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[1] Transcriptional response of two metallothionein genes (OcMT1 and OcMT2) and histological changes in Oxya chinensis (Orthoptera: Acridoidea) exposed to three trace metals ,Yaoming Liu,Enbo Ma*,Chemosphere,2015,139:310–317
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[2] Two homologous carboxylesterase genes from Locusta migratoria with different tissue expression patterns and roles in insecticide detoxification ,Jianqin Zhang,Enbo Ma, Jianzhen Zhang*,Journal of Insect Physiology,2015,77:1-8
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[3] Two chitinase 5 genes from Locusta migratoria: molecular characteristics and functional differentiation ,Daqi Li,, Jianzhen Zhang,Insect Biochemistry and Molecular Biology,2015,58: 46-54
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[4] Evidence for the expression of abundant microRNAs in the locust genome ,Wang Yan Li,Zhang Jian Zhen, Kang Le*,Scientific Reports,2015,5:13608
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[5] Molecular Basis for Antioxidant Enzymes in Mediating Copper Detoxification in the Nematode Caenorhabditis elegans ,Shaojuan Song, Enbo Ma*, Yaping Guo*,PLOS ONE,2014,9: e107685
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[6] Two Metallothionein Genes in Oxya chinensis: Molecular Characteristics, Expression Patterns and Roles in Heavy Metal Stress ,Yaoming Liu, Yaping Guo*, Enbo Guo*,PLOS ONE,2014,9: e112759
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[7] Acute toxicity and sublethal effects of fipronil on detoxification enzymes in juvenile zebrafish (Danio rerio) ,Haihua Wu, Enbo Ma*,Pesticide Biochemistry and Physiology,2014,115:9-14
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[8] 溴氰菊酯对飞蝗羧酸酯酶基因表达的影响 ,张建琴,马恩波*,应用昆虫学报,2014,51(2): 418-424
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[9] 五龄飞蝗不同发育时间实时定量PCR 内参基因的筛选 ,崔淼,张建珍*,应用昆虫学报,2014,51(3): 733-740
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[10] Effect of Dietary Cadmium on the Activity of Glutathione STransferase and Carboxylesterase in Different Developmental Stages of the Oxya chinensis (Orthoptera: Acridoidea) ,Yuping Zhang, Yaping Guo*,Environmental Entomology,2014,43: 171-177
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[11] 飞蝗3个细胞色素P450基因的分子特性及功能 ,任晓宇,马恩波*,中国农业科学,2014,47(10): 1956-1965
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[12] Effects of chlorpyrifos on glutathione S-transferase in migratory locust, Locusta migratoria ,Guohua Qin, Enbo Ma*, Jianzhen Zhang*,Pesticide Biochemistry and Physiology,2014,109: 1-5
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[13] Changes to Cuticle Surface Ultrastructure and Some Biological Functions in the Nematode Caenorhabditis Elegans Exposed to Excessive Copper ,Shaojuan Song, Enbo Ma*,Arch Environ Contam Toxicol,2014,66: 390–399
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[14] 飞蝗几丁质合成酶2基因的表达特性、功能及调控 ,刘晓健,张建珍*,中国农业科学,2014,47(7): 1330-1340
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[15] 中华稻蝗几丁质酶基因10(OcCht10)的分子特性及功能 ,李大琪,张建珍*,中国农业科学,2014,47(7): 1313-1320
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[16] 中华稻蝗几丁质脱乙酰基酶2基因的分子特性和 生物学功能 ,于荣荣,张建珍*,中国农业科学,2014,47(7): 1321-1329
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[17] Analysis of genomic characters reveals that four distinct gene clusters are correlated with different functions in Burkholderia cenocepacia AU 1054 ,Meiling Yang, Xiaojun Zhang*,Applied Microbiology and Biotechnology,2014,98: 361–372
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[18] Molecular and functional characterization of cDNAs putatively encoding carboxylesterases from the migratory locust, Locusta migratoria ,Jianqin Zhang, kun Yan Zhu*, Enbo Ma*,PLoS ONE,2014,9(4): e94809
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[19] MicroRNA-133 Inhibits Behavioral Aggregation by MicroRNA-133 Inhibits Behavioral Aggregation by ,Meiling Yang ,PLOS GENETICS,2014,10 (2): e1004206
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[20] 镉锌处理麦苗对中华稻蝗镉锌含量及生化指标的影响 ,朴君,农业环境科学学报,2013,32(7),1328-1333
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[21] 镉和铬急性染毒对中华稻蝗解毒酶及多酚氧化酶的影响 ,刘耀明,农业环境科学学报,2013,32(7),1321-1327
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[22] Molecular and Functional Analysis of UDP-N-Acetylglucosamine Pyrophosphorylases from the Migratory Locust, Locusta migratoria ,Xiaojian Liu,PLoS One,2013,8,8,e71970
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[23] RNA interference revealed the roles of two carboxylesterase genes in insecticide detoxification in Locusta migratoria ,Jianqin Zhang,Chemosphere,2013,
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[24] Characterization and Functional Analysis of Four Glutathione S-Transferases from the Migratory Locust, Locusta migratoria ,Guohua Qing,PLoS One,2013,8,3,e58410
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[25] MicroRNA-dependent development revealed by RNA interference-mediated gene silencing of LmDicer1 in the migratory locust ,Yanli Wang,Insect Science,2013,20,53–60
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[26] RNA interference to reveal roles of β-N-acetylglucosaminidase gene during molting process in Locusta migratoria ,Suo Rnong,Insect Science,2013,20,109–119
