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两种寄生蛔虫近缘物种的线粒体全基因组特征分析 以及 。 你提供的原文最后部分“以及.”这里不太完整准确哦,你可以检查下原文是否有缺失。

Characterization of the Complete Mitochondrial Genomes of Two Sibling Species of Parasitic Roundworms, and .

作者信息

Palevich Nikola, Maclean Paul H, Choi Young-Jun, Mitreva Makedonka

机构信息

AgResearch Limited, Grasslands Research Centre, Palmerston North, New Zealand.

McDonnell Genome Institute and Department of Medicine, Washington University School of Medicine, Saint Louis, MO, United States.

出版信息

Front Genet. 2020 Oct 8;11:573395. doi: 10.3389/fgene.2020.573395. eCollection 2020.

Abstract

and are among the two most pathogenic internal parasitic nematodes infecting small ruminants, such as sheep and goats, and are a global animal health issue. Accurate identification and delineation of Haemonchidae species is essential for development of diagnostic and control strategies with high resolution for Trichostrongyloidea infection in ruminants. Here, we describe in detail and compare the complete mitochondrial (mt) genomes of the New Zealand and field strains to improve our understanding of species- and strain-level evolution in these closely related roundworms. In the present study, we performed extensive comparative bioinformatics analyses on the recently sequenced complete mt genomes of the New Zealand NZ_Hco_NP and NZ_Teci_NP field strains. Amino acid sequences inferred from individual genes of each of the two mt genomes were compared, concatenated and subjected to phylogenetic analysis using Bayesian inference (BI), Maximum Likelihood (ML), and Maximum Parsimony (MP). The AT-rich mt genomes of NZ_Hco_NP and NZ_Teci_NP are 14,001 bp (A+T content of 77.4%) and 14,081 bp (A+T content of 77.3%) in size, respectively. All 36 of the typical nematode mt genes are transcribed in the forward direction in both species and comprise of 12 protein-encoding genes (PCGs), 2 ribosomal RNA () genes, and 22 transfer RNA () genes. The secondary structures for the 22 genes and two genes differ between NZ_Hco_NP and NZ_Teci_NP, however the gene arrangements of both are consistent with other Trichostrongylidea sequenced to date. Comparative analyses of the complete mitochondrial nucleotide sequences, PCGs, A+T rich and non-coding repeat regions of NZ_Hco_NP and NZ_Teci_NP further reinforces the high levels of diversity and gene flow observed among Trichostrongylidea, and supports their potential as ideal markers for strain-level identification from different hosts and geographical regions with high resolution for future studies. The complete mt genomes of NZ_Hco_NP and NZ_Teci_NP presented here provide useful novel markers for further studies of the meta-population connectivity and the genetic mechanisms driving evolution in nematode species.

摘要

[寄生虫名称1]和[寄生虫名称2]是感染绵羊和山羊等小型反刍动物的两种最具致病性的体内寄生线虫,是一个全球性的动物健康问题。准确鉴定和区分血矛线虫科物种对于制定针对反刍动物毛圆科感染的高分辨率诊断和控制策略至关重要。在此,我们详细描述并比较了新西兰[寄生虫名称1]和[寄生虫名称2]野外菌株的完整线粒体(mt)基因组,以增进我们对这些密切相关的线虫在物种和菌株水平进化的理解。在本研究中,我们对最近测序的新西兰[寄生虫名称1] NZ_Hco_NP和[寄生虫名称2] NZ_Teci_NP野外菌株的完整mt基因组进行了广泛的比较生物信息学分析。比较了两个mt基因组中各个基因推断出的氨基酸序列,进行拼接,并使用贝叶斯推断(BI)、最大似然法(ML)和最大简约法(MP)进行系统发育分析。NZ_Hco_NP和NZ_Teci_NP富含AT的mt基因组大小分别为14,001 bp(A + T含量为77.4%)和14,081 bp(A + T含量为77.3%)。两种线虫中所有36个典型的线虫mt基因均以正向转录,包括12个蛋白质编码基因(PCG)、2个核糖体RNA(rRNA)基因和22个转运RNA(tRNA)基因。NZ_Hco_NP和NZ_Teci_NP的22个tRNA基因和两个rRNA基因的二级结构不同,然而两者的基因排列与迄今为止测序的其他毛圆科一致。对NZ_Hco_NP和NZ_Teci_NP的完整线粒体核苷酸序列、PCG、富含A + T和非编码重复区域的比较分析进一步强化了在毛圆科中观察到的高度多样性和基因流动,并支持它们作为未来研究中从不同宿主和地理区域进行高分辨率菌株水平鉴定的理想标记物的潜力。这里展示的NZ_Hco_NP和NZ_Teci_NP的完整mt基因组为进一步研究线虫物种中的meta种群连通性和驱动进化的遗传机制提供了有用的新标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3156/7578395/3f0e13d97ce3/fgene-11-573395-g0001.jpg

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