Length variation and sequence divergence in mitochondrial control region of Schizothoracine (Teleostei: Cyperinidae) species

被引:0
作者
Syed, Mudasir Ahmad [1 ]
Bhat, Farooz Ahmad [2 ]
Balkhi, Masood-ul Hassan [2 ]
Bhat, Bilal Ahmad [2 ]
机构
[1] Sher e Kashmir Univ Agr Sci & Technol, Fac Vet Sci & Anim Husb, Div Biotechnol, Shuhama 19006, Kashmir, India
[2] Sher e Kashmir Univ Agr Sci & Technol Kashmir, Fac Fisheries, Shuhama Srinagar, India
关键词
CSB; D-loop; length variation; microsatellites; Schizothoracine fishes; species variation; TAS; D-LOOP REGION; DNA; HETEROPLASMY; CYPRINIDAE; GENOME;
D O I
10.3109/19401736.2014.945581
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Schizothoracine fish commonly called snow trouts inhibit the entire network of snow and spring fed cool waters of Kashmir, India. Over 10 species reported earlier, only five species have been found, these include Schizothorax niger, Schizothorax esocinus, Schizothorax plagiostomus, Schizothorax curvifrons and Schizothorax labiatus. The relationship between these species is contradicting. To understand the evolutionary relation of these species, we examined the sequence information of mitochondrial D-loop of 25 individuals representing five species. Sequence alignment showed D-loop region highly variable and length variation was observed in di-nucleotide (TA)(n) microsatellite between and within species. Interestingly, all these species have (TA)(n) microsatellite not associated with longer tandem repeats at the 3 end of the mitochondrial control region and do not show heteroplasmy. Our analysis also indicates the presence of four conserved sequence blocks (CSB), CSB-D, CSB-1, CSB-II and CSB-III, four (Termination Associated Sequence) TAS motifs and 15bp pyrimidine block within the mitochondrial control region, that are highly conserved within genus Schizothorax when compared with other species. The phylogenetic analysis carried by Maximum likelihood (ML), Neighbor Joining (NJ) and Bayesian inference (BI) generated almost identical results. The resultant BI tree showed a close genetic relationship of all the five species and supports two distinct grouping of S. esocinus species. Besides the species relation, the presence of length variation in tandem repeats is attributed to differences in predicting the stability of secondary structures. The role of CSBs and TASs, reported so far as main regulatory signals, would explain the conservation of these elements in evolution.
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页码:1343 / 1347
页数:5
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