fate of chlorpyrifos, omethoate, cypermethrin, and deltamethrin during wheat milling and Chinese steamed bread processing. Lili Yu,Huijie Zhang,Xinning Niu,Li Wu,Yan Zhang,Bujun Wang. 2021

[16]Sublethal Exposure to Deltamethrin Stimulates Reproduction and Alters Symbiotic Bacteria in Aphis gossypii. Shang, Jiao,Yao, Yong-Sheng,Chen, Lu-Lu,Zhu, Xiang-Zhen,Niu, Lin,Gao, Xue-Ke,Luo, Jun-Yu,Ji, Ji-Chao,Cui, Jin-Jie. 2021

[17]Biological removal of deltamethrin in contaminated water, soils and vegetables by Stenotrophomonas maltophilia XQ08. Xiaomao Wu,Cheng Zhang,Huaming An,Ming Li,Xinglu Pan,Fengshou Dong,Yongquan Zheng. 2021

[18]Lipidomics Atlas Tracks Alterations Associated with Deltamethrin-Induced Developmental Neurotoxicity in Embryonic Zebrafish. Gao, Longhua,Hao, Jingwen,Hua, Zhengyi,Zeng, Changchun,Li, Jia,Zeng, Jun. 2025

[19]Dissipation, residues, and safety evaluation of trifloxystrobin and tebuconazole on ginseng and soil. Wang, Yan,Gao, Jie,Liu, Chang,Wang, Chunwei,Cui, Lili,Li, Aijun.

[20]Enantioselective Degradation of Tebuconazole in Wheat and Soil under Open Field Conditions. Ye, Xiaolan,Peng, Anguo,Peng, Anguo,Qiu, Jing,Chai, Tingting,Zhao, Hualin,Ge, Xinghua. 2013

作者其他论文 更多>>