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Cytoskeletal discoveries in the plant lineage using the moss Physcomitrella patens

机译:植物谱系中的细胞骨骼发现使用MOSS Physcomitrella Patens

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摘要

Advances in cell biology have been largely driven by pioneering work in model systems, the majority of which are from one major eukaryotic lineage, the opisthokonts. However, with the explosion of genomic information in many lineages, it has become clear that eukaryotes have incredible diversity in many cellular systems, including the cytoskeleton. By identifying model systems in diverse lineages, it may be possible to begin to understand the evolutionary origins of the eukaryotic cytoskeleton. Within the plant lineage, cell biological studies in the model moss, Physcomitrella patens, have over the past decade provided key insights into how the cytoskeleton drives cell and tissue morphology. Here, we review P. patens attributes that make it such a rich resource for cytoskeletal cell biological inquiry and highlight recent key findings with regard to intracellular transport, microtubule-actin interactions, and gene discovery that promises for many years to provide new cytoskeletal players.
机译:细胞生物学的进步在模型系统中的开创性工作主要是在很大程度上推动的,其中大多数来自一个主要的真核性血统,Opisthokonts。然而,随着许多谱系的基因组信息的爆炸,已经清楚地清楚,在许多细胞系统中,真核生物具有令人难以置信的多样性,包括细胞骨架。通过以各种谱系识别模型系统,可以开始了解真核细胞骨架的进化起源。在植物血统内,在苔藓模型中的细胞生物学研究,Physcomitrella Patens,在过去十年中,已经提供了关键的见解,以如何细胞骨架驱动细胞和组织形态。在这里,我们审查了P.Patens属性,使其成为细胞骨骼细胞生物调查的丰富资源,并突出关于细胞内运输,微管 - 肌动蛋白相互作用和基因发现的最新关键发现,这些关键发现是多年来提供新的细胞骨架球员。

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