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三种对人类和动物健康具有重要意义的弓首蛔虫的完整线粒体基因组。

The complete mitochondrial genomes for three Toxocara species of human and animal health significance.

作者信息

Li Ming-Wei, Lin Rui-Qing, Song Hui-Qun, Wu Xiang-Yun, Zhu Xing-Quan

机构信息

Laboratory of Parasitology, College of Veterinary Medicine, South China Agricultural University, Guangzhou, Guangdong Province 510642, ProC.

出版信息

BMC Genomics. 2008 May 16;9:224. doi: 10.1186/1471-2164-9-224.

Abstract

BACKGROUND

Studying mitochondrial (mt) genomics has important implications for various fundamental areas, including mt biochemistry, physiology and molecular biology. In addition, mt genome sequences have provided useful markers for investigating population genetic structures, systematics and phylogenetics of organisms. Toxocara canis, Toxocara cati and Toxocara malaysiensis cause significant health problems in animals and humans. Although they are of importance in human and animal health, no information on the mt genomes for any of Toxocara species is available.

RESULTS

The sizes of the entire mt genome are 14,322 bp for T. canis, 14029 bp for T. cati and 14266 bp for T. malaysiensis, respectively. These circular genomes are amongst the largest reported to date for all secernentean nematodes. Their relatively large sizes relate mainly to an increased length in the AT-rich region. The mt genomes of the three Toxocara species all encode 12 proteins, two ribosomal RNAs and 22 transfer RNA genes, but lack the ATP synthetase subunit 8 gene, which is consistent with all other species of Nematode studied to date, with the exception of Trichinella spiralis. All genes are transcribed in the same direction and have a nucleotide composition high in A and T, but low in G and C. The contents of A+T of the complete genomes are 68.57% for T. canis, 69.95% for T. cati and 68.86% for T. malaysiensis, among which the A+T for T. canis is the lowest among all nematodes studied to date. The AT bias had a significant effect on both the codon usage pattern and amino acid composition of proteins. The mt genome structures for three Toxocara species, including genes and non-coding regions, are in the same order as for Ascaris suum and Anisakis simplex, but differ from Ancylostoma duodenale, Necator americanus and Caenorhabditis elegans only in the location of the AT-rich region, whereas there are substantial differences when compared with Onchocerca volvulus,Dirofiliria immitis and Strongyloides stercoralis. Phylogenetic analyses based on concatenated amino acid sequences of 12 protein-coding genes revealed that the newly described species T. malaysiensis was more closely related to T. cati than to T. canis, consistent with results of a previous study using sequences of nuclear internal transcribed spacers as genetic markers.

CONCLUSION

The present study determined the complete mt genome sequences for three roundworms of human and animal health significance, which provides mtDNA evidence for the validity of T. malaysiensis and also provides a foundation for studying the systematics, population genetics and ecology of these and other nematodes of socio-economic importance.

摘要

背景

线粒体(mt)基因组学研究对包括mt生物化学、生理学和分子生物学在内的多个基础领域具有重要意义。此外,mt基因组序列为研究生物的群体遗传结构、系统发育和系统学提供了有用的标记。犬弓首蛔虫、猫弓首蛔虫和马来西亚弓首蛔虫会给动物和人类带来严重的健康问题。尽管它们对人类和动物健康很重要,但目前尚无任何弓首蛔虫物种的mt基因组信息。

结果

犬弓首蛔虫、猫弓首蛔虫和马来西亚弓首蛔虫的完整mt基因组大小分别为14322 bp、14029 bp和14266 bp。这些环状基因组是迄今为止所有尾感器纲线虫中报道的最大的基因组之一。它们相对较大的大小主要与富含AT的区域长度增加有关。三种弓首蛔虫的mt基因组均编码12种蛋白质、两个核糖体RNA和22个转运RNA基因,但缺少ATP合酶亚基8基因,这与迄今为止研究的所有其他线虫物种一致,但旋毛虫除外。所有基因都以相同方向转录,核苷酸组成中A和T含量高,而G和C含量低。犬弓首蛔虫、猫弓首蛔虫和马来西亚弓首蛔虫完整基因组的A+T含量分别为68.57%、69.95%和68.86%,其中犬弓首蛔虫的A+T含量是迄今为止研究的所有线虫中最低的。AT偏倚对密码子使用模式和蛋白质氨基酸组成都有显著影响。三种弓首蛔虫的mt基因组结构,包括基因和非编码区,与猪蛔虫和简单异尖线虫的顺序相同,但仅在富含AT区域的位置上与十二指肠钩口线虫、美洲板口线虫和秀丽隐杆线虫不同,而与盘尾丝虫、犬恶丝虫和粪类圆线虫相比则有很大差异。基于12个蛋白质编码基因的串联氨基酸序列的系统发育分析表明,新描述的马来西亚弓首蛔虫与猫弓首蛔虫的亲缘关系比与犬弓首蛔虫更近,这与先前使用核内转录间隔区序列作为遗传标记的研究结果一致。

结论

本研究确定了三种对人类和动物健康具有重要意义的蛔虫的完整mt基因组序列,为马来西亚弓首蛔虫的有效性提供了mtDNA证据,也为研究这些以及其他具有社会经济重要性的线虫的系统学(分类学)、群体遗传学和生态学奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b127/2396643/5104fa3e9f56/1471-2164-9-224-1.jpg

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