Literature DB >> 20078652

Cellular and molecular dissection of pluripotent adult somatic stem cells in planarians.

Norito Shibata1, Labib Rouhana, Kiyokazu Agata.   

Abstract

Freshwater planarians, Plathelminthes, have been an intriguing model animal of regeneration studies for more than 100 years. Their robust regenerative ability is one of asexual reproductive capacity, in which complete animals develop from tiny body fragments within a week. Pluripotent adult somatic stem cells, called neoblasts, assure this regenerative ability. Neoblasts give rise to not only all types of somatic cells, but also germline cells. During the last decade, several experimental techniques for the analysis of planarian neoblasts at the molecular level, such as in situ hybridization, RNAi and fluorescence activated cell sorting, have been established. Moreover, information about genes involved in maintenance and differentiation of neoblasts has been accumulated. One of the molecular features of neoblasts is the expression of many RNA regulators, which are involved in germline development in other animals, such as vasa and piwi family genes. In this review, we introduce physiological and molecular features of the neoblast, and discuss how germline genes regulate planarian neoblasts and what differences exist between neoblasts and germline cells.

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Year:  2010        PMID: 20078652     DOI: 10.1111/j.1440-169X.2009.01155.x

Source DB:  PubMed          Journal:  Dev Growth Differ        ISSN: 0012-1592            Impact factor:   2.053


  49 in total

1.  Inhibition of planar cell polarity extends neural growth during regeneration, homeostasis, and development.

Authors:  Wendy S Beane; Ai-Sun Tseng; Junji Morokuma; Joan M Lemire; Michael Levin
Journal:  Stem Cells Dev       Date:  2012-03-23       Impact factor: 3.272

2.  Dynein assembly factor with WD repeat domains 1 (DAW1) is required for the function of motile cilia in the planarian Schmidtea mediterranea.

Authors:  Sydney Lynn Lesko; Labib Rouhana
Journal:  Dev Growth Differ       Date:  2020-06-01       Impact factor: 2.053

3.  PRMT5 and the role of symmetrical dimethylarginine in chromatoid bodies of planarian stem cells.

Authors:  Labib Rouhana; Ana P Vieira; Rachel H Roberts-Galbraith; Phillip A Newmark
Journal:  Development       Date:  2012-02-08       Impact factor: 6.868

4.  Protein expression profiling in head fragments during planarian regeneration after amputation.

Authors:  Xiaoguang Chen; Cunshuan Xu
Journal:  Dev Genes Evol       Date:  2015-02-20       Impact factor: 0.900

Review 5.  The stem cell system in demosponges: suggested involvement of two types of cells: archeocytes (active stem cells) and choanocytes (food-entrapping flagellated cells).

Authors:  Noriko Funayama
Journal:  Dev Genes Evol       Date:  2012-10-09       Impact factor: 0.900

Review 6.  Specialized progenitors and regeneration.

Authors:  Peter W Reddien
Journal:  Development       Date:  2013-03       Impact factor: 6.868

7.  Trematode reproduction in the molluscan host: an ultrastructural study of the germinal mass in the rediae of Himasthla elongata (Mehlis, 1831) (Digenea: Echinostomatidae).

Authors:  Irina M Podvyaznaya; Kirill V Galaktionov
Journal:  Parasitol Res       Date:  2014-01-31       Impact factor: 2.289

8.  PIWI homologs mediate histone H4 mRNA localization to planarian chromatoid bodies.

Authors:  Labib Rouhana; Jennifer A Weiss; Ryan S King; Phillip A Newmark
Journal:  Development       Date:  2014-06-05       Impact factor: 6.868

9.  Stem cell proliferation during in vitro development of the model cestode Mesocestoides corti from larva to adult worm.

Authors:  Uriel Koziol; María F Domínguez; Mónica Marín; Alejandra Kun; Estela Castillo
Journal:  Front Zool       Date:  2010-07-13       Impact factor: 3.172

10.  pbx is required for pole and eye regeneration in planarians.

Authors:  Chun-Chieh G Chen; Irving E Wang; Peter W Reddien
Journal:  Development       Date:  2013-01-14       Impact factor: 6.868

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