Field evaluation of eight attractant traps for Bactrocera minax (Diptera: Tephritidae) in a navel orange orchard in China
文献类型: 外文期刊
第一作者: Ouyang, Ge-Cheng
作者: Ouyang, Ge-Cheng;Meng, Xiang;Xiao, Fu-Lian;Lu, Yong-Yue;Zhang, Zhong-Gang;Tian, Jian;Xia, Yulu
作者机构:
关键词: Chinese citrus fly; citrus; lure; trapping
期刊名称:FLORIDA ENTOMOLOGIST ( 影响因子:1.425; 五年影响因子:1.595 )
ISSN: 0015-4040
年卷期: 2018 年 101 卷 2 期
页码:
收录情况: SCI
摘要: The Chinese citrus fly, Bactrocera minax (Enderlein) (Diptera: Tephritidae), is the most destructive pest in many citrus orchards of south central China. Methyl eugenol and cuelure, 2 potent male lures that are effective for capturing related species, are believed not to attract this species. Limited knowledge is available about the effectiveness of attractant traps for this pest. A field trial was carried out to determine the efficacy of 8 attractant traps to B. minax. The study was conducted during the adult occurrence season in an orchard of navel orange, Citrus sinensis (L.) Osbeck (Rutaceae), in Zhijiang County, Hunan Province, China, in 2016. To link the efficacy of these attractant traps with the pest population, fruit infestations in the orchard also were investigated. As expected, this study confirmed that methyl eugenol and cuelure were not attractive to B. minax. Green-colored sticky spheres trapped significantly more flies and males than methyl eugenol and cuelure-baited traps. On average, ammonium acetate + putrescine trapped more females than males, but it was not statistically better than any of the other tested attractant traps. Fruit infestation rates by B. minax ranged from 0.7 to 11.1% in the replicates. Judging by the results of trapping and actual field infestation, it appears that trap effectiveness of the 8 attractant traps was low. A more potent attractant trap is needed, especially for early detection of the pest.
分类号:
- 相关文献
作者其他论文 更多>>
-
Enhancing the endo-activity of the thermophilic chitinase to yield chitooligosaccharides with high degrees of polymerization
作者:Zhang, Ruohan;Zhang, Honglian;Tu, Tao;Luo, Huiying;Yao, Bin;Tian, Jian;Huang, Huoqing;Guan, Feifei;Tian, Xiaoqian;Zhang, Yan;Wu, Ningfeng;Tian, Jian;Tian, Xiaoqian;Zhang, Yan;Sun, Jilu
关键词:Chitin; Chitinase; Endo-activity; Mutants; Functional oligosaccharides
-
A novel nucleic acid linker for multi-gene expression enhances plant and animal synthetic biology
作者:Ma, Xuhui;Yue, Qun;Miao, Liqing;Li, Suzhen;Zhang, Liwen;Yang, Wenzhu;Zhou, Xiaojin;Chen, Rumei;Xu, Yuquan;Liu, Xiaoqing;Tian, Jian;Si, Wei;Zhang, Junmin
关键词:nucleic acid linker; multi-gene expression; gene stacking; synthetic biology; astaxanthin
-
Metal-Binding Protein TaGlo1 Improves Fungal Resistance to Arsenite (AsIII) and Methylarsenite (MAsIII) in Paddy Soil
作者:Li, Lijuan;Sun, Yifei;He, Chao;Zeng, Xibai;Su, Shiming;Tian, Jian;Guan, Feifei;Huang, Ke;Xue, Ximei;Chen, Jian;Zhang, Tuo
关键词:rice rhizosphere; cysteine residues; detoxification; site-directed mutation; isothermal titration calorimetry
-
Mining and rational design of psychrophilic catalases using metagenomics and deep learning models
作者:Wu, Shuning;Su, Yongping;Xu, Xinxin;Zhang, Yuhong;Tian, Jian;Zhang, Wei;Liu, Bo;Wu, Shuning;Su, Yongping;Zhang, Zhiwei;Xu, Guoshun;Huang, Huoqing;Tian, Jian
关键词:Catalase; Optimum temperature; Metagenomics; Deep learning model; Rational design
-
Harnessing microbial interactions with rice: Strategies for abiotic stress alleviation in the face of environmental challenges and climate change
作者:Zhao, Jintong;Delaplace, Pierre;Zhao, Jintong;Zhang, Chunyi;Wu, Ningfeng;Zhang, Wei;Tian, Jian;Zhao, Jintong;Zhang, Wei;Wang, Yuan;Yao, Bin;Tian, Jian;Yu, Xiaoxia;Zhang, Chunyi;Hou, Ligang
关键词:Rice growth; Abiotic stress; Microbiome interactions; Stress tolerance mechanisms; Microbial inoculants; Sustainable agriculture
-
Protein-protein interaction and site prediction using transfer learning
作者:Liu, Tuoyu;Ren, Xiaopu;Liu, Bo;Wu, Ningfeng;Gao, Han;Xu, Guoshun;Luo, Huiying;Wang, Yuan;Tu, Tao;Yao, Bin;Huang, Huoqing;Tian, Jian;Teng, Yue
关键词:protein-protein interaction; transformer; PPI site; transfer learning; BERT
-
MECE: a method for enhancing the catalytic efficiency of glycoside hydrolase based on deep neural networks and molecular evolution
作者:Liu, Hanqing;Luo, Huiying;Yao, Bin;Tian, Jian;Huang, Huoqing;Liu, Hanqing;Guan, Feifei;Liu, Tuoyu;Yang, Lixin;Fan, Lingxi;Liu, Xiaoqing;Wu, Ningfeng;Tian, Jian
关键词:MECE; Deep learning; Catalytic efficiency; Glycoside hydrolases; Feature extraction