数字农科院2.0

Early-Life Sublethal Exposure to Thiacloprid Alters Adult Honeybee Gut Microbiota

文献类型: 外文期刊

作者: Bin Li;Xiasang Chen;Li Ke;Pingli Dai;Yuan Ge;Yong Jun Liu

作者机构:

关键词: 16S rDNA sequencing;larval stage;microbiome;thiacloprid

期刊名称: Genes

ISSN: 2073-4425

年卷期: 2024 年 15 卷 8 期

页码:

收录情况: SCIE(2024版)

摘要: Thiacloprid, a neonicotinoid pesticide, is known to affect the gut microbiome of honeybees, yet studies often focus on immediate alternations during exposure, overlooking long-term microbiological impacts post-exposure. This study investigates the influences of sublethal thiacloprid administered during the larval developmental stage of honeybees on physiological changes and gut microbiota of adult honeybees. We found that thiacloprid exposure increased mortality and sugar intake in emerged honeybees. Using 16S rDNA sequencing, we analyzed intestinal microbial diversity of honeybees at one and six days post-emergence. Our findings reveal a significant but transient disruption in gut microbiota on day 1, with recovery from dysbiosis by day 6. This study emphasizes the importance of evaluating chronic sublethal exposure risks of thiacloprid to protect honeybee health.

分类号:

  • 相关文献

[1]Acetobacter bacteria are found in Zhenjiang vinegar grains. Wang, C. Y.,Zhang, J.,Wang, C. Y.,Gui, Z. Z.. 2015

[2]Molecular-based environmental risk assessment of three varieties of genetically engineered cows. Xu, Jianxiang,Zhao, Jie,Wang, Jianwu,Zhao, Yaofeng,Zhang, Lei,Li, Ning,Chu, Mingxing. 2011

[3]Thirty-one years of rice-rice-green manure rotations shape the rhizosphere microbial community and enrich beneficial bacteria. Zhang, Xiaoxia,Zhang, Ruijie,Gao, Jusheng,Wang, Xiucheng,Fan, Fenliang,Ma, Xiaotong,Zhang, Caiwen,Feng, Kai,Deng, Ye,Yin, Huaqun,Gao, Jusheng.

[4]Changes In Intestinal Microbiota Of Type 2 Diabetes In Mice In Response To Dietary Supplementation With Instant Tea Or Matcha. Zhang, Shi-kang,Huang, Mei-gui,Lv, Yang-jun,Liu, Jun,Zhang, Hai-hua,Zhu, Yue-jin,Pan, Jun-xian,Jiang, Yu-lan. 2020

[5]Differences in the Soil Bacterial Communities Under Organic Farming and Conventional Farming Modes Revealed by 16S rDNA Sequencing. Yang, Yazhen,Fang, Mingke,Wu, Meiyan,Zhang, Huaisheng,Li, Huizhen,Zhu, Jianqiang. 2021

[6]Source Tracker Modeling Based on 16S rDNA Sequencing and Analysis of Microbial Contamination Sources for Pasteurized Milk. Du, Bingyao,Meng, Lu,Wu, Haoming,Yang, Huaigu,Liu, Huimin,Zheng, Nan,Zhang, Yangdong,Zhao, Shengguo,Wang, Jiaqi. 2022

[7]Changes in seminal plasma microecological dynamics and the mechanistic impact of core metabolite hexadecanamide in asthenozoospermia patients. Han, Baoquan,Wang, Yongyong,Ge, Wei,Wang, Junjie,Yu, Shuai,Yan, Jiamao,Hua, Lei,Zhang, Xiaoyuan,Yan, Zihui,Wang, Lu,Zhao, Jinxin,Huang, Cong,Yang, Bo,Wang, Yan,Ma, Qian,Zhao, Yong,Jiang, Hui,Zhang, Yunqi,Liang, Shaolin,Zhao, Jianjuan,Sun, Zhongyi,Shen, Wei,Gui, Yaoting. 2024

[8]Alteration in microbes changed the contents of oviposition-deterrent pheromones on the Spodoptera litura egg surface. Hu, Liming,Chen, Yirui,Wu, Qingjun,Zeng, Qiumei,Zhang, Taoli,Yu, Guohui,He, Muyang,Chen, Dasong,Su, Xiangning,Zhang, Yuping,Zhang, Zhenfei,Shen, Jianmei. 2024

[9]Bioavailability assessment of thiacloprid in soil as affected by biochar. Zhu, Yulong,Liu, Xingang,Wu, Xiaohu,Dong, Fengshou,Xu, Jun,Zheng, Yongquan.

