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首页> 外文期刊>Journal of Molecular Evolution >Trematode and monogenean rRNA ITS2 secondary structures support a four-domain model
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Trematode and monogenean rRNA ITS2 secondary structures support a four-domain model

机译:吸虫和单基因rRNA ITS2二级结构支持四域模型

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The secondary structure of rRNA internal transcribed spacer 2 is important in the process of ribosomal biogenesis. Trematode ITS sequences are poorly conserved and difficult to align for phylogenetic comparisons above a family level. Lf a conserved secondary structure can be identified, it carl be used to guide primary sequence alignments. ITS2 sequences from 39 species were compared, These species span four orders of trematodes (Echinostomiformes, Plagiorchiformes, Strigeiformes, and Paramphistomiformes) and one monogenean (Gyrodactyliformes). The sequences vary in length from 251 to 431 bases, with an average GC content of 48%. The monogenean sequence could not be aligned with confidence to the trematodes, Above the family level trematode sequences were alignable from the 5' end for 139 bases. Secondary structure foldings predicted a four-domain model. Three folding patterns were required for the apex of domain B. The folding pattern of domains C and D varies for each family-The structures display a high GC content within stems. Bases A and U are favored in unpaired regions and variable sites cluster. This produces a mosaic of conserved and variable regions with a structural conformation resistant ra change. Two conserved strings were identified,one in domain B and the other in domain C, The first site can be aligned to a processing site identified in yeast and rat. The second site has been found in plants, and structural location appears to be important. A phylogenetic tree of the trematode sequences, aligned with the aid of secondary structures, distinguishes the four recognized orders. [References: 29]
机译:rRNA内部转录间隔区2的二级结构在核糖体生物发生过程中很重要。 Trematode ITS序列保守性很差,难以在家族水平以上进行系统发育比较。如果可以鉴定保守的二级结构,则其可以用于指导一级序列比对。比较了来自39个物种的ITS2序列,这些物种跨越了四个阶的吸虫(棘皮纲,斜头纲,线形,和副淋巴纲)和一个单基因(绞线纲)。序列的长度在251至431个碱基之间变化,平均GC含量为48%。单基因序列不能与吸虫有把握地比对。在家族水平以上,吸虫序列从5'末端可以比对139个碱基。二级结构折叠预测了一个四域模型。域B的顶点需要三个折叠模式。域C和D的折叠模式随每个科而异-结构显示茎中GC含量高。在不成对的区域和可变位点簇中,碱基A和U较受青睐。这产生具有结构构象抗性ra变化的保守和可变区的镶嵌。鉴定了两个保守的字符串,一个在结构域B中,另一个在结构域C中。第一个位点可以与酵母和大鼠中鉴定的加工位点对齐。在植物中发现了第二个位点,结构位置似乎很重要。吸虫序列的系统树,借助二级结构,可区分四个公认的顺序。 [参考:29]

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