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[27] Characterization of a midgut-specific chitin synthase gene (LmCHS2) responsible for biosynthesis of chitin of peritrophic matrix in Locusta migratoria ,Xiaojian Liu,Insect Biochemistry and Molecular Biology,2012,42, 902-910
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[28] Stuctural and catalytic role of two conserved tyrosines in delta-class glutathione S-transferase from Locusta migratoria ,Xueyao Zhang,Archives of Insect Biochemistry and Physiology,2012,80, 77-91
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[29] The complete mitochondrial genome of the butterfly Apatura metis ,Min Zhang,Molecular Biology Reports,2012,39, 6529-6536
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[30] 中华稻蝗几丁质合成酶1 基因的mRNA 表达及功能 ,余志涛,中国农业科学,2012,45,877-884
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[31] 亚致死剂量马拉硫磷和西维因对 ,于荣荣,应用昆虫学报,2012,49,693-699
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[32] 飞蝗葡萄糖胺-6-磷酸-N-乙酰转移酶的特性及生物学功能 ,张欢欢,中国农业科学,2012,45,2393-2403
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[33] 东亚飞蝗羧酸酯酶基因的克隆和原核表达 ,李清,应用昆虫学报,2012,49, 666-672
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[34] Heterologous expression and characterization of a sigma glutathione S-transferase involved in carbaryl detoxification from oriental migratory locust, Locusta migratoria manilensis (Meyen) ,Guohua Qin,Journal of Insect Physiology,2012,58, 220-227
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[35] Comparative analysis of cytochrome P450-like genes from Locusta migratoria manilensis: expression profiling and response to insecticide exposure ,Yan-Qiong Guo,Insect Science,2012,19, 75–85
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[36] 重金属镉和铬在中华稻蝗(Oxya chinensis)体内的组织分布 ,张育平,农业环境科学学报,2011,30, 2440-2445
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[37] 中华稻蝗(Oxya chinensis)对重金属镉的累积及排泄 ,张育平,农业环境科学学报,2012,31, 31-46
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[38] Identification of two new cytochrome P450 genes and RNA interference to evaluate their roles in detoxification of commonly used insecticides in Locusta migratoria ,Yanqiong Guo,Chemosphere,2012,87, 709-717
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[39] Comparative Genomic Analysis of Chitinase and Chitinase-Like Genes in the African Malaria Mosquito (Anopheles gambiae) ,Jianzhen Zhang,PLoS One,2011,6, 1-14
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[40] Identification and characterization of a novel chitinase-like gene cluster (AgCht5) possibly derived from tandem duplications in the African malaria mosquito, Anopheles gambiae ,Jianzhen Zhang,Insect Biochemistry and Molecular Biology,2011, 41, 521-528
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[41] Genomics-based approaches to screening carboxylesterase-like genes potentially involved inmalathion resistance in oriental migratory locust (Locustamigratoria manilensis) ,Jianzhen Zhang,Pest Management Science,2011,67, 183–190
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[42] Identification and characterisation of ten glutathione S-transferase genes fromoriental migratory locust, Locustamigratoriamanilensis (Meyen) ,Guohua Qin,Pest Managment Science,2011,67, 697–704
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[43] Effects of malathion and chlorpyrifos on acetylcholinesterase and antioxidant defense system in Oxya chinensis (Thunberg) (Orthoptera: Acrididae) ,Haihua Wu,Chemosphere,2011,83, 599-604
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[44] Biochemical effects of acute phoxim administration on antioxidant system and acetylcholinesterase in Oxya chinensis (Thunberg) (Orthoptera: Acrididae) ,Haihua Wu,Pesticide Biochemistry and Physiology,2011,100, 23-26
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[45] Chronic accumulation of cadmium and its effects on antioxidant enzymes and malondialdehyde in Oxya chinensis (Orthoptera: Acridoidea) ,Yuping Zhang,Ge Sun, Ecotoxicology and Environmental Safety,2011,74, 1355-1362
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[46] Population genetic structure and phylogeographical pattern of rice grasshopper, Oxya hyla intricata, across Southeast Asia ,Tao Li ,Genetica,2011,139, 511–524
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[47] Host-associated genetic differentiation in rice grasshopper, Oxya japonica,on wild vs. cultivated rice ,Tao Li,Biochemical Systematics and Ecology,2010,38, 958–963
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[48] Silencing of two alternative splicing-derived mRNA variants of chitin synthase 1 gene by RNAi is lethal to the oriental migratory locust,Locusta migratoria manilensis (Meyen) ,Jianzhen Zhang,Insect Biochemistry and Molecular Biology ,2010,40, 824-833
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[49] 氟虫脲对东亚飞蝗和中华稻蝗几丁质合成酶基因表达的影响 ,刘晓健,昆虫学报,2010,5, 1039-1044
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[50] Increased activity and reduced sensitivity of acetylcholinesterase associated with malathion resistance in a ?eld population of the oriental migratory locust, Locusta migratoria manilensis (Meyen) ,Meiling Yang,Pesticide Biochemistry and Physiology ,2008,91, 32–38
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