[10]Inhibition and recovery of biomarkers of earthworm Eisenia fetida after exposure to thiacloprid. Zhang, Lan,Zhang, Yanning,Zhang, Pei,Jiang, Hongyun.

[11]Chemometric-assisted QuEChERS extraction method for the residual analysis of thiacloprid, spirotetramat and spirotetramat's four metabolites in pepper: Application of their dissipation patterns. Liu, Xingang,Dong, Fengshou,Xu, Jun,Xu, Hanqing,Hu, Mingfeng,Zheng, Yongquan. 2016

[12]Supercritical Fluid Chromatographic-Tandem Mass Spectrometry M.ethod For Monitoring Dissipation O f Thiacloprid In Greenhouse Vegetables And Soil Under Different Application Modes. Liu, Xingang,Wu, Xiaohu,Pan, Xinglu,Tao, Yan,Xu, Jun,Dong, Fengshou,Li, Runan,Zheng, Yongquan,Chen, Zenglong. 2018

[13]Acute and chronic effects of sublethal neonicotinoid thiacloprid to Asian honey bee (Apis cerana cerana). Min Shi,Yi Guo,Yan Yan Wu,Ping Li Dai,Shao Jun Dai,Qing Yun Diao,Jing Gao. 2023

[14]The Degradation Dynamics And Rapid Detection Of Thiacloprid And Its Degradation Products In Water And Soil By Uhplc-Qtof-Ms. Chen, KY, Liu, XG, Wu, XH, Xu, J, Dong, FS, Zheng, YQ. 2021

[15]Thiacloprid impairs honeybee worker learning and memory with inducing neuronal apoptosis and downregulating memory-related genes. Airui Li,Linghong Yin,Li Ke,Qing Yun Diao,Yanyan Wu,Pingli Dai,Yong Jun Liu. 2023

[16]Thiacloprid-silica nano-delivery system enhances toxicity against Aphis gossypii and improves non-target biosafety. Xiaohui Yan,Yongpan Shan,Yajie Ma,Yanqin Wang,Changcai Wu,Xiangliang Ren,Xianpeng Song,Dan Wang,Hongyan Hu,Xiaoyan Ma,Yan Ma. 2024

[17]Chronic larval exposure to thiacloprid impairs honeybee antennal selectivity, learning and memory performances. Ke L.,Chen X.,Dai P.,Liu Y.-J.. 2023

[18]Simultaneous determination of thiacloprid and its five metabolites in vegetables and flowers using QuEChERS combined with HPLC-MS/MS. Pan, Shaodong,Song, Xianpeng,Wang, Dan,Ma, Yajie,Ren, Xiangliang,Hu, Hongyan,Shan, Yongpan,Ma, Xiaoyan,Luo, Junyu,Wu, Changcai,Ma, Yan,Cui, Jinjie. 2023

[19]Early-Life Sublethal Thiacloprid Exposure to Honey Bee Larvae: Enduring Effects on Adult Bee Cognitive Abilities. Chen X.,Li A.,Yin L.,Ke L.,Dai P.,Liu Y.-J.. 2024

[20]Deposition, dissipation, metabolism and honey bee exposure risk of thiacloprid in greenhouse scenario. Shaodong Pan,Yuweng Sun,Yongpan Shan,Xianpeng Song,Dan Wang,Yajie Ma,Hongyan Hu,Xiangliang Ren,Yan Ma,Changcai Wu. 2025

作者其他论文 更多>>