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This analysis of labial function reveals a novel cell autonomous role of a Hox gene in shaping the lineage architecture of the brain during postembryonic development.
Our analysis of labial function reveals a novel cell autonomous role of this Hox gene in shaping the lineage architecture of the brain during postembryonic development.
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The role of labial in terminating proliferation in specific brain neuroblasts during postembryonic development is strikingly different from the function of this Hox gene during embryonic brain development in Drosophila (Hirth et al., 1998; Reichert and Bello, 2010).
Thus, while labial misexpression does not appear to affect neuroblast survival, it can result in aberrant secondary axon tract projection patterns in central brain lineages during postembryonic development.
Second, the adult eyes of endopterygote species correspond specifically to the portion of the adult eye that is added on during postembryonic development in directly developing insects (Fig. 7).
To investigate this, we have performed a genetic, cellular and molecular analysis of the roles played by PROS in neural proliferation and neurogenesis during postembryonic development of the Drosophila brain.
Identification of the ALl1 lineage in the larval brain with the ems7.1-Gal4 line together with anti-Ems immunolabelling showed that the ALl1 NB expresses Ems during postembryonic development (Fig. 2A,B).
Stemmata are larval eyes found specifically in indirectly developing insects (Endopterygota or Holometabola) like butterflies, honeybees, and Drosophila, and which undergo dramatic changes during postembryonic development (Kristensen 1999; Friedrich 2003).
In C. elegans, multiple types of tissues undergo several rounds of cell divisions during postembryonic development.
Proliferation during postembryonic development of the OL and CB has been studied extensively.
Nematodes actively regulate cell and organ size during postembryonic development [49].
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