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Cell Cycle-Dependent Flagellar Disassembly in a Firebug Trypanosomatid Leptomonas pyrrhocoris

机译:萤火虫锥虫拟南芥pyrhocoris的细胞周期依赖鞭毛的拆卸。

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Current understanding of flagellum/cilium length regulation focuses on a few model organisms with flagella of uniform length. Leptomonas pyrrhocoris is a monoxenous trypanosomatid parasite of firebugs. When cultivated in vitro , L. pyrrhocoris duplicates every 4.2?±?0.2?h, representing the shortest doubling time reported for trypanosomatids so far. Each L. pyrrhocoris cell starts its cell cycle with a single flagellum. A new flagellum is assembled de novo , while the old flagellum persists throughout the cell cycle. The flagella in an asynchronous L. pyrrhocoris population exhibited a vast length variation of ~3 to 24?μm, casting doubt on the presence of a length regulation mechanism based on a single balance point between the assembly and disassembly rate in these cells. Through imaging of live L. pyrrhocoris cells, a rapid, partial disassembly of the existing, old flagellum is observed upon, if not prior to, the initial assembly of a new flagellum. Mathematical modeling demonstrated an inverse correlation between the flagellar growth rate and flagellar length and inferred the presence of distinct, cell cycle-dependent disassembly mechanisms with different rates. On the basis of these observations, we proposed a min-max model that could account for the vast flagellar length range observed for asynchronous L. pyrrhocoris. This model may also apply to other flagellated organisms with flagellar length variation.
机译:目前对鞭毛/纤毛长度调节的理解集中在鞭毛长度一致的一些模型生物上。嗜热小球菌是萤火虫的一种单一的锥虫寄生虫。体外培养时,吡咯菌每4.2?±?0.2?h重复一次,这是迄今为止报道的锥虫的最短倍增时间。每个吡咯菌的细胞都以单个鞭毛开始其细胞周期。新鞭毛从头开始组装,而旧鞭毛在整个细胞周期中持续存在。异步拟南芥种群中的鞭毛表现出约3至24?μm的巨大长度变化,这使人们怀疑是否存在基于这些细胞中组装和拆卸速率之间单一平衡点的长度调节机制。通过对活的鞭毛乳杆菌细胞进行成像,如果不早于新鞭毛的初始组装,就可以观察到现有旧鞭毛的快速,部分拆卸。数学建模表明鞭毛生长速率和鞭毛长度之间呈反比关系,并推断存在不同速率的不同细胞周期依赖性拆卸机制。基于这些观察结果,我们提出了一个最小-最大模型,该模型可以解释观察到的非同步拟南芥的鞭毛长度范围。该模型还可以应用于鞭毛长度变化的其他鞭毛生物。

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