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Attempt to Identify Novel IFT Mutant through PCR Sequencing and Analysis of Chlamydomonas reinhardtii Flagellar Mutants

机译:试图通过PCR测序和衣藻衣藻鞭毛突变体鉴定新型IFT突变体

摘要

The flagella organelle is crucial to many different cells and organisms because it allows for sensation and movement throughout a matrix. The Intraflagellar Transport system (IFT) is of particular interest since it helps build and maintain the flagella through anterograde and retrograde transport. Chlamydomonas reinhardtii is a commonly used model to study the mechanisms of how the flagella organelle functions because its flagella organelle is highly conserved and similar to human cilia and flagella. One route in which to study the flagella organelle is through the creation and analysis of flagellar mutants. Six possible C. reinhardtii IFT mutants (created from a previous transformation process and confirmed through a phototaxis test) were chosen to perform PCR on. These regions of disrupted DNA used for PCR were hypothesized to be related to IFT. The DNA was sent to be sequenced in order to determine what sections of the C. reinhardtii genome were disrupted by the transformation process. Conclusive results are currently being determined. The consequences of improper functioning flagella can be devastating to a cell. Through this research, the flagella organelle and its IFT processes can be better understood, and the findings may even aid in the discovery of cures for flagellar diseases (such as polycystic disease, retinitis pigmentosa, etc.).
机译:鞭毛细胞器对许多不同的细胞和生物都至关重要,因为鞭毛器可以在整个基质内进行感知和移动。鞭毛内运输系统(IFT)特别令人感兴趣,因为它有助于通过顺行和逆行运输来建立和维持鞭毛。莱茵衣藻是研究鞭毛细胞器功能的机制的常用模型,因为其鞭毛细胞器是高度保守的并且类似于人纤毛和鞭毛。研究鞭毛细胞器的一种途径是通过鞭毛突变体的产生和分析。选择了六个可能的莱茵衣藻IFT突变体(由先前的转化过程创建并通过趋光性试验确认)以进行PCR。假设这些用于PCR的DNA断裂区域与IFT有关。发送DNA进行测序,以确定莱茵衣藻基因组的哪些部分被转化过程破坏了。目前正在确定结论性结果。鞭毛功能不正常的后果可能会破坏细胞。通过这项研究,可以更好地了解鞭毛细胞器及其IFT过程,甚至可以帮助发现鞭毛疾病(例如多囊性疾病,色素性视网膜炎等)的治疗方法。

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    Hernandez Catherine Marie;

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  • 年度 2013
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