Microsatellite Markers and Genetic Mapping in Plasmodium falciparum

M.T Ferdig, X-z Su
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引用次数: 53

Abstract

Whole-genome methods are changing the scope of biological questions that can be addressed in malaria research. In the rich context provided by Plasmodium falciparum genome sequencing, genetic mapping is a powerful tool for identifying genes involved in parasite development, invasion, transmission and drug resistance. The recent development of a high-resolution P. falciparum linkage map consisting of hundreds of microsatellite markers will facilitate an integrated genomic approach to understanding the relationship between genetic variations and biological phenotypes. Here, Michael Ferdig and Xin-zhuan Su provide an overview for applying microsatellite markers and genetic maps to gene mapping, parasite typing and studies of parasite population changes.

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恶性疟原虫微卫星标记与遗传定位
全基因组方法正在改变疟疾研究中可以解决的生物学问题的范围。在恶性疟原虫基因组测序提供的丰富背景下,遗传作图是鉴定参与寄生虫发育、入侵、传播和耐药性的基因的有力工具。最近开发的由数百个微卫星标记组成的高分辨率恶性疟原虫连锁图谱将有助于采用综合基因组方法来理解遗传变异与生物表型之间的关系。本文综述了微卫星标记和遗传图谱在基因定位、寄生虫分型和寄生虫种群变化研究中的应用。
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Websites of interest Neosporosis. Seeking new targets for antiparasitic agents Response from A. Serero et al. Parasitology nomenclature – a recommendation Implications for neonatal HIV/AIDS and TB of sensitization in utero to helminths
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