热带病与寄生虫学 ›› 2022, Vol. 20 ›› Issue (6): 336-341.

• 实验研究 • 上一篇    下一篇

欧亚鸲特鲁螨线粒体tRNA基因重新注释与分析

苏璇1,方瑜2,方颖2,刘璐瑶2,李飞燕2,冯蕊2,褚凌渺2,左泽涛2,金岳龙1,孙恩涛2   

  1. 1.皖南医学院公共卫生学院,安徽 芜湖 241002;  2.皖南医学院检验学院

  • 收稿日期:2022-07-26 出版日期:2022-12-20 发布日期:2023-01-19
  • 作者简介:苏璇,女,本科在读,研究方向:病原生物学。E-mail: suxuan0901@126.com
  • 基金资助:
    国家自然科学基金项目(31870352);皖南医学院2019年青年卓越人才资助项目(Wyqnyx201902);安徽省省级大学生创新创业项目(S202010368004)

Re-annotation and analysis of mitochondrial tRNA genes of the Trouessartia rubecula (Acari: Analgoidea)

SU Xuan1, FANG Yu2, FANG Ying2, LIU Lu-Yao2, LI Fei-Yan2, FENG-Rui2, CHU Ling-Miao2, ZUO Ze-Tao2, JIN Yue-Long1, SUN En-Tao2#br#   

  1. 1. School of Public Health, Wannan Medical College, Wuhu 241002, Anhui Province, China;
    2. School of Laboratory Medicine, Wannan Medical College
  • Received:2022-07-26 Online:2022-12-20 Published:2023-01-19

摘要: 摘要:目的  验证欧亚鸲特鲁螨(Trouessartia rubecula)线粒体基因组中是否存在tRNA基因的丢失,并以此过程为基础提出一套完整的无气门股螨类线粒体基因组tRNA基因注释流程,为螨类线粒体基因组tRNA基因注释提供参考。方法  联合MITOS、tRNAscan-SE、MITOS2和ARWEN等多个tRNA注释软件预测欧亚鸲特鲁螨线粒体tRNA基因,结合人工序列检查、人工手动查找以及可能二级结构的最小自由能(minimum free energy, MFE)进行验证。结果  利用MITOS和ARWEN的预测结果结合人工序列修正,重新注释欧亚鸲特鲁螨线粒体基因组中“缺失”的trnE、trnI和trnY基因,人工手动查找到trnAtrnV基因。重新注释的欧亚鸲特鲁螨线粒体基因组具有22个tRNA基因,不存在tRNA基因的丢失。结论  在注释无气门亚目中螨类线粒体时,为了获得更加准确的tRNA基因注释结果,应广泛运用tRNA基因预测程序,并且对预测结果进行人工检查和修正,以期减少单一程序预测以及注释程序预测方法所导致的偏差。

关键词: 欧亚鸲特鲁螨, 线粒体基因组, tRNA基因注释, 羽螨总科, 无气门股

Abstract: Abstract:Objective   To verify whether there was tRNA gene loss in the mitochondrial genome of Trouessartia rubecula, on which process basis, a complete set of tRNA gene annotation process of mitochondrial genome in Astigmatina mites is proposed to provide a reference for the tRNA gene annotation of the mite mitochondrial genome. Methods   A series of tRNA annotation software, including MITOS, tRNAscan-SE, MITOS2 and ARWEN, were used in combination with manual sequence inspection, manual search,  and the minimum free energy (MFE) of possible secondary structures to verify the mitochondrial genome of Trouessartia rubecula. Results   The “deleted” genes of trnE, trnI and trnY in the mitochondrial genome of Trouessartia rubecula were successfully re-annotated based on the prediction results of MITOS and ARWEN combined with manual corrections. The trnA and trnV were found manually, and the re-annotated mitochondrial genome of Trouessartia rubecula indicated 22 tRNA genes. No loss of tRNA gene occurred. Conclusion   To obtain more accurate tRNA gene annotation results upon annotating mitochondrial genome in Astigmatina mites, tRNA gene prediction program should be widely used. And the prediction results of these programs should also be manually checked and corrected in order to reduce the bias caused by single program prediction and the annotation program prediction methods.

Key words: Trouessartia rubecula, Mitochondrial genome, tRNA genes annotation, Analgoidea, Astigmatina

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