数字农科院2.0

Dissection of genetic basis underlying heat stress response of Apis cerana

文献类型: 外文期刊

作者: Ao Mei Li;Chun Xiu Pang;Xiao Lin Cai;Fu Chang Zhuo;Bo Hu;Xue Hua Huang;Jia Xiang Huang;Yu Ming Lu

作者机构:

关键词: Antioxidant activity;Apis cerana;DEGs;Heat stress;Transcriptomic

期刊名称: BMC Genomics

ISSN: 1471-2164

年卷期: 2025 年 26 卷 1 期

页码:

收录情况: SCIE(2025版)

摘要: The honeybee Apis cerana as an important pollinator contributes significantly to ecological diversity. In recent years, it has been used as a common pollinator in greenhouses, but it is highly susceptible to heat stress, which affects its behavior, physiology, survival, and gene expression. Here, we conducted transcriptomic analysis to identify differentially expressed genes (DEGs) and reveal the associated biological processes in the queen head and ovary of honeybee A. cerana under different temperatures. Differential expression analysis revealed 116 DEGs (72 upregulated, 44 downregulated) in the head and 106 DEGs (78 upregulated, 28 downregulated) in the ovary after 24 h of heat stress. At 96 h, 29 DEGs (17 upregulated, 12 downregulated) were identified in the head, and 44 DEGs (34 upregulated, 10 downregulated) in the ovary. After 168 h, the number of DEGs increased significantly: 846 DEGs (567 upregulated, 279 downregulated) in the head, 479 DEGs (296 upregulated, 183 downregulated) in the ovary, and 582 DEGs (338 upregulated, 244 downregulated) in the thorax. DEGs associated with metabolic processes, signaling, and transport pathways were significantly altered under heat stress, potentially contributing to the reduced reproductive and growth capacity of bees. Additionally, genes related to antioxidant activity, nutrient metabolism, heat shock proteins, zinc finger proteins, and serine/threonine-protein kinases were differentially expressed across treatments. Overall, the head and ovaries of honeybee queens show a significant response to heat shock, and these responses are related to antioxidant genes, heat shock proteins, and metabolic regulation, our findings provide genetic information for the breeding of heat-resistant bee strains.

分类号:

  • 相关文献

[1]Feeding rumen-protected gamma-aminobutyric acid enhances the immune response and antioxidant status of heat-stressed lactating dairy cows. Cheng, Jianbo,Zheng, Nan,Li, Songli,Wang, Jiaqi,Zhang, Yangdong,Cheng, Jianbo,Sun, Xianzhi,Zheng, Nan,Li, Songli,Zhang, Yangdong,Wang, Jiaqi.

[2]Dynamics in the resistant and susceptible peanut (Arachis hypogaea L.) root transcriptome on infection with the Ralstonia solanacearum. Chen, Yuning,Ren, Xiaoping,Zhou, Xiaojing,Huang, Li,Yan, Liying,Lei, Yong,Liao, Boshou,Huang, Shunmou,Wei, Wenhui,Jiang, Huifang,Huang, Jinyong. 2014

[3]Transcriptome Sequencing Identified Genes and Gene Ontologies Associated with Early Freezing Tolerance in Maize. Li, Zhao,Hu, Guanghui,Liu, Xiangfeng,Zhou, Yao,Zhang, Qian,Yang, Deguang,Zhang, Zhiwu,Li, Zhao,Hu, Guanghui,Zhang, Xu,Yuan, Xiaohui,Zhang, Zhiwu,Hu, Guanghui,Wang, Tianyu,Yuan, Xiaohui. 2016

[4]Alteration of gene expression profile in the roots of wild diploid Arachis duranensis inoculated with Ralstonia solanacearum. Chen, Y. N.,Ren, X. P.,Zhou, X. J.,Huang, L.,Huang, J. Q.,Yan, L. Y.,Lei, Y.,Wei, W. H.,Jiang, H. F.,Qi, Y..

[5]Transcriptome Analysis of Roots from Wheat (Triticum aestivum L.) Varieties in Response to Drought Stress. Xi, Wei,Hao, Chenyang,Li, Tian,Wang, Huajun,Zhang, Xueyong. 2023

[6]Comparative transcriptional and co-expression network analysis of two upland cotton accessions with extreme phenotypic differences reveals molecular mechanisms of fiber development. Jiasen He,Zhongyang Xu,Muhammad Tehseen Azhar,Zhen Zhang,Pengtao Li,Juwu Gong,Xiao Jiang,Senmiao Fan,Qun Ge,Youlu Yuan,Haihong Shang. 2023

