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定义疟原虫的种特异性基因组差异。

Defining species specific genome differences in malaria parasites.

机构信息

Division of Genomics and Genetics, School of Biological Sciences, Nanyang Technological University, Singapore 637551, Singapore.

出版信息

BMC Genomics. 2010 Feb 23;11:128. doi: 10.1186/1471-2164-11-128.

Abstract

BACKGROUND

In recent years a number of genome sequences for different plasmodium species have become available. This has allowed the identification of numerous conserved genes across the different species and has significantly enhanced our understanding of parasite biology. In contrast little is known about species specific differences between the different genomes partly due to the lower sequence coverage and therefore relatively poor annotation of some of the draft genomes particularly the rodent malarias parasite species.

RESULTS

To improve the current annotation and gene identification status of the draft genomes of P. berghei, P. chabaudi and P. yoelii, we performed genome-wide comparisons between these three species. Through analyses via comparative genome hybridizations using a newly designed pan-rodent array as well as in depth bioinformatics analysis, we were able to improve on the coverage of the draft rodent parasite genomes by detecting orthologous genes between these related rodent parasite species. More than 1,000 orthologs for P. yoelii were now newly associated with a P. falciparum gene. In addition to extending the current core gene set for all plasmodium species this analysis also for the first time identifies a relatively small number of genes that are unique to the primate malaria parasites while a larger gene set is uniquely conserved amongst the rodent malaria parasites.

CONCLUSIONS

These findings allow a more thorough investigation of the genes that are important for host specificity in malaria.

摘要

背景

近年来,已经获得了许多不同疟原虫物种的基因组序列。这使得我们能够鉴定出不同物种之间的许多保守基因,并显著增强了我们对寄生虫生物学的理解。相比之下,我们对不同物种之间的特异性差异知之甚少,部分原因是一些草案基因组的序列覆盖率较低,因此注释相对较差,特别是啮齿动物疟疾寄生虫物种。

结果

为了改进 P. berghei、P. chabaudi 和 P. yoelii 草案基因组的当前注释和基因识别状态,我们在这三个物种之间进行了全基因组比较。通过使用新设计的泛啮齿动物阵列进行比较基因组杂交分析以及深入的生物信息学分析,我们能够通过检测相关啮齿动物寄生虫物种之间的同源基因来提高草案啮齿动物寄生虫基因组的覆盖率。现在有超过 1000 个 P. yoelii 的直系同源基因与 P. falciparum 基因相关联。除了扩展所有疟原虫物种的当前核心基因集之外,该分析还首次鉴定了少数仅存在于灵长类疟原虫中的基因,而较大的基因集则在啮齿动物疟原虫中独特保守。

结论

这些发现允许更彻底地研究与疟疾宿主特异性相关的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4539/2837034/d8c9e452962a/1471-2164-11-128-1.jpg

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