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端粒间区序列的范围和可变性及其对端粒长度估计的影响。

Extent and variability of interstitial telomeric sequences and their effects on estimates of telomere length.

机构信息

Department of Ecology, Evolution and Organismal Biology, Iowa State University, Ames, IA 50011, USA.

出版信息

Mol Ecol Resour. 2013 May;13(3):417-28. doi: 10.1111/1755-0998.12079. Epub 2013 Feb 11.

Abstract

Telomeres often shorten with time, although this varies between tissues, individuals and species, and their length and/or rate of change may reflect fitness and rate of senescence. Measurement of telomeres is increasingly important to ecologists, yet the relative merits of different methods for estimating telomere length are not clear. In particular the extent to which interstitial telomere sequences (ITSs), telomere repeats located away from chromosomes ends, confound estimates of telomere length is unknown. Here we present a method to estimate the extent of ITS within a species and variation among individuals. We estimated the extent of ITS by comparing the amount of label hybridized to in-gel telomere restriction fragments (TRF) before and after the TRFs were denatured. This protocol produced robust and repeatable estimates of the extent of ITS in birds. In five species, the amount of ITS was substantial, ranging from 15% to 40% of total telomeric sequence DNA. In addition, the amount of ITS can vary significantly among individuals within a species. Including ITSs in telomere length calculations always underestimated telomere length because most ITSs are shorter than most telomeres. The magnitude of that error varies with telomere length and is larger for longer telomeres. Estimating telomere length using methods that incorporate ITSs, such as Southern blot TRF and quantitative PCR analyses reduces an investigator's power to detect difference in telomere dynamics between individuals or over time within an individual.

摘要

端粒通常会随着时间的推移而缩短,尽管这在组织、个体和物种之间存在差异,而且它们的长度和/或变化速度可能反映了适应性和衰老速度。端粒的测量对生态学家来说越来越重要,但目前尚不清楚不同方法估计端粒长度的相对优点。特别是,远离染色体末端的端粒重复序列(ITSs)在多大程度上混淆了端粒长度的估计尚不清楚。在这里,我们提出了一种估计物种内和个体间 ITS 范围的方法。我们通过比较在 TRF 变性前后与凝胶内端粒限制片段(TRF)杂交的标记量来估计 ITS 的范围。该方案在鸟类中产生了稳健且可重复的 ITS 范围估计值。在五个物种中,ITS 的数量相当可观,范围从总端粒序列 DNA 的 15%到 40%。此外,ITS 的数量在物种内的个体之间也会有显著差异。在端粒长度计算中包含 ITS 总是低估端粒长度,因为大多数 ITS 比大多数端粒短。该误差的大小随端粒长度而变化,对于较长的端粒,误差更大。使用包含 ITS 的方法(如 Southern blot TRF 和定量 PCR 分析)估计端粒长度会降低研究人员检测个体间或个体内部随时间推移的端粒动态差异的能力。

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