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MAK, a computational tool kit for automated MITE analysis

机译:MAK,用于自动MITE分析的计算工具套件

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Miniature inverted repeat transposable elements (MITEs) are ubiquitous and numerous in higher eukaryotic genomes. Analysis of MITE families is laborious and time consuming, especially when multiple MITE families are involved in the study. Based on the structural characteristics of MITEs and genetic principles for transposable elements (TEs), we have developed a computational tool kit named MITE analysis kit (MAK) to automate the processes (http://perl.idmb.tamu.edu/mak.htm). In addition to its ability to routinely retrieve family member sequences and to report the positions of these elements relative to the closest neighboring genes, MAK is a powerful tool for revealing anchor elements that link MITE families to known transposable element families. Implementation of the MAK is described, as are genetic principles and algorithms used in its derivation. Test runs of the programs for several MITE families yielded anchor sequences that retain TIRs and coding regions reminiscent of transposases. These anchor sequences are consistent with previously reported putative autonomous elements for these MITE families. Furthermore, analysis of two MITE families with no known links to any transposon family revealed two novel transposon families, namely Math and Kid, belonging to the IS5/Harbinger/PIF superfamily.
机译:微型反向重复转座因子(MITE)在高等真核基因组中无处不在。对MITE家族的分析既费力又费时,尤其是当多个MITE家族参与研究时。根据MITE的结构特征和转座因子(TEs)的遗传原理,我们开发了一种名为MITE分析工具包(MAK)的计算工具套件,以使过程自动化(http://perl.idmb.tamu.edu/mak。 htm)。除了具有常规检索家族成员序列并报告这些元件相对于最接近的邻近基因的位置的能力外,MAK是一种强大的工具,可揭示将MITE家族与已知的可转座元件家族联系起来的锚定元件。描述了MAK的实现,以及推导中使用的遗传原理和算法。该程序针对多个MITE家族的测试运行产生了锚定序列,该序列保留了TIR和让人想起转座酶的编码区。这些锚序列与先前报道的这些MITE家族的推定自主元件一致。此外,对两个与任何转座子家族没有已知联系的MITE家族的分析揭示了属于IS5 / Harbinger / PIF超家族的两个新的转座子家族,即Math和Kid。

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