Trizzino Marco, Audisio Paolo, Antonini Gloria, De Biase Alessio, Mancini Emiliano
Dipartimento di Biologia Animale e dell'Uomo, Sapienza Università di Roma, Rome, Italy.
Mol Phylogenet Evol. 2009 May;51(2):215-26. doi: 10.1016/j.ympev.2008.11.004. Epub 2008 Nov 13.
A comparative analysis of ITS2 sequences and secondary structures in 89 species of pollen beetles of the subfamily Meligethinae (Coleoptera, Nitidulidae) was performed. The ITS2 folding pattern was highly conserved and comparable with the general model proposed for eukaryotes. Simple sequence repeats (SSRs) were responsible for most of the observed nucleotide variability (approximately 1-3%) and length variation (359-459bp). When plotted on secondary structures, SSRs mapped in expansion segments positioned at the apices of three ITS2 helices ('A', 'B' and 'D1') and appeared to have evolved under mechanisms of compensatory slippage. Homologies among SSRs nucleotides could not be unambiguously assigned, and thus were not useful to resolve phylogeny. However, slippage-derived motifs provided some preliminary genetic support for newly proposed taxonomic arrangements of several genera and subgenera of Meligethinae, corroborating existing morphological and ecological datasets.
对露尾甲亚科(鞘翅目,露尾甲科)89种花粉甲虫的ITS2序列和二级结构进行了比较分析。ITS2折叠模式高度保守,与为真核生物提出的通用模型相当。简单序列重复(SSR)是观察到的大部分核苷酸变异性(约1-3%)和长度变异(359-459bp)的原因。当绘制在二级结构上时,SSR映射在位于三个ITS2螺旋(“A”、“B”和“D1”)顶端的扩展片段中,并且似乎是在补偿性滑动机制下进化的。SSR核苷酸之间的同源性无法明确确定,因此对解决系统发育问题没有用处。然而,滑动衍生基序为露尾甲亚科几个属和亚属的新提出的分类安排提供了一些初步的遗传支持,证实了现有的形态学和生态学数据集。