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Skeletal regeneration in the brittle star Amphiura filiformis
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نویسنده
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czarkwiani a. ,ferrario c. ,dylus d.v. ,sugni m. ,oliveri p.
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منبع
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frontiers in zoology - 2016 - دوره : 13 - شماره : 1
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چکیده
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Background: brittle stars regenerate their whole arms post-amputation. amphiura filiformis can now be used for molecular characterization of arm regeneration due to the availability of transcriptomic data. previous work showed that specific developmental transcription factors known to take part in echinoderm skeletogenesis are expressed during adult arm regeneration in a. filiformis; however,the process of skeleton formation remained poorly understood. here,we present the results of an in-depth microscopic analysis of skeletal morphogenesis during regeneration,using calcein staining,edu labeling and in situ hybridization. results: to better compare different samples,we propose a staging system for the early a. filiformis arm regeneration stages based on morphological landmarks identifiable in living animals and supported by histological analysis. we show that the calcified spicules forming the endoskeleton first appear very early during regeneration in the dermal layer of regenerates. these spicules then mature into complex skeletal elements of the differentiated arm during late regeneration. the mesenchymal cells in the dermal area express the skeletal marker genes afi-c-lectin,afi-p58b and afi-p19; however,edu labeling shows that these dermal cells do not proliferate. conclusions: a. filiformis arms regenerate through a consistent set of developmental stages using a distalization-intercalation mode,despite variability in regeneration rate. skeletal elements form in a mesenchymal cell layer that does not proliferate and thus must be supplied from a different source. our work provides the basis for future cellular and molecular studies of skeleton regeneration in brittle stars. © 2016 czarkwiani et al.
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کلیدواژه
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Brittle star; C-lectin; Echinoderms; p19; p58b; Proliferation; Regeneration; Skeleton
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آدرس
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university college london,department of genetics,evolution and environment,london, United Kingdom, university of milan,department of biosciences,milan, Italy, university college london,department of genetics,evolution and environment,london,united kingdom,university college london,centre for mathematics,physics and engineering,life sciences and experimental biology,london,united kingdom,university of lausanne,department of ecology and evolution and center for integrative genomics,lausanne, Switzerland, university of milan,department of biosciences,milan, Italy, university college london,department of genetics,evolution and environment,london,united kingdom,university college london,research department of genetics,evolution and environment,darwin building,gower street,london,wc1e 6bt, United Kingdom
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Authors
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