Expression and function of an even-skipped homolog in the leech Helobdella robusta
Developmental biology published in Development (2002)
Abstract
We have identified homologs of the Drosophila pair-rule gene even-skipped in the glossiphoniid leeches Helobdella robusta and Theromyzon trizonare. In leech embryos, segments arise sequentially from five pairs of embryonic stem cells (teloblasts) that undergo iterated divisions to generate columns (bandlets) of segmental founder cells (primary blast cells), which in turn generate segmentally iterated sets of definitive progeny. In situ hybridization revealed that Hro-eve is expressed in the teloblasts and primary blast cells, and that these transcripts appear to be associated with mitotic chromatin. In more advanced embryos, Hro-eve is expressed in segmentally iterated sets of cells in the ventral nerve cord. Lineage analysis revealed that neurons expressing Hro-eve arise from the N teloblast. To assess the function of Hro-eve, we examined embryos in which selected blastomeres had been injected with antisense Hro-eve morpholino oligonucleotide (AS-Hro-eve MO), concentrating on the primary neurogenic (N teloblast) lineage. Injection of AS-Hro-eve MO perturbed the normal patterns of teloblast and blast cell divisions and disrupted gangliogenesis. These results suggest that Hro-eve is important in regulating early cell divisions through early segmentation, and that it also plays a role in neuronal differentiation.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Резюме
Hro-eve, a Drosophila even-skipped homolog, regulates teloblast and blast-cell divisions and ventral nerve cord neuron differentiation in the leech Helobdella robusta — providing evolutionary insight into segmentation gene networks.
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This study identified and characterized homologs of the Drosophila pair-rule gene even-skipped (Hro-eve) in the glossiphoniid leech Helobdella robusta, examining its expression in teloblasts, primary blast cells, and ventral nerve cord neurons, and its function through morpholino knockdown experiments. The abstract describes how antisense Hro-eve morpholino injection perturbed teloblast and blast cell divisions and disrupted gangliogenesis, suggesting roles in early cell division, segmentation, and neuronal differentiation. This is a developmental genetics study with no relevance to hirudotherapy, the leech secretome, or any therapeutic application of leeches or leech-derived compounds. The leech is used purely as a model organism for studying body patterning and developmental biology; the study does not address anticoagulants, salivary components, or any topic within ASH's domain.
Цитирование
Expression and function of an even-skipped homolog in the leech Helobdella robusta.
Song MH et al. · Development (Cambridge, England), 2002
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