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The free-living flatworm Macrostomum lignano

机译:自由生活扁虫Macroostomum Lignano

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Macrostomum lignano is a free-living flatworm that is emerging as an attractive experimental animal for research on a broad range of biological questions. One feature setting it apart from other flatworms is the successful establishment of transgenesis methods, facilitated by a steady supply of eggs in the form of single-cell zygotes that can be readily manipulated. This, in combination with the transparency of the animal and its small size, creates practical advantages for imaging and fluorescence-activated cell sorting in studies related to stem cell biology and regeneration. M. lignano can regenerate most of its body parts, including the germline, thanks to the neoblasts, which represent the flatworm stem cell system. Interestingly, neoblasts seem to have a high capacity of cellular maintenance, as M. lignano can survive up to 210?Gy of γ-irradiation, and partially offset the negative consequence of ageing. As a non-self-fertilizing simultaneous hermaphrodite that reproduces in a sexual manner, M. lignano is also used to study sexual selection and other evolutionary aspects of sexual reproduction. Work over the past several years has led to the development of molecular resources and tools, including high-quality genome and transcriptome assemblies, transcriptional profiling of the germline and somatic neoblasts, gene knockdown, and in situ hybridization. The increasingly detailed characterization of this animal has also resulted in novel research questions, such as bio-adhesion based on its adhesion-release glands and genome evolution due to its recent whole-genome duplication.
机译:Macrostomum Lignano是一种自由生活的扁平虫,作为一种有吸引力的实验动物,用于研究广泛的生物问题。一个特征将其与其他扁虫相比是成功建立转发方法,通过稳定供应的单细胞Zygotes的卵子供应,这可以容易地操纵。这与动物的透明度和其小尺寸的透明度结合,产生了与干细胞生物学和再生相关的研究中的成像和荧光激活细胞分选的实际优势。 M. Lignano可以通过代表扁虫干细胞系统来再生包括种系的大部分身体部位,包括种系。有趣的是,新细胞似乎具有高容量的细胞维持,因为M.Lignano可以存活至210?GY的γ-辐射,并且部分地抵消老化的负面后果。作为一种以性方式再现的非自我施肥同时性雌雄同体,M. Lignano也用于研究性选择和其他进化的性繁殖的进化方面。过去几年的工作导致了分子资源和工具的发展,包括高质量的基因组和转录组组件,种系和体细胞新细胞的转录剖析,基因敲低,以及原位杂交。这种动物的越来越详细的表征也导致新的研究问题,例如基于其最近的全基因组重复而基于其粘附释放腺和基因组进化的生物粘附。

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