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来源: 发布时间:2023-06-15 21:36:56 浏览次数: 【字体:

1. Li S P, Chen Z X, Gao G, et al. Development of an agroinfiltration-based transient hairpin RNA expression system in pak choi leaves (Brassica rapa ssp. chinensis) for RNA interference against Liriomyza sativae[J]. Pesticide Biochemistry and Physiology, 2024, 204: 106091.

2. Xuan J L, Scheffer S J, Lewis M, et al. The phylogeny and divergence times of leaf-mining flies (Diptera: Agromyzidae) from anchored phylogenomics[J]. Molecular Phylogenetics and Evolution, 2023, 184: 107778.

3. Xuan J L, Scheffer S J, Lonsdale O, et al. A genome‐wide phylogeny and the diversification of genus Liriomyza (Diptera: Agromyzidae) inferred from anchored phylogenomics[J]. Systematic Entomology, 2023, 48(1): 178-197.

4. Yang H H, Li S P, Yin M Z, et al. Functional differentiation of two general odorant-binding proteins to sex pheromones in Spodoptera frugiperda[J]. Pesticide Biochemistry and Physiology, 2023, 191: 105348.

5. Li L L, Huang J R, Xu J W, et al. Ligand‐binding properties of odorant‐binding protein 6 in Athetis lepigone to sex pheromones and maize volatiles[J]. Pest Management Science, 2022, 78(1): 52-62.

6. Xu L, Zhao J, Xu D, et al. Application of transcriptomic analysis to unveil the toxicity mechanisms of fall armyworm response after exposure to sublethal chlorantraniliprole[J]. Ecotoxicology and Environmental Safety, 2022, 230: 113145.

7. Zhang Y N, Xu J W, Zhang X C, et al. Organophosphorus insecticide interacts with the pheromone-binding proteins of Athetis lepigone: Implication for olfactory dysfunction[J]. Journal of hazardous materials, 2020, 397: 122777.

终审:皖北作物害虫绿色防控技术研究中心
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