[7]Transcriptome Reveals Allele Contribution to Heterosis in Maize. Jianzhong Wu,Dequan Sun,Qian Zhao,Hongjun Yong,Degui Zhang,Zhuanfang Hao,Zhiqiang Zhou,Jienan Han,Xiaocong Zhang,Zhennan Xu,Xinhai Li,Mingshun Li,Jianfeng Weng. 2021

[8]Metabolic profiling and transcriptome analysis provide insights into the accumulation of flavonoids in chayote fruit during storage. Pu Y.,Wang C.,Jiang Y.,Wang X.,Ai Y.,Zhuang W.. 2023

[9]RNA Sequencing Analysis of Metopolophium dirhodum (Walker) (Hemiptera: Aphididae) Reveals the Mechanism Underlying Insecticide Resistance. Haifeng Gao,Xun Zhu,Guangkuo Li,Enliang Liu,Yuyang Shen,Sifeng Zhao,Feng Ge. 2021

[10]Inflorescence Transcriptome Sequencing and Development of New EST-SSR Markers in Common Buckwheat (Fagopyrum esculentum). Yang Liu,Xiaomei Fang,Tian Tang,Yudong Wang,Yinhuan Wu,Jinyu Luo,Haotian Wu,Yingqian Wang,Jian Zhang,Renwu Ruan,Meiliang Zhou,Kaixuan Zhang,Zelin Yi. 2022

[11]The stereoselective toxicity of dinotefuran to Daphnia magna: A systematic assessment from reproduction, behavior, oxidative stress and digestive function. Hongyuan Zhang,Xiangyu Ren,Tong Liu,Ying Zhao,Yantai Gan,Lei Zheng. 2023

[12]Comparative transcriptome analysis of interspecific CSSLs reveals candidate genes and pathways involved in verticillium wilt resistance in cotton (Gossypium hirsutum L.). Youzhong Li,Xinyu Zhang,Zhongxu Lin,Qian Hao Zhu,Yanjun Li,Fei Xue,Shuaishuai Cheng,Hongjie Feng,Jie Sun,Feng Liu. 2023

[13]Comparative Transcriptome Profiling of CMS-D2 and CMS-D8 Systems Characterizes Fertility Restoration Genes Network in Upland Cotton. Xiatong Song,Meng Zhang,Kashif Shahzad,Xuexian Zhang,Liping Guo,Tingxiang Qi,Huini Tang,Hailin Wang,Xiuqin Qiao,Juanjuan Feng,Yang Han,Chaozhu Xing,Jianyong Wu. 2023

[14]Transcriptome analysis reveals key regulatory genes for root growth related to potassium utilization efficiency in rapeseed (Brassica napus L.). Ibrahim, Sani,Ahmad, Nazir,Kuang, Lieqiong,Li, Keqi,Tian, Ze,Sadau, Salisu Bello,Tajo, Sani Muhammad,Wang, Xinfa,Wang, Hanzhong,Dun, Xiaoling. 2023

[15]Immune Response and Transcriptome Analysis of the Head Kidney to Different Concentrations of Aeromonas veronii in Common Carp (Cyprinus carpio). Jin Zhang,Ning Ding,Yingjie Qi,Na Jiang,Wei Xing,Tieliang Li,Zhihong Ma,Yiming Cao,Yan Zhang,Jiongtang Li. 2024

[16]Effect of Phosphate-Deficiency Stress on the Biological Characteristics and Transcriptomics of Panax ginseng. Hai Sun,Hao Liang,Cai Shao,Jiaqi Qian,Jiapeng Zhu,Guojia Zhang,Bochen Lv,Yayu Zhang. 2024

[17]Effect of cold stress on photosynthetic physiological characteristics and molecular mechanism analysis in cold-resistant cotton (ZM36) seedlings. Youzhong Li,Jincheng Zhu,Jianwei Xu,Xianliang Zhang,Zongming Xie,Zhibo Li. 2024

[18]NPR1-dependent salicylic acid signaling is not involved in elevated CO2-induced heat stress tolerance in Arabidopsis thaliana. Li, Xin,Ahammed, Golam Jalal,Li, Xin,Yu, Jingquan,Shi, Kai. 2015

[19]Prevalence of honeybee viruses in different regions of China and Argentina. Ding, G.,Lv, L.,Liu, Z.,Shi, W.,Fondevila, N.,Palacio, M. A.,Merke, J.,Martinez, A.,Camacho, B.,Aignasse, A.,Figini, E.,Rodriguez, G..

[20]A scientific note on detection of honeybee viruses in the darkling beetle (Alphitobius diaperinus, Coleoptera: Tenebrionidae), a new pest in Apis cerana cerana colonies. Li, Zhiguo,Huang, Shaokang,Huang, Wei-fone,Geng, Haiyang,Li, Meng,Su, Songkun,Zhao, Yazhou,Chen, Yanping.

作者其他论文 更多>>