Genome-Wide Identification and Expression Profiling of Candidate Sex Pheromone Biosynthesis Genes in the Fall Armyworm (Spodoptera frugiperda)
文献类型: 外文期刊
作者: Qu, Cheng 1 ; Kang, Zhiwei 2 ; Zhang, Biyun 1 ; Fang, Yong 3 ; Wang, Ran 1 ; Li, Fengqi 1 ; Zhao, Haipeng 4 ; Luo, Chen 1 ;
作者机构: 1.Inst Plant Protect, Beijing Acad Agr & Forestry Sci, Beijing 100097, Peoples R China
2.Hebei Univ, Inst Life Sci & Green Dev, Sch Life Sci, Baoding 071002, Peoples R China
3.Hunan Acad Agr Sci, Hunan Agr Biotechnol Res Inst, Changsha 410125, Peoples R China
4.Shandong Agr Univ, Coll Plant Protect, Tai An 271018, Peoples R China
关键词: Spodoptera frugiperda; genome; sex pheromone gland; biosynthesis pathway
期刊名称:INSECTS ( 影响因子:3.139; 五年影响因子:3.285 )
ISSN:
年卷期: 2022 年 13 卷 12 期
页码:
收录情况: SCI
摘要: Simple Summary The fall armyworm (FAW), Spodoptera frugiperda, is a serious worldwide agricultural pest, threatening food security and crop production. Sex pheromone lures are commonly used in population monitoring and biological control of FAWs. Although the sex pheromone components of the FAW have been successfully identified, there are no reports on the molecular mechanism of FAW sex pheromone biosynthesis. In this study, we identified a total of 99 genes related to the biosynthesis of sex pheromones from the S. frugiperda genome, which belonged to 11 families of genes. Based on gene expression patterns and phylogenetic analysis, several genes had PG-biased expression, indicating that they may play an important role in sex pheromone biosynthesis. These results could lay a solid foundation for understanding the molecular mechanisms of S. frugiperda sex pheromone biosynthesis and provide new targets for developing novel pest control methods based on disrupting sexual communication. Spodoptera frugiperda is an agricultural pest causing substantial damage and losses to commercial crops. Sex pheromones are critical for successful mating in Lepidoptera and have been used for monitoring and control of many pest species. The sex pheromone of S. frugiperda is known, but the genes involved in its biosynthesis have not been identified. We systematically studied 99 candidate sex pheromone genes in the genome of S. frugiperda including 1 acetyl-CoA carboxylase (ACC), 11 fatty acid synthases (FASs), 17 desaturases (DESs), 4 fatty acid transport proteins (FATPs), 29 fatty acyl-CoA reductases (FARs), 17 acetyl-CoA acetyltransferases (ACTs), 5 acyl-CoA dehydrogenase (ACDs), 3 enoyl-CoA hydratases (ECHs), 3 hydroxyacyl-CoA dehydrogenases (HCDs), 6 ethyl-CoA thiolases (KCTs), and 3 acyl-CoA-binding proteins (ACBPs). Based on the comparative transcriptome results, we found 22 candidate sex pheromone biosynthesis genes predominately expressed in pheromone glands (PGs) than abdomens without PGs including SfruFAS4, SfruFATP3, SfruACD5, SfruKCT3, SfruDES2, SfruDES5, SfruDES11, SfruDES13, SfruFAR1, SfruFAR2, SfruFAR3, SfruFAR6, SfruFAR7, SfruFAR8, SfruFAR9, SfruFAR10, SfruFAR11, SfruFAR14, SfruFAR16, SfruFAR29, SfruACT6, and SfruACT10. A combination of phylogenetic and tissue-specific transcriptomic analyses indicated that SfruDES5, SfruDES11, SfruFAR2, SfruFAR3, and SfruFAR9 may be key genes involved in the sex pheromone synthesis of S. frugiperda. Our results could provide a theoretical basis for understanding the molecular mechanisms of sex pheromone biosynthesis in S. frugiperda, and also provide new targets for developing novel pest control methods based on disrupting sexual communication.
