Department of Sciences, Saint Joseph's College, Mercy Hall, Rm 122, 278 Whites Bridge Road, Standish, ME, 04084, USA.
Department of Biology, University of Vermont, Burlington, VT, USA.
J Mol Evol. 2020 Sep;88(7):618-640. doi: 10.1007/s00239-020-09962-0. Epub 2020 Aug 18.
The present study describes the most comprehensive comparison of turtle mtD-loop regions to date. The primary structure was compared from DNA sequences accessed from GenBank from 48 species in 13 families of extant turtles, and secondary structures of the mtD-loop region were inferred from thermal stabilities, using the program Mfold, for each superfamiliy of turtles. Both primary and secondary structures were found to be highly variable across the order. The Cryptodira showed conservation in the primary structure at conserved sequence blocks (CSBs), but the Pleurodira displayed limited conservation of primary structural characters, other than the coreTAS, a binding site for the helicase TWINKLE, which was highly conserved in the Central and Right Domains across the order. No secondary structure was associated with a TAS, but an AT-rich fold (secondary structure) near the 3' terminus of the mtD-loop region was detected in all turtle superfamilies. Mapping of character states of structural features of the mtD-loop region revealed that most character states were autapomorphies and inferred a number of homoplasies. The Left Domain of turtles, containing no highly conserved structural elements, likely does not serve a functional role; therefore, the Central Domain in turtles is likely equivalent to the Left Domain of mammals. The AT-rich secondary structural element near the 3' terminus of the mtD-loop region may be conserved across turtles because of a functional role, perhaps containing the Light Strand Promotor, or perhaps interacting with the TWINKLE-coreTAS complex in the Central and Right Domains to regulate mtDNA replication and transcription.
本研究描述了迄今为止对龟类 mtD-loop 区最全面的比较。从 GenBank 中获取的 48 种现存龟类 13 科的 DNA 序列中比较了主要结构,并使用 Mfold 程序根据热力学稳定性推断了 mtD-loop 区的二级结构。对于每个龟类超科,都发现主要结构和二级结构在整个分类中高度可变。龟鳖目在保守序列块(CSB)中表现出主要结构的保守性,但侧颈龟目除了核心 TAS 外,主要结构特征的保守性有限,核心 TAS 是解旋酶 TWINKLE 的结合位点,在整个分类中高度保守。没有二级结构与 TAS 相关,但在 mtD-loop 区 3'末端附近检测到一个富含 AT 的折叠(二级结构)。mtD-loop 区结构特征的字符状态映射表明,大多数字符状态是特化的,推断出一些同态。龟类的左域没有高度保守的结构元素,可能没有功能作用;因此,龟类的中央域可能相当于哺乳动物的左域。mtD-loop 区 3'末端附近富含 AT 的二级结构元素可能在龟类中保守,因为它可能具有功能作用,也许包含轻链启动子,或者可能与中央和右域中的 TWINKLE-coreTAS 复合物相互作用,以调节 mtDNA 复制和转录。