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    近年来发表论文

    【来源:     日期:2020/01/15    浏览量:  】【打印本页】 【关闭

    近年来发表论文:

    1. Tyrosine hydroxylase and DOPA decarboxylase are associated with pupal melanization during larval-pupal transformation in Antheraea pernyi. Frontiers in Physiology, 2022,13:832730.

    2. Biosynthesis Optimization of Silver Nanoparticles (AgNPs) using Trichoderma longibranchiatum and Biosafety Aassessment with silkworm (Bombyx mori). Arabian Journal of Chemistry, 2022, 00457.

    3. Expression Patterns of Three Important Hormone Genes and Respiratory Metabolism in Antheraea pernyi during Pupal Diapause under a Long Photoperiod. Insects, 2021,12(8), 699.

    4. Newly Emerging Pest in China, Rhynchaenus maculosus (Coleoptera: Curculionidae): Morphology and Molecular Identification with DNA Barcoding. Insects, 2021, 12, 568.

    5. Transcriptome sequencing and drought resistance gene annotation in Quercus liaotungensis leaves. Acta Physiologiae Plantarum, 2021,43:120

    6. Biosynthesis of silver nanoparticles (AgNPs) employing Trichoderma strains to control empty-gut disease of oak silkworm (Antheraea pernyi). Materis Today Communications, 28, 2021.102619.

    7. Prostaglandin A2 induces apoptosis in three cell lines derived from the fall armyworm, Spodoptera frugiperda. Archives of Insect Biochemistry and Physiology, 2021, e21844.

    8. Nitric oxide plays a crucial role in midgut immunity under microsporidian infection in Antheraea pernyi. Molecular immunology, 2020,126, 65-72.

    9. Truncated reactive center loop decrease the inhibitory activity of Antheraea pernyi serine protease inhibitor 6. Arch Insect Biochem Physiol. 2020,105(1):e21727.

    10. Screening of Bombyx mori brain proteins interacting with protein tyrosine phosphatase of BmNPV. Arch Insect Biochem Physiol. 2020,105(2):e21732.

    11. Uncovering the cellular and humoral immune responses of Antheraea pernyi hemolymph to Antheraea pernyi nucleopolyhedrovirus infection by transcriptome analysis. J Invertebr Pathol. 2019,166:107205.

    12. Transcriptome sequencing to unravel the molecular mechanisms underlying the cuticle liquefaction of Antheraea pernyi following Antheraea pernyi nucleopolyhedrovirus challenge. Mol Immunol. 2019,109:108-115.

    13. Polar tube structure and three polar tube proteins identified from Nosema pernyi. Journal of invertebrate pathology, 2019,168, 107272.

    14. Peptidoglycan recognition proteins regulate immune response of Antheraea pernyi in different ways. Journal of invertebrate pathology, 2019,166, 107204.

    15. DNA Barcoding:An Effective Tool for Species Identification of Lepidopteran Oak Pests. Anmial Husbandary and Feed Science, 2018, (2): 103-108.

    16. Morphological characterization and HSP70-, IGS-based phylogenetic analysis of two microsporidian parasites isolated from Antheraea pernyi. Parasitology Research, 2017, 116(3): 971-977.

    17. Upregulation of a Trypsin-Like Serine Protease Gene in Antheraea pernyi (Lepidoptera: Saturniidae) Strains Exposed to Different Pahtogens. Journal of Economic Entomology, 2017, 110(3):941-948.

    18. 柞蚕微粒子病潜在生物标志物的挖掘.昆虫学报,2021,64(11):1261-1274.

    19. 东北地区美丽乡村建设的优势树种-柞树.中国蚕业,2021,42(04):39-43.

    20. 辽东栎白粉病叶片的菌群结构和多样性分析[J.蚕业科学, 2021, 47(04): 310-315.

    21. 柞蚕尿酸盐颗粒转运相关基因BLOS2的表达特征及功能研究. 蚕业科学, 2020, 46(3): 0328-0335.

    22. 基于Cytb基因的秆野螟属Ostrinia昆虫遗传多样性及其系统发育研究. 沈阳农业大学学报, 2020, 51(3): 303-311

    23. 蒙古栎叶片的转录组测序及基因功能注释. 蚕业科学, 2020, 46(5): 013-018.

    24. 木霉菌辅助合成纳米银对甜瓜的防病促生作用研究. 生态环境学报, 2020, 29(1): 149-155

    25. 柞蚕饰腹寄蝇基于线粒体Cytb基因的种群变异及系统进化分析. 蚕业科学, 2019, 45(4):0509-0516.

    26. 辽宁省柞园木霉菌的分离鉴定及种群多样性分析.蚕业科学, 2019, 45(4):501-508

    27. 柞蚕RR-1亚族两种表皮蛋白ApCP12与ApCP23的表达特征及RNAi研究.昆虫学报, 2018, 62(2):188-199.

    28. 柞蚕蛹滞育和滞育解除过程中海藻糖酶基因表达模式及酶活力分析. 昆虫学报, 2018, 61(7):784-794.

    29. 生物炭缓解甜瓜自毒物质对木霉菌生长和产孢的抑制作用.生态环境学报, 2018, 27(8):1453-1458

    30. 蜕皮激素受体和超气门蛋白基因在柞蚕发育过程及激素诱导后的表达模式. 蚕业科学, 2017, 43(4): 594-602.

    31. 柞蚕己糖激酶基因的组织表达特征及在解除滞育和蛹发育期的表达与酶活性变化. 蚕业科学, 2017, 43(5):0773-0781.

    32. DNA条形码在柞树主要鳞翅目害虫种类鉴定中的应用. 蚕业科学, 2017, 43(5): 0750-0756.

    33. 东北亚丝绸之路的历史演变与柞蚕产业发展的思考. 蚕业科学, 2017, 43(6):1022-1030.