- 相关文献
作者其他论文 更多>>
-
Circabidian rhythm of sex pheromone reception in a scarab beetle
作者:Wang, Yinliang;Dong, Huanhuan;Qu, Yafei;Qin, Jianhui;Li, Kebin;Cao, Yazhong;Zhang, Shuai;Yin, Jiao;Wang, Yinliang;Dong, Huanhuan;Zhou, Yuxin;Ren, Bingzhong;Luo, Chen;Leal, Walter S.
关键词:
-
Tetraniliprole risk assessment: Unveiling a hidden threat for managing a generalist herbivore
作者:Qu, Cheng;Li, Yunyi;Zhan, Qianyuan;Luo, Chen;Wang, Ran;Qu, Cheng;Wang, Ran;Wang, Jinda;Guedes, Raul Narciso C.
关键词:Tobacco cutworm; Realized heritability; Baseline of susceptibility; Mode of inheritance; Biochemical mechanism; Transgenerational hormesis
-
Risk assessment, cross-resistance, biochemical mechanism and fitness cost of tetraniliprole resistance in the tomato pinworm Tuta absoluta
作者:Qu, Cheng;Yao, Jiaqi;Zhan, Qianyuan;Zhang, Daofeng;Li, Yunyi;Wang, Ran;Qu, Cheng;Yao, Jiaqi;Zhan, Qianyuan;Zhang, Daofeng;Li, Yunyi;Wang, Ran;Yao, Jiaqi;Huang, Jianlei
关键词:Tuta absoluta; Tetraniliprole; Risk assessment; Cross -resistance; Biochemical mechanism; Fitness cost
-
Baseline of susceptibility, risk assessment, biochemical mechanism, and fitness cost of resistance to dimpropyridaz, a novel pyridazine pyrazolecarboxamide insecticide, in Bemisia tabaci from China
作者:Tang, Juan;Qu, Cheng;Zhan, Qianyuan;Zhang, Daofeng;Luo, Chen;Wang, Ran;Tang, Juan;Qu, Cheng;Zhan, Qianyuan;Zhang, Daofeng;Luo, Chen;Wang, Ran;Wang, Jinda
关键词:Bemisia tabaci; Dimpropyridaz; Baseline of susceptibility; Risk assessment; Fitness cost; Detoxifying enzymes
-
Orco mediates olfactory behavior and oviposition in the whitefly Bemisia tabaci
作者:Li, Fengqi;Luo, Chen;Li, Fengqi;Tian, Jiahui;Di, Zhongjuan;Qu, Cheng;Luo, Chen;Fu, Yuejun;Yang, Shiyong
关键词:Whitefly; Orco; Behavior; Host recognition; Oviposition; RNAi
-
Overexpression of CYP6CX4 contributing to field-evolved resistance to flupyradifurone, one novel butenolide insecticide, in Bemisia tabaci from China
作者:Zhang, Qinghe;Tang, Juan;Gao, Bingli;Qu, Cheng;Luo, Chen;Wang, Ran;Tang, Juan;Wang, Jinda
关键词:Bemisia tabaci; Flupyradifurone; Cytochrome P450
-
Knockdown of one cytochrome P450 gene CYP6DW4 increases the susceptibility of Bemisia tabaci to dimpropyridaz, a novel pyridazine pyrazolecarboxamide insecticide
作者:Tang, Juan;Su, Qi;Tang, Juan;Zhang, Qinghe;Qu, Cheng;Luo, Chen;Wang, Ran;Tang, Juan;Zhang, Qinghe;Qu, Cheng;Luo, Chen;Wang, Ran
关键词:Bemisia tabaci; Dimpropyridaz; Insecticide detoxification; Cytochrome P450 monooxygenase