数字农科院2.0

RNA Sequencing Analysis of Metopolophium dirhodum (Walker) (Hemiptera: Aphididae) Reveals the Mechanism Underlying Insecticide Resistance

文献类型: 外文期刊

作者: Haifeng Gao;Xun Zhu;Guangkuo Li;Enliang Liu;Yuyang Shen;Sifeng Zhao;Feng Ge

作者机构:

关键词: DEGs; insecticide; Metopolophium dirhodum; resistance; RNA-seq

期刊名称: Frontiers in Sustainable Food Systems

ISSN:

年卷期: 2021 年 5 卷

页码:

收录情况: 不在遴选数据库范围

摘要: Xinjiang (XJ) and Ningxia (NX) provinces are important agricultural regions in western China. Aphids are one kind of the most devastating pests in both the provinces. Aphids are typical phloem-feeding insects distributed worldwide and can severely damage crops. In this study, two representative Metopolophium dirhodum (Walker) (Hemiptera: Aphididae) populations were collected from the typical agricultural regions of XJ and NX, respectively for a high-throughput transcriptome sequencing analysis. A total of 5,265 differentially expressed genes (DEGs) were identified. The functional annotation of DEGs and the identification of enriched pathways indicated many of the DEGs are involved in processes related to energy metabolism, development, and insecticide resistance. Furthermore, an investigation of insecticide toxicity revealed the NX population is more resistant to insecticide treatments than the XJ population. Thus, the transcriptome data generated in present study can be used for functional gene characterization relevant to aphid development, metabolism, environmental adaptation, and insecticide resistance. © Copyright © 2021 Gao, Zhu, Li, Liu, Shen, Zhao and Ge.

分类号:

  • 相关文献

[1]Dissipation behavior and risk assessment of tolfenpyrad from tea bushes to consuming. Wang X., Zhang X., Wang Z., Zhou L., Luo F., Chen Z.. 2022

[2]Comparative Transcriptome Analysis Of Cabbage (.Brassica Oleracea Var. Capitata) I nfected By Plasmodiophora Brassicae Reveals Drastic Defense Response At Secondary Infection Stage. Ning, Y, Wang, Y, Fang, ZY, Zhuang, M, Zhang, YY, Lv, HH, Liu, YM, Li, ZS, Yang, LM. 2019

[3]甘蓝型油菜角果数突变体基因的定位及候选基因分析. 赵改会,,李书宇,, 詹杰鹏,,李晏斌,,师家勤,,王新发,,王汉中. 2021

[4]基于高通量测序的水貂胚胎滞育期和激活期卵巢转录组分析. 韩玉萍,赵向远,范冰峰,刘理想,邵静,许保增. 2021

[5]Identification Of Glutathione S-Transferases In B.emisia Tabaci (Hemiptera: Aleyrodidae) A nd Evidence That Gstd7 Helps Explain The Difference In Insecticide Susceptibility Between B.Tabaci Middle East-Minor Asia 1 And Mediterranean. He, C, Xie, W, Yang, X, Wang, SL, Wu, QJ, Zhang, YJ. 2018

[6]Loss Of Soil Microbial Diversity M.ay Increase Insecticide Uptake B y Crop. Zhang, M, Liang, YC, Son, A, Yu, B, Zeng, XB, Chen, MS, Yin, HQ, Zhang, XX, Sun, BL, Fan, FL. 2017

[7]Joint Toxicity Of Acetamiprid And C.o-Applied Pesticide Adjuvants On H oneybees Under Semifield And Laboratory Conditions. Chen, L, Yan, QP, Zhang, JZ, Yuan, SK, Liu, XG. 2019

[8]Facile Three-Component Synthesis, Insecticidal And A.ntifungal Evaluation Of Novel D ihydropyridine Derivatives. Yang, GZ, Shang, XF, Cheng, PL, Yin, XD, Zhu, JK, Liu, YQ, Zhang, J, Zhang, ZJ. 2018

[9]Semi-Synthesis And Insecticidal Activity Of S.pinetoram J And Its D -Forosamine Replacement Analogues. Zhang, K, Li, JR, Liu, HL, Wang, HY, Lamusi, A. 2018

[10]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

[11]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

[12]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..

[13]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

[14]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

[15]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

[16]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

[17]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

[18]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

[19]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

[20]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

作者其他论文 更多>>