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克氏锥虫 DTU 和谱系的地理、景观和宿主相关性。

Geographical, landscape and host associations of Trypanosoma cruzi DTUs and lineages.

机构信息

El Colegio de la Frontera Sur (ECOSUR), Tapachula, Chiapas, Mexico.

Departamento de Ecología Humana, Centro de Investigación y de Estudios Avanzados del IPN (Cinvestav) Unidad Mérida, Mérida, Yucatán, Mexico.

出版信息

Parasit Vectors. 2016 Dec 7;9(1):631. doi: 10.1186/s13071-016-1918-2.

Abstract

BACKGROUND

The evolutionary history and ecological associations of Trypanosoma cruzi, the need to identify genetic markers that can distinguish parasite subpopulations, and understanding the parasite's evolutionary and selective processes have been the subject of a significant number of publications since 1998, the year when the first DNA sequence analysis for the species was published.

METHODS

The current analysis systematizes and re-analyzes this original research, focusing on critical methodological and analytical variables and results that have given rise to interpretations of putative patterns of genetic diversity and diversification of T. cruzi lineages, discrete typing units (DTUs), and populations, and their associations with hosts, vectors, and geographical distribution that have been interpreted as evidence for parasite subpopulation specificities.

RESULTS

Few studies use hypothesis-driven or quantitative analysis for T. cruzi phylogeny (16/58 studies) or phylogeography (10/13). Among these, only one phylogenetic and five phylogeographic studies analyzed molecular markers directly from tissues (i.e. not from isolates). Analysis of T. cruzi DTU or lineage niche and its geographical projection demonstrate extensive sympatry among all clades across the continent and no significant niche differences among DTUs. DTU beta-diversity was high, indicating diverse host assemblages across regions, while host dissimilarity was principally due to host species turnover and to a much lesser degree to nestedness. DTU-host order specificities appear related to trophic or microenvironmental interactions.

CONCLUSIONS

More rigorous study designs and analyses will be required to discern evolutionary processes and the impact of landscape modification on population dynamics and risk for T. cruzi transmission to humans.

摘要

背景

自 1998 年首次公布该物种的 DNA 序列分析以来,有关克氏锥虫的进化历史和生态关联、识别能够区分寄生虫亚群的遗传标记的必要性以及了解寄生虫的进化和选择过程的研究已经成为大量出版物的主题。

方法

目前的分析对这些原始研究进行了系统的重新分析,重点关注关键的方法学和分析变量以及结果,这些变量和结果引发了对克氏锥虫谱系、离散型分类单元(DTU)和种群遗传多样性和多样化的推测模式的解释,以及与宿主、媒介和地理分布的关联,这些解释被视为寄生虫亚群特异性的证据。

结果

很少有研究(16/58 项研究)针对克氏锥虫系统发育或系统地理学使用假设驱动或定量分析。在这些研究中,只有一项系统发育和五项系统地理学研究直接从组织中分析分子标记(即不是从分离物中分析)。对克氏锥虫 DTU 或谱系生态位及其地理投影的分析表明,所有世系在整个大陆上广泛共存,DTU 之间没有明显的生态位差异。DTU 多样性很高,表明各区域有多样化的宿主组合,而宿主的相似性主要归因于宿主物种的更替,其次是嵌套。DTU-宿主秩序特异性似乎与营养或微环境相互作用有关。

结论

需要更严格的研究设计和分析,以辨别进化过程以及景观改造对种群动态和克氏锥虫传播给人类的风险的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/433b/5142175/e342a47efe37/13071_2016_1918_Fig1_HTML.jpg

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