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Delayed cytokinesis generates multinuclearity and potential advantages in the amoeba Acanthamoeba castellanii Neff strain

机译:延迟细胞因子在Amoeba Acanthamoebo Castellanii Neff resulta中产生多核和潜在优势

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Multinuclearity is a widespread phenomenon across the living world, yet how it is achieved, and the potential related advantages, are not systematically understood. In this study, we investigate multinuclearity in amoebae. We observe that non-adherent amoebae are giant multinucleate cells compared to adherent ones. The cells solve their multinuclearity by a stretchy cytokinesis process with cytosolic bridge formation when adherence resumes. After initial adhesion to a new substrate, the progeny of the multinucleate cells is more numerous than the sibling cells generated from uninucleate amoebae. Hence, multinucleate amoebae show an advantage for population growth when the number of cells is quantified over time. Multiple nuclei per cell are observed in different amoeba species, and the lack of adhesion induces multinuclearity in diverse protists such as Acanthamoeba castellanii, Vermamoeba vermiformis, Naegleria gruberi and Hartmannella rhysodes. In this study, we observe that agitation induces a cytokinesis delay, which promotes multinuclearity. Hence, we propose the hypothesis that multinuclearity represents a physiological adaptation under non-adherent conditions that can lead to biologically relevant advantages.
机译:多核是整个生活世界的广泛现象,但如何实现如何实现,以及潜在的相关优势,并没有系统地理解。在这项研究中,我们调查Amoebae的多核。我们观察到,与粘附的粘附剂相比,未粘附的作物是巨大的多核细胞。当粘附恢复时,细胞通过具有胞质桥形成的胞质桥梁形成的胞质细胞因子方法来解决它们的多核。在初始粘附到新的基材之后,多核细胞的后代比从无核AmoEbae产生的兄弟细胞更大。因此,当细胞数量随时间量化时,MultinucleateAmoEbae显示出群体生长的优势。在不同的AmoEba物种中观察到每种细胞的多核,并且缺乏粘附诱导多种粘连等不同的保护区,如Acanthamoeba Castellanii,vermamoba蚓,Naegleria Gruberi和Hartmannella rhysodes。在这项研究中,我们观察到搅拌诱导促进多核的细胞因子延迟。因此,我们提出了多核代表在可能导致生物学相关优点的非依赖条件下的生理适应性的假设。

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