首页> 外文期刊>Frontiers in Genetics >Using Centromere Mediated Genome Elimination to Elucidate the Functional Redundancy of Candidate Telomere Binding Proteins in Arabidopsis thaliana
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Using Centromere Mediated Genome Elimination to Elucidate the Functional Redundancy of Candidate Telomere Binding Proteins in Arabidopsis thaliana

机译:使用中心体消除基因组来阐明 Arabidopsis thaliana 中候选端粒结合蛋白的功能冗余

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Proteins that bind to telomeric DNA form the key structural and functional constituents of telomeres. While telomere binding proteins have been described in the majority of organisms, their identity in plants remains unknown. Several protein families containing a telomere binding motif known as the telobox have been previously described in Arabidopsis thaliana . Nonetheless, functional evidence for their involvement at telomeres has not been obtained, likely due to functional redundancy. Here we performed genetic analysis on the TRF-like family consisting of six proteins (TRB1, TRP1, TRFL1, TRFL2, TRFL4, and TRF9) which have previously shown to bind telomeric DNA in vitro . We used haploid genetics to create multiple knock-out plants deficient for all six proteins of this gene family. These plants did not exhibit changes in telomere length, or phenotypes associated with telomere dysfunction. This data demonstrates that this telobox protein family is not involved in telomere maintenance in Arabidopsis . Phylogenetic analysis in major plant lineages revealed early diversification of telobox proteins families indicating that telomere function may be associated with other telobox proteins.
机译:结合端粒DNA的蛋白质形成端粒的关键结构和功能成分。尽管端粒结合蛋白已在大多数生物中得到描述,但它们在植物中的身份仍然未知。先前已经在拟南芥中描述了几种包含端粒结合基序的蛋白家族,称为端粒盒。但是,由于功能冗余,尚未获得有关它们参与端粒的功能性证据。在这里,我们对TRF样家族进行了遗传分析,该家族由六个蛋白(TRB1,TRP1,TRFL1,TRFL2,TRFL4和TRF9)组成,这些蛋白先前已显示出可在体外结合端粒DNA。我们使用单倍体遗传学来创建该基因家族的所有六个蛋白质均缺乏的多个基因敲除植物。这些植物没有表现出端粒长度变化或与端粒功能障碍有关的表型变化。该数据表明该端粒蛋白家族不参与拟南芥端粒的维持。在主要植物谱系中的系统发生分析表明,端粒蛋白家族的早期多样化表明端粒功能可能与其他端粒蛋白相关。

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