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Biology, Bionomics and Molecular Biology of Anopheles sinensis Wiedemann 1828 (Diptera: Culicidae), Main Malaria Vector in China

机译:中国主要疟疾媒介 Anopheles sinensis Wiedemann 1828(Diptera:Culicidae)的生物学,生物组学和分子生物学

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China has set a goal to eliminate all malaria in the country by 2020, but it is unclear if current understanding of malaria vectors and transmission is sufficient to achieve this objective. Anopheles sinensis is the most widespread malaria vector specie in China, which is also responsible for vivax malaria outbreak in central China. We reviewed literature from 1954 to 2016 on An. sinensis with emphasis on biology, bionomics, and molecular biology. A total of 538 references were relevant and included. An. sienesis occurs in 29 Chinese provinces. Temperature can affect most life-history parameters. Most An. sinensis are zoophilic, but sometimes they are facultatively anthropophilic. Sporozoite analysis demonstrated An. sinensis efficacy on Plasmodium vivax transmission. An. sinensis was not stringently refractory to P. falciparum under experimental conditions, however, sporozoite was not found in salivary glands of field collected An. sinensis . The literature on An. sienesis biology and bionomics was abundant, but molecular studies, such as gene functions and mechanisms, were limited. Only 12 molecules (genes, proteins or enzymes) have been studied. In addition, there were considerable untapped omics resources for potential vector control tools. Existing information on An. sienesis could serve as a baseline for advanced research on biology, bionomics and genetics relevant to vector control strategies.
机译:中国已经设定了到2020年消除所有疟疾的目标,但是目前对疟疾传播途径和传播的认识是否足以实现这一目标尚不清楚。中华按蚊是中国传播最广泛的疟疾媒介,也是造成中部间日间疟疾爆发的原因。我们回顾了An于1954年至2016年的文献。中华,侧重于生物学,生物组学和分子生物学。总共有538篇参考文献是相关的,包括在内。一个。矽肺病发生在中国29个省。温度会影响大多数寿命历史参数。最。中华绒螯蟹是人畜共患的,但有时在兼性上是嗜人的。子孢子分析表明An。中华绒螯蟹间日疟原虫传播的功效。一个。在实验条件下,中华ensis对恶性疟原虫没有严格的抵抗力,但是,在采集的田An的唾液腺中未发现子孢子。中华。关于安的文献。锡耶纳西斯生物学和生物经济学非常丰富,但是分子研究,如基因功能和机制却很有限。仅研究了12种分子(基因,蛋白质或酶)。此外,还有大量未开发的组学资源可用于潜在的矢量控制工具。关于An的现有信息。 ene虫病可以作为与载体控制策略有关的生物学,生物组学和遗传学高级研究的基线。

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