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Genetic Diversity of Serine Protease Inhibitors in Myxozoan (Cnidaria Myxozoa) Fish Parasites

机译:粘虫(CNIDariaMyxozoa)鱼寄生虫丝氨酸蛋白酶抑制剂的遗传多样性

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摘要

We studied the genetic variability of serine protease inhibitors (serpins) of Myxozoa, microscopic endoparasites of fish. Myxozoans affect the health of both farmed and wild fish populations, causing diseases and mortalities. Despite their global impact, no effective protection exists against these parasites. Serpins were reported as important factors for host invasion and immune evasion, and as promising targets for the development of antiparasitic therapies. For the first time, we identified and aligned serpin sequences from high throughput sequencing datasets of ten myxozoan species, and analyzed 146 serpins from this parasite group together with those of other taxa phylogenetically, to explore their relationship and origins. High intra- and interspecific variability was detected among the examined serpins. The average sequence identity was 25–30% only. The conserved domains (i.e., motif and signature) showed taxon-level differences. Serpins clustered according to taxonomy rather than to serpin types, and myxozoan serpins seemed to be highly divergent from that of other taxa. None of them clustered with their closest relative free-living cnidarians. The genetic distinction of myxozoan serpins further strengthens the idea of an independent origin of Myxozoa, and may indicate novel protein functions potentially related to parasitism in this animal group.
机译:我们研究了鱼孢菌菌,微观内脱石的丝氨酸蛋白酶抑制剂(Serpins)的遗传变异。 Myxozoans影响养殖和野生鱼群的健康,造成疾病和死亡。尽管存在全球影响,但对这些寄生虫没有有效的保护。蛇素被报告为宿主入侵和免疫逃避的重要因素,并作为对抗稀疏疗法发展的有前途的目标。我们首次鉴定并对准10个粘虫种的高通量测序数据集并将Serpin序列排序,并将来自该寄生虫组的146个蛇毒素与其他出生物的那些分析,探索其关系和起源。在检查的蛇素中检测到高分性和间隙性变异性。平均序列同一性仅为25-30%。保守的域(即,主题和签名)显示出分类级别差异。根据分类学而不是蛇素类型而聚集的蛇素,粘虫蛇蛇似乎与其他分类群的血清似乎高度不同。他们都没有与他们最近的相对自由生活的中新人聚集。粘虫蛇蛇素的遗传区别进一步增强了肌瘤独立起源的想法,并且可能表明新的蛋白质功能可能与该动物组中的寄生症有关。

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