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华丽旋体藻(马尾藻科,褐藻纲)的线粒体基因组:褐藻的比较线粒体基因组学

Mitochondrial genome of Turbinaria ornata (Sargassaceae, Phaeophyceae): comparative mitogenomics of brown algae.

作者信息

Liu Feng, Pang Shaojun

机构信息

Key Laboratory of Experimental Marine Biology, Institute of Oceanology, Chinese Academy of Sciences (IOCAS), Qingdao, 266071, Shandong, People's Republic of China.

出版信息

Curr Genet. 2015 Nov;61(4):621-31. doi: 10.1007/s00294-015-0488-8. Epub 2015 Apr 17.

Abstract

Turbinaria ornata (Turner) J. Agardh is a perennial brown alga native to coral reef ecosystems of tropical areas of the Pacific and Indian Ocean. Very little is known about its organellar genome structure. In the present work, the complete mitochondrial genome sequence of T. ornata was determined and compared with other reported brown algal mtDNAs. The circular mitogenome of 34,981 bp contains a basic set of 65 mitochondrial genes. The structure and organization of T. ornata mitogenome is very similar to Sargassum species. Turbinaria ornata genes overlap by a total of 164 bp in 12 different locations from 1 to 66 bp, and the non-coding sequences are 1872 bp, constituting approximate 5.35 % of the genome. The total spacer size has positive correlation with the brown algal mitogenome size with the correlation coefficient of 0.7972. Several regions displaying greater inconsistency (rnl-trnK spacer, cox2 gene, cox3-atp6 spacer, rps14-rns middle region and trnP-rnl spacer) have been identified in brown algal mtDNAs. The observed uncertainty regarding the position and support values of some branches might be closely associated with the heterogeneity of evolutionary rate.

摘要

华丽旋叶藻(Turbinaria ornata (Turner) J. Agardh)是一种多年生褐藻,原产于太平洋和印度洋热带地区的珊瑚礁生态系统。人们对其细胞器基因组结构知之甚少。在本研究中,测定了华丽旋叶藻的完整线粒体基因组序列,并与其他已报道的褐藻线粒体DNA进行了比较。34,981 bp的环状有丝分裂基因组包含一组基本的65个线粒体基因。华丽旋叶藻有丝分裂基因组的结构和组织与马尾藻属物种非常相似。华丽旋叶藻的基因在12个不同位置共重叠164 bp,重叠长度从1到66 bp不等,非编码序列为1872 bp,约占基因组的5.35%。总间隔区大小与褐藻有丝分裂基因组大小呈正相关,相关系数为0.7972。在褐藻线粒体DNA中已鉴定出几个表现出较大不一致性的区域(rnl-trnK间隔区、cox2基因、cox3-atp6间隔区、rps14-rns中间区域和trnP-rnl间隔区)。观察到的一些分支位置和支持值的不确定性可能与进化速率的异质性密切相关。

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