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首页> 外文期刊>Evolutionary Bioinformatics >A Comparative In Silico Study of the Antioxidant Defense Gene Repertoire of Distinct Lifestyle Trypanosomatid Species
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A Comparative In Silico Study of the Antioxidant Defense Gene Repertoire of Distinct Lifestyle Trypanosomatid Species

机译:不同生活方式的锥虫物种抗氧化防御基因库的比较计算机模拟研究

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Kinetoplastids are an ancestral group of protists that contains free-living species and parasites with distinct mechanisms in response to stress. Here, we compared genes involved in antioxidant defense (AD), proposing an evolution model among trypanosomatids. All genes were identified in Bodo saltans, suggesting that AD mechanisms have evolved prior to adaptation for parasitic lifestyles. While most of the monoxenous and dixenous parasites revealed minor differences from B. saltans, the endosymbiont-bearing species have an increased number of genes. The absence of these genes was mainly observed in the extracellular parasites of the genera Phytomonas and Trypanosoma. In trypanosomes, a distinction was observed between stercorarian and salivarian parasites, except for Trypanosoma rangeli. Our analyses indicate that the variability of AD among trypanosomatids at the genomic level is not solely due to the geographical isolation, being mainly related to specific adaptations of their distinct biological cycles within insect vectors and to a parasitism of a wide range of hosts.
机译:运动质体是原始的原生生物群,其中包含自由生存的物种和寄生虫,它们具有不同的机制来应对压力。在这里,我们比较了参与抗氧化防御(AD)的基因,提出了锥虫之间的进化模型。在Bodo saltans中鉴定了所有基因,表明AD机制在适应寄生性生活方式之前已经进化。尽管大多数单性和双性寄生虫显示出与盐生双歧杆菌的细微差别,但带有内共生菌的物种的基因数量却有所增加。这些基因的缺乏主要是在Phytomonas和锥虫属的细胞外寄生虫中观察到的。在锥虫中,除锥虫锥虫外,在胸腺寄生虫和唾液寄生虫之间观察到区别。我们的分析表明,锥虫在基因组水平上的AD变异不仅是由于地理上的隔离,而且还与昆虫载体内它们独特的生物周期的特定适应性以及广泛宿主的寄生性有关。

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