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315:, which are electronically dense structures composed of ribonucleoprotein complexes that are possibly responsible for maintaining neoblasts. Two protein components have been found within the chromatoid bodies DjCBC-1 and SpolTud-1, which are homologous to proteins involved in the proliferation of germline cells in other organisms.
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There are two distinct populations of neoblasts, called zeta and sigma. Zeta and sigma neoblasts are morphologically similar, but they are characterized by expression of different genes. Sigma neoblasts produce brain, intestine, muscle, excretory, pharynx, and eye cell types. They also lead to cells
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transformed planarians into a model genetic organism in the beginning of the 20th century to study the molecular mechanisms underlying regeneration. Morgan found that a piece corresponding to 1/279th of a planarian or a fragment with as few as 10,000 cells could regenerate into a new worm within one
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New cells produced by dividing neoblasts form the regenerating blastema. Hours following the injury, a wound response is initiated. The initial wound response is characterized by an increase in the number of cell divisions and by expression of injury-response genes. The expression of genes that are
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The study of neoblasts helps uncover the mechanisms and functioning of stem cells and tissue degeneration. Planarians can regenerate any body part from small pieces in a few days and have many adult stem cells. They are easy to culture and grown to large populations. Their proteins are similar to
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sub-family of proteins and the small RNAs that interact with them are essential for germline cell development, cell turnover, epigenetic regulation, and repression of transposable elements. Neoblasts express three Piwi homologs, and expression of the Piwi homolog
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required for regenerating the specific damaged tissues is observed few days following the injury. The changes in gene expression are followed by the rapid growth of the blastema, and with emergence of new functional tissues.
289:. They are the only dividing planarian cells. Neoblasts are found in the planarian parenchyma across the entire body, outside organ systems. The only regions that lack neoblasts completely are the pharynx and the head tip.
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to two weeks. Morgan also found that if both the head and the tail were cut off a flatworm the middle segment would regenerate a head from the former anterior end and a tail from the former posterior end.
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is done by feeding, injecting, or soaking them in double-stranded RNA. The genome of
Schmidtea mediterranea has been sequenced. In humans, no known pluripotent stem cells remain after birth.
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and the existence of both asexual and sexual strains. Recent genetic screens utilizing double-stranded RNA technology have uncovered 240 genes that affect regeneration in
273:, and comprise up to 30 percent of all cells. Following injury, neoblasts rapidly divide and generate new cells, which allows planarians to regenerate any missing tissue.
214:. Neoblasts are found throughout the body, except for the pharynx (blue arrow) and the head tip. Neoblasts are labeled in red. Green labeling shows neoblasts in division.
743:"DjCBC-1, a conserved DEAD box RNA helicase of the RCK/p54/Me31B family, is a component of RNA-protein complexes in planarian stem cells and neurons"
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Neoblasts are somatic adult stem cells that are abundant in planarians. Morphologically, neoblasts are round and small, 5 to 10 μm, and have a large
84:
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Newmark PA, Sánchez
Alvarado A (March 2002). "Not your father's planarian: a classic model enters the era of functional genomics".
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Reddien, Peter W.; Oviedo, Néstor J.; Jennings, Joya R.; Jenkin, James C.; Alvarado, Alejandro Sánchez (25 November 2005).
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Sánchez
Alvarado A, Newmark PA (1998). "The use of planarians to dissect the molecular basis of metazoan regeneration".
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855:"The PIWI proteins SMEDWI-2 and SMEDWI-3 are required for stem cell function and piRNA expression in planarians"
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expression results in animals regenerating anterior tissues (e.g., head) instead of posterior (e.g. tail).
380:
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Palakodeti, Dasaradhi; Smielewska, Magda; Lu, Yi-Chien; Yeo, Gene W.; Graveley, Brenton R. (2 May 2008).
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is used to distinguish neoblasts from other somatic cells. The expression of two other Piwi homologs,
265:
flatworms. They are the only dividing planarian cells, and they produce all cell types, including the
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145:
136:
38:
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Montgomery JR, Coward SJ (July 1974). "On the minimal size of a planarian capable of regeneration".
486:. Methods in Molecular Biology. Vol. 1774. New York, NY: Springer New York. pp. 57–172.
480:"Stem Cells, Patterning and Regeneration in Planarians: Self-Organization at the Organismal Scale"
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A collaborative research community on planarian research, EuroPlanNet, was launched in May 2010.
1179:"The planarian flatworm: an in vivo model for stem cell biology and nervous system regeneration"
915:"Smed-betacatenin-1 is required for anteroposterior blastema polarity in planarian regeneration"
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532:"Multicellularity, stem cells, and the neoblasts of the planarian Schmidtea mediterranea"
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expression is required for producing tissues with posterior identity, and inhibition of
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that become zeta neoblasts. Zeta neoblasts then develop the other epidermal cell types.
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gene expression blocks regeneration, impairs tissue maintenance and leads to death.
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Reddien PW, Sánchez
Alvarado A (2004). "Fundamentals of planarian regeneration".
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activity regulates the planarian anterior-posterior axis. Analysis of the gene
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797:"SMEDWI-2 Is a PIWI-Like Protein That Regulates Planarian Stem Cells"
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Yoshida-Kashikawa M, Shibata N, Takechi K, Agata K (December 2007).
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662:"The Cellular and Molecular Basis for Planarian Regeneration"
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has emerged as the species of choice for research due to its
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Sánchez
Alvarado, Alejandro; Kang, Hara (25 April 2005).
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1177:Gentile L, Cebrià F, Bartscherer K (January 2011).
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Piwi and the interaction of small RNAs in neoblasts
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may be too technical for most readers to understand
1063:Transactions of the American Microscopical Society
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141:punctuation, grammatical errors, sentence clarity.
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973:Morgan TH (1900). "Regeneration in Planarians".
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210:Distribution of Neoblasts in the planarian
53:Learn how and when to remove these messages
720:(12th ed.). Oxford University Press.
606:"Specialized progenitors and regeneration"
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340:is essential for neoblasts. Inhibition of
269:. Neoblasts are abundant in the planarian
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16:Planarian regeneration proliferative cells
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360:is expressed by all neoblasts.
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432:. Many of these genes have
139:. The specific problem is:
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352:Neoblast specialization
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484:Planarian Regeneration
421:Schmidtea mediterranea
238:Anatomical terminology
212:Schmidtea mediterranea
1153:Developmental Biology
718:Developmental Biology
436:in the human genome.
373:Wnt signaling pathway
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482:. In Rink JC (ed.).
146:improve this article
135:to meet Knowledge's
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807:(5752): 1327–1330.
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389:Smed-betacatenin-1
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293:Blastema formation
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440:Application
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148:if you can.
515:3 December
456:References
401:planarians
285:and scant
271:parenchyma
39:improve it
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434:orthologs
356:The gene
338:smedwi-3,
287:cytoplasm
263:planarian
261:found in
255:Neoblasts
45:talk page
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