1 |
刘起勇. 我国登革热流行新趋势、防控挑战及策略分析[J]. 中国媒介生物学及控制杂志, 2020, 31 (1):1-6.
DOI
|
|
Liu QY. Dengue fever in China: New epidemical trend, challenges and strategies for prevention and control[J]. Chin J Vector Biol Control, 2020, 31 (1):1-6.
DOI
|
2 |
World Health Organization. Pesticides and their application, for the control of vectors and pests of public health importance, sixth edition [EB/OL]. (2006) [2023-03-02]. https://apps.who.int/iris/handle/10665/69223.
|
3 |
World Health Organization. Dengue guidelines for diagnosis, treatment, prevention and control, new edition [EB/OL]. (2009)[2023-03-02]. https://apps.who.int/iris/handle/10665/44188.
|
4 |
赵春春, 周欣欣, 李文玉, 等. 2020年中国13省份登革热媒介白纹伊蚊抗药性监测及分析研究[J]. 中国媒介生物学及控制杂志, 2022, 33 (1):30-37.
DOI
|
|
Zhao CC, Zhou XX, Li WY, et al. Insecticide resistance surveillance and characteristic analysis of dengue vector Aedes albopictus in 13 provinces of China in 2020[J]. Chin J Vector Biol Control, 2022, 33 (1):30-37.
DOI
|
5 |
Hemingway J, Ranson H. Insecticide resistance in insect vectors of human disease[J]. Annu Rev Entomol, 2000, 45, 371-391.
DOI
|
6 |
Itokawa K, Sekizuka T, Maekawa Y, et al. High-throughput genotyping of a full voltage-gated sodium channel gene via genomic DNA using target capture sequencing and analytical pipeline MoNaS to discover novel insecticide resistance mutations[J]. PLoS Negl Trop Dis, 2019, 13 (11):e0007818.
DOI
|
7 |
Kasai S, Ng LC, Lam-Phua SG, et al. First detection of a putative knockdown resistance gene in major mosquito vector, Aedes albopictus[J]. Jpn J Infect Dis, 2011, 64 (3):217-221.
|
8 |
Kasai S, Caputo B, Tsunoda T, et al. First detection of a VSSC allele V1016G conferring a high level of insecticide resistance in Aedes albopictus collected from Europe (Italy) and Asia (Vietnam), 2016: A new emerging threat to controlling arboviral diseases[J]. Eurosurveillance, 2019, 24 (5):1700847.
DOI
|
9 |
Zhou XJ, Yang C, Liu N, et al. Knockdown resistance (kdr) mutations within seventeen field populations of Aedes albopictus from Beijing, China: First report of a novel V1016G mutation and evolutionary origins of kdr haplotypes[J]. Parasit Vectors, 2019, 12 (1):180.
DOI
|
10 |
朱彩英, 赵春春, 伦辛畅, 等. 云南省景洪市2018-2019年白纹伊蚊击倒抗性基因型分布研究[J]. 中国媒介生物学及控制杂志, 2020, 31 (1):7-11.
DOI
|
|
Zhu CY, Zhao CC, Lun XC, et al. Distribution of knockdown resistance genotypes in Aedes albopictus in Jinghong, Yunnan province, China, 2018-2019[J]. Chin J Vector Biol Control, 2020, 31 (1):7-11.
DOI
|
11 |
周小洁, 赵宇晗, 刘念, 等. 北京市两个白纹伊蚊种群kdr抗性突变检测分析[J]. 中华卫生杀虫药械, 2021, 27 (4):304-307.
DOI
|
|
Zhou XJ, Zhao YH, Liu N, et al. Detection and analysis of kdr resistance mutations in two populations of Aedes albopictus in Beijing[J]. Chin J Hyg Insect Equip, 2021, 27 (4):304-307.
DOI
|
12 |
杨罗菊, 刘德星, 陈健, 等. 中山市白纹伊蚊现场种群击倒抗性基因检测分析[J]. 中国人兽共患病学报, 2021, 37 (2):171-175.
DOI
|
|
Yang LJ, Liu DX, Chen J, et al. Detection and analysis of the knockdown resistance gene in the field populations of Aedes albopictus in Zhongshan[J]. Chin J Zoonoses, 2021, 37 (2):171-175.
DOI
|
13 |
赵春春. 我国白纹伊蚊抗药性及kdr基因分布研究[D]. 北京: 中国疾病预防控制中心, 2019.
|
|
Zhao CC. Study on insectcides resistance and kdr gene distribution of Aedes albopictus in China[D]. Beijing: Chinese Center for Disease Control and Prevention, 2019. (in Chinese)
|
14 |
邱星辉. 白纹伊蚊抗药性分子机制研究进展[J]. 寄生虫与医学昆虫学报, 2019, 26 (3):194-198.
DOI
|
|
Qiu XH. Current knowledge about the molecular mechanisms underlying insecticide resistance in Aedes albopictus[J]. Acta Parasitol Med Entomol Sin, 2019, 26 (3):194-198.
DOI
|
15 |
袁浩, 董昊炜, 庄松阳, 等. 电压门控钠离子通道基因I1532T突变与白纹伊蚊对菊酯类杀虫剂敏感性的相关性[J]. 中国热带医学, 2021, 21 (12):1130-1135, 1149.
DOI
|
|
Yuan H, Dong HW, Zhuang SY, et al. Correlation between the mutation of allele I1532T in voltage-gated sodium channel (VGSC) gene and susceptibility of Aedes albopictus to pyrethroid insecticides[J]. China Trop Med, 2021, 21 (12):1130-1135, 1149.
DOI
|
16 |
Auteri M, La Russa F, Blanda V, et al. Insecticide resistance associated with kdr mutations in Aedes albopictus: An update on worldwide evidences[J]. Biomed Res Int, 2018, 2018, 3098575.
DOI
|
17 |
Xu JB, Bonizzoni M, Zhong DB, et al. Multi-country survey revealed prevalent and novel F1534S mutation in voltage-gated sodium channel (VGSC) gene in Aedes albopictus[J]. PLoS Negl Trop Dis, 2016, 10 (5):e0004696.
DOI
|