Chinese Journal of Vector Biology and Control >
Study on distribution of mosquito vectors and associated communicable disease pathogens in islands of Zhoushan, China
Received date: 2015-12-14
Online published: 2016-04-20
Supported by
Supported by the Scientific Research Program of Medicine and Health in Zhejiang Province (No. 2011KYA168)
Objective To explore the distribution of mosquito vectors and communicable disease pathogens, and provide the scientific reference for control of mosquito-borne communicable diseases in Zhoushan archipelago. Methods Mosquito larvae were collected by dipping and adult mosquitos were captured by light trapping. The species of all samples were identified and descriptively analyzed. The harborage of dengue fever, Chikungunya fever and Japanese encephalitis viruses were tested by polymerase chain reaction in adult mosquitos. Results We collected 106 mosquito larvae and 1 358 adult mosquitos. After identified, all mosquitos are classified to 2 subfamilies and 5 genus and 11 species. Aedes albopictus, Ae. togoi and Culex pipiens quinquefasciatus are predominant species in mosquito larvae. The predominant species indexes are respectively 0.472, 0.283 and 0.114. Adult Cx. tritaeniorhynchus (79.90%) and Cx. pipiens quinquefasciatus (19.86%) are widely distributed in Zhoushan city. Cx. annulus and Tripteroides aranoides are new species in Zhoushan city. Target viruses are negative in all mosquito samples. Conclusion Aedes albopictus, Ae. togoi, Cx. pipiens quinquefasciatus and Cx. tritaeniorhynchus are predominant species in Zhoushan city. The target viruses were not found in mosquito vectors in the city. We should pay more attentions to control mosquito-borne diseases due to the risk of outbreak caused by imported cases with corresponding vector-borne diseases.
Key words: Mosquito vector; Species; Mosquito-borne disease
TONG Zhen-dong, JIN Yong-fu, YI Jing-ping, LIU Jie-nan . Study on distribution of mosquito vectors and associated communicable disease pathogens in islands of Zhoushan, China[J]. Chinese Journal of Vector Biology and Control, 2016 , 27(2) : 168 -171 . DOI: 10.11853/j.issn.1003.8280.2016.01.019
[1] 瞿逢伊. 我国蚊虫种质资源现状及其共享利用[J]. 中国寄生虫学与寄生虫病杂志,2006,24增刊:13-16.
[2] Sánchez-Seco MP,Rosario D,Quiroz E,et al. A generic nested-RT-PCR followed by sequencing for detection and identification of members of the alphavirus genus[J]. J Virol Methods, 2001,95(1/2):153-161.
[3] Sánchez-Seco MP,Echevarria JM,Hernández L,et al. Detection and identification of Toscana and other phleboviruses by RT-nested-PCR assays with degenerated primers[J]. J Med Virol, 2003,71(1):140-149.
[4] Sánchez-Seco MP,Rosario D,Domingo C,et al. Generic RT-nested-PCR for detection of flaviviruses using degenerated primers and internal control followed by sequencing for specific identification[J]. J Virol Methods,2005,126(1/2):101-109.
[5] Sánchez-Seco MP,Rosario D,Hernández L,et al. Detection and subtyping of dengue 1-4 and yellow fever viruses by means of a multiplex Rt-nested-PCR using degenerated primers[J]. Trop Med Int Health,2006,11(9):1432-1441.
[6] Yang TC,Lu L,Fu GM,et al. Epidemiology and vector efficiency during a dengue fever outbreak in Cixi,Zhejiang province,China[J]. J Vector Ecol,2009,34(1):148-154.
[7] Sun JM,Lin JF,Yan JY,et al. Dengue virus serotype 3 subtype Ⅲ, Zhejiang province, China[J]. Emerg Infect Dis,2011,17(2):321-323.
[8] 王采典,马卫星,秦伟平. 舟山口岸蚊类种群及季节消长调查[J]. 中国国境卫生检疫杂志,2003,26(6):345-347.
[9] 傅桂明,龚震宇,杨天赐,等. 2009年浙江省诱蚊灯法监测蚊虫结果分析[J]. 中国媒介生物学及控制杂志,2010,21(5):422-423.
[10] 周正斌,吕山,张仪,等. 上海市蚊媒种类、分布及其病原[J]. 中国媒介生物学及控制杂志,2015,26(1):28-32.
/
| 〈 |
|
〉 |