WormMine

WS297

Intermine data mining platform for C. elegans and related nematodes

GO Term : GO:0014838 myoblast fate specification involved in skeletal muscle regeneration GO

Namespace  biological_process Obsolete  false
Description  The process in which a satellite cell becomes capable of differentiating autonomously into a myoblast in an environment that is neutral with respect to the developmental pathway. Upon specification, the cell fate can be reversed. This occurs as part of skeletal muscle regeneration. A myoblast is a mononucleate cell type that, by fusion with other myoblasts, gives rise to the myotubes that eventually develop into skeletal muscle fibers.

0 Cross References

0 Data Sets

1 Ontology

Name
GO

0 Ontology Annotations

20 Parents

Identifier Name Description
GO:0009987 cellular process Any process that is carried out at the cellular level, but not necessarily restricted to a single cell. For example, cell communication occurs among more than one cell, but occurs at the cellular level.
GO:0008150 biological_process A biological process is the execution of a genetically-encoded biological module or program. It consists of all the steps required to achieve the specific biological objective of the module. A biological process is accomplished by a particular set of molecular functions carried out by specific gene products (or macromolecular complexes), often in a highly regulated manner and in a particular temporal sequence.
GO:0032502 developmental process A biological process whose specific outcome is the progression of an integrated living unit: an anatomical structure (which may be a subcellular structure, cell, tissue, or organ), or organism over time from an initial condition to a later condition.
GO:0048856 anatomical structure development The biological process whose specific outcome is the progression of an anatomical structure from an initial condition to its mature state. This process begins with the formation of the structure and ends with the mature structure, whatever form that may be including its natural destruction. An anatomical structure is any biological entity that occupies space and is distinguished from its surroundings. Anatomical structures can be macroscopic such as a carpel, or microscopic such as an acrosome.
GO:0040007 growth The increase in size or mass of an entire organism, a part of an organism or a cell.
GO:0048869 cellular developmental process A biological process whose specific outcome is the progression of a cell over time from an initial condition to a later condition.
GO:0030154 cell differentiation The cellular developmental process in which a relatively unspecialized cell, e.g. embryonic or regenerative cell, acquires specialized structural and/or functional features that characterize a specific cell. Differentiation includes the processes involved in commitment of a cell to a specific fate and its subsequent development to the mature state.
GO:0048589 developmental growth The increase in size or mass of an entire organism, a part of an organism or a cell, where the increase in size or mass has the specific outcome of the progression of the organism over time from one condition to another.
GO:0045165 cell fate commitment The cellular developmental process by which a cell establishes the intrinsic character of a cell or tissue region irreversibly committing it to a particular fate.
GO:0001708 cell fate specification The cellular developmental process involved in cell fate commitment in which the cell is designated to follow a developmental path, unless they receive extrinsic cues that direct an alternative fate.
GO:0061061 muscle structure development The progression of a muscle structure over time, from its formation to its mature state. Muscle structures are contractile cells, tissues or organs that are found in multicellular organisms.
GO:0042246 tissue regeneration The regrowth of lost or destroyed tissues.
GO:0031099 regeneration The regrowth of a lost or destroyed body part, such as an organ or tissue. This process may occur via renewal, repair, and/or growth alone (i.e. increase in size or mass).
GO:0048625 myoblast fate commitment The process in which the developmental fate of a cell becomes restricted such that it will develop into a myoblast. A myoblast is a mononucleate cell type that, by fusion with other myoblasts, gives rise to the myotubes that eventually develop into skeletal muscle fibers.
GO:0045445 myoblast differentiation The process in which a relatively unspecialized cell acquires specialized features of a myoblast. A myoblast is a mononucleate cell type that, by fusion with other myoblasts, gives rise to the myotubes that eventually develop into striated muscle fibers.
GO:0043403 skeletal muscle tissue regeneration The regrowth of skeletal muscle tissue to repair injured or damaged muscle fibers in the postnatal stage.
GO:0014835 myoblast differentiation involved in skeletal muscle regeneration The process in which a relatively unspecialized satellite cell acquires specialized features of a myoblast. This occurs as part of skeletal muscle regeneration. A myoblast is a mononucleate cell type that, by fusion with other myoblasts, gives rise to the myotubes that eventually develop into skeletal muscle fibers.
GO:0014836 myoblast fate commitment involved in skeletal muscle regeneration The process in which the developmental fate of a satellite cell becomes restricted such that it will develop into a myoblast. This occurs as part of skeletal muscle regeneration. A myoblast is a mononucleate cell type that, by fusion with other myoblasts, gives rise to the myotubes that eventually develop into skeletal muscle fibers.
GO:0014838 myoblast fate specification involved in skeletal muscle regeneration The process in which a satellite cell becomes capable of differentiating autonomously into a myoblast in an environment that is neutral with respect to the developmental pathway. Upon specification, the cell fate can be reversed. This occurs as part of skeletal muscle regeneration. A myoblast is a mononucleate cell type that, by fusion with other myoblasts, gives rise to the myotubes that eventually develop into skeletal muscle fibers.
GO:0048626 myoblast fate specification The process in which a cell becomes capable of differentiating autonomously into a myoblast in an environment that is neutral with respect to the developmental pathway. Upon specification, the cell fate can be reversed. A myoblast is a mononucleate cell type that, by fusion with other myoblasts, gives rise to the myotubes that eventually develop into skeletal muscle fibers.

25 Relations

Relationship
Parent Term . Identifier

Child Term . Identifier
part of GO:0043403 GO:0014838
part of GO:0014836 GO:0014838
is_a GO:0048626 GO:0014838
is_a GO:0048626 GO:0014838
is_a GO:0008150 GO:0014838
part of GO:0032502 GO:0014838
part of GO:0009987 GO:0014838
part of GO:0048625 GO:0014838
part of GO:0061061 GO:0014838
part of GO:0048856 GO:0014838
part of GO:0014835 GO:0014838
part of GO:0042246 GO:0014838
part of GO:0045445 GO:0014838
is_a GO:0001708 GO:0014838
part of GO:0048589 GO:0014838
is_a GO:0032502 GO:0014838
part of GO:0045165 GO:0014838
part of GO:0008150 GO:0014838
part of GO:0043403 GO:0014838
part of GO:0048869 GO:0014838
part of GO:0040007 GO:0014838
part of GO:0030154 GO:0014838
part of GO:0031099 GO:0014838
is_a GO:0048869 GO:0014838
is_a GO:0009987 GO:0014838

0 Synonyms