数字农科院2.0

The Complete Mitochondrial Genome Of O.vis Ammon Darwini (Artiodactyla: B ovidae)

文献类型: 外文期刊

作者: Ma, Guilin;Mao, Hongxia;Yang, Qin;Guo, Xian;Lamaocao, Zhong;Liu, Hanli

作者机构:

关键词: Ovis ammon darwini; Mitochondrial genome; Illumina sequencing

期刊名称: CONSERVATION GENETICS RESOURCES

ISSN: 1877-7252

年卷期: 2017 年 9 卷 1 期

页码:

摘要: Ovis ammon darwini: has been listed as a nearthreatened species by IUCN-World Conservation Union due to over-hunting and poaching, competition with domestic livestock, and habitat destruction. Study on molecular biology research provides the scientific basis for the protection and sustainable utilization of key endangered species. Mitochondrial genome is very useful for researches in ecology, systematics and conservation biology. In this study, the complete mitochondrial genome sequence of O. a. darwini was determined by next-generation sequencing data, which is 16,618 bp in length and contains 13 proteincoding genes(PCGs), 2 rRNAs genes, 22 tRNAs genes and a non-coding control region. Base composition of genome is A(33.7 %), C(25.8 %), G(13.1 %), T(27.4 %) with an A + T content of 61.1 %. Phylogenetic analysis suggested that the systematic status of O. a. darwini was more closed related to O. a. hodgsoni clustered with O. ammon. The mitogenome of O. a. darwini offered significant information for molecular genetic research of O. ammon.

分类号:

  • 相关文献

[1]Complete Mitochondrial Genome Of Anxi C.attle (Bos Taurus). Guo, Xian,Xiong, Lin,Wu, Xiaoyun,Ding, Xuezhi,Yan, Ping,Pei, Jie,Bao, Pengjia. 2018

[2]The Complete Mitochondrial Genome Of S.anhe Horse (Equus Caballus). Yan, Ping,Bao, Pengjia,Chu, Min,Pei, Jie,Guo, Xian,Ding, Xuezhi,Sha, Zhongcheng. 2019

[3]Complete Mitochondrial Genome Of Equus C.aballus (Datong Horse). Yan, Ping,Zhou, Yuqing,Bao, Pengjia,Wu, Xiaoyun,Guo, Xian,Liang, Chunnian,Pei, Jie,Ding, Xuezhi. 2019

[4]Characterization Of The Complete Mitochondrial G.enome Of The Yushu Y ak (Bos Grunniens). Guo, X, Bao, PJ, Chu, M, Song, RD, Ding, XZ, Wu, XY, Xiong, L, Liang, CN, Pei, J, Yan, P. 2019

[5]The complete mitochondrial genome of Ovis ammon darwini (Artiodactyla: Bovidae). Mao, Hongxia,Liu, Hanli,Ma, Guilin,Yang, Qin,Guo, Xian,Lamaocao, Zhong.

[6]The Complete Mitochondrial Genome Of S.higaste Humped Cattle (Bos T aurus). Pei, Jie,Bao, Pengjia,Ding, Xuezhi,Guo, Xian,Chu, Min,Yan, Ping,Wangdui, Basang,Xiong, Lin,Zhu, Yanbin,Wu, Xiaoyun. 2018

[7]Complete Mitochondrial Genome Of Qingyang D.onkey (Equus Asinus). Lu, Dengxue,Pei, Jie,Yan, Ping,Liang, Chunnian,Bao, Pengjia,Ding, Xuezhi,Guo, Xian. 2017

[8]Comparative Analysis Of The Complete C.hloroplast Genome Of Four E ndangered Herbals Of Notopterygium. Yang, Jiao,Yue, Ming,Niu, Chuan,Ma, Xiong-Feng,Li, Zhong-Hu. 2017

[9]The Apicoplast Genomes Of Two T.axonomic Units Of Babesia F rom Sheep. Wang, T, Guan, GQ, Korhonen, PK, Koehler, AV, Hall, RS, Young, ND, Yin, H, Gasser, RB. 2017

[10]Microbial Community Response During The T.reatment Of Pharmaceutically Active C ompounds (Phacs) In Constructed Wetland Mesocosms. Yan, Q, Min, J, Yu, YH, Zhu, ZW, Feng, GZ. 2017

[11]Genomic sequence resource of Kabatiella zeae, the causative pathogen of corn eyespot disease. Wang Y.,Yao J.,Xia X.,Li Z.,Zhou S.,Liu W.,Wu H.. 2021

[12]Characterization Of The Complete Mitochondrial G.enome Of The Seron Y ak (Bos Grunniens). Guo, X, Wu, XY, Bao, PJ, Chu, M, Ding, XZ, Xiong, L, Liang, CN, Pei, J, Yan, P. 2019

[13]Comparative Transcriptome Analysis Of Two Contrasting Wolfberry Genotypes During Fruit Development And Ripening And Characterization Of The Lrmyb1 Transcription Factor That Regulates Flavonoid Biosynthesis. Wang, CP, Dong, Y, Zhu, LZ, Wang, LB, Yan, L, Wang, MZ, Zhu, Q, Nan, XX, Li, YH, Li, J. 2020

[14]Transcriptome Analysis Of Skeletal Muscle In Pigs With Divergent Residual Feed Intake Phenotypes. Hou, XH, Pu, L, Wang, LG, Liu, X, Gao, HM, Yan, H, Zhang, JS, Zhang, YB, Yue, JW, Zhang, LC, Wang, LX. 2020

[15]Contrasting Responses Of Soil Fungal C.ommunities And Soil Respiration T o The Above- And Below-Ground Plant C Inputs In A Subtropical Forest. Shi, LL, Feng, WT, Jing, X, Zang, HD, Mortimer, P, Zou, XM. 2019

[16]The responses to long-term water addition of soil bacterial, archaeal, and fungal communities in a desert ecosystem. Gao Ying,Xu Xiaotian,Ding Junjun,Bao Fang,De Costa Yashika G.,Zhuang Weiqin,Wu Bo. 2021

[17]Epiphytic And Endophytic Fungal Communities Of Tomato Plants. Dong, CJ, Wang, LL, Li, Q, Shang, QM. 2021

[18]A Feasible Method For Detecting Unknown Gmos Via A Combined Strategy Of Pcr-Based Suppression Subtractive Hybridization And Next-Generation Sequencing. Duan, LJ, Zhang, SS, Yang, YX, Wang, Q, Lan, QK, Wang, Y, Xu, WT, Jin, WJ, Li, L, Chen, R. 2021

[19]Nodule And Root Zone Microbiota Of Salt-Tolerant Wild Soybean In Coastal Sand And Saline-Alkali Soil. Yang, YJ, Liu, L, Singh, RP, Meng, C, Ma, SQ, Jing, CL, Li, YQ, Zhang, CS. 2020

[20]Analysis of Chloroplast Genomes Provides Insights Into the Evolution of Agropyron. Han H., Qiu R., Liu Y., Zhou X., Gao C., Pang Y., Zhao Y.. 2022

作者其他论文 更多>>