Pages that link to "Q51998833"
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The following pages link to Hox gene expression in larval development of the polychaetes Nereis virens and Platynereis dumerilii (Annelida, Lophotrochozoa). (Q51998833):
Displaying 50 items.
- The bilaterian head patterning gene six3/6 controls aboral domain development in a cnidarian (Q21145726) (← links)
- The normal development of Platynereis dumerilii (Nereididae, Annelida) (Q21231968) (← links)
- Evolution of the notochord (Q26786410) (← links)
- Genetic and genomic tools for the marine annelid Platynereis dumerilii (Q27024130) (← links)
- A transcriptional blueprint for a spiral-cleaving embryo (Q28598232) (← links)
- Nervous systems and scenarios for the invertebrate-to-vertebrate transition (Q28603837) (← links)
- How Hox genes can shed light on the place of echinoderms among the deuterostomes (Q28657806) (← links)
- Life cycle evolution: was the eumetazoan ancestor a holopelagic, planktotrophic gastraea? (Q28681572) (← links)
- Gene expression in bryozoan larvae suggest a fundamental importance of pre-patterned blastemic cells in the bryozoan life-cycle (Q28742732) (← links)
- Expression of Distal-less, dachshund, and optomotor blind in Neanthes arenaceodentata (Annelida, Nereididae) does not support homology of appendage-forming mechanisms across the Bilateria (Q28744073) (← links)
- Michael Akam and the rise of evolutionary developmental biology (Q28748211) (← links)
- Origins of the other metazoan body plans: the evolution of larval forms (Q28755884) (← links)
- The Notch pathway in the annelid Platynereis: insights into chaetogenesis and neurogenesis processes (Q30842236) (← links)
- Development of the nervous system in Platynereis dumerilii (Nereididae, Annelida) (Q30853595) (← links)
- ParaHox gene expression in larval and postlarval development of the polychaete Nereis virens (Annelida, Lophotrochozoa). (Q33338641) (← links)
- Genomic organization and expression demonstrate spatial and temporal Hox gene colinearity in the lophotrochozoan Capitella sp. I (Q33395359) (← links)
- Coordinated spatial and temporal expression of Hox genes during embryogenesis in the acoel Convolutriloba longifissura (Q33507999) (← links)
- Timing and Scope of Genomic Expansion within Annelida: Evidence from Homeoboxes in the Genome of the Earthworm Eisenia fetida (Q34504890) (← links)
- Six3 demarcates the anterior-most developing brain region in bilaterian animals. (Q34515206) (← links)
- Hox genes pattern the anterior-posterior axis of the juvenile but not the larva in a maximally indirect developing invertebrate, Micrura alaskensis (Nemertea). (Q35590931) (← links)
- Unexpected co-linearity of Hox gene expression in an aculiferan mollusk. (Q35738017) (← links)
- The ParaHox gene Gsx patterns the apical organ and central nervous system but not the foregut in scaphopod and cephalopod mollusks (Q36409957) (← links)
- Indirect development, transdifferentiation and the macroregulatory evolution of metazoans (Q37677392) (← links)
- Clustered brachiopod Hox genes are not expressed collinearly and are associated with lophotrochozoan novelties. (Q37695951) (← links)
- Scenarios for the making of vertebrates (Q38436432) (← links)
- Early mesodermal expression of Hox genes in the polychaete Alitta virens (Annelida, Lophotrochozoa). (Q38815442) (← links)
- HOX gene complement and expression in the planarian Schmidtea mediterranea (Q39718025) (← links)
- Hox and ParaHox gene expression in early body plan patterning of polyplacophoran mollusks (Q39835783) (← links)
- Expression of Hox genes during regeneration of nereid polychaete Alitta (Nereis) virens (Annelida, Lophotrochozoa) (Q41170488) (← links)
- Hox gene expression during postlarval development of the polychaete Alitta virens (Q42538585) (← links)
- A procephalic territory in Drosophila exhibiting similarities and dissimilarities compared to the vertebrate midbrain/hindbrain boundary region (Q42963035) (← links)
- Retinoic acid and Wnt/beta-catenin have complementary roles in anterior/posterior patterning embryos of the basal chordate amphioxus. (Q45982463) (← links)
- Activation of Hox genes during caudal regeneration of the polychaete annelid Platynereis dumerilii. (Q46109469) (← links)
- High diversity in neuropeptide immunoreactivity patterns among three closely related species of Dinophilidae (Annelida). (Q46330795) (← links)
- Posterior elongation in the annelid Platynereis dumerilii involves stem cells molecularly related to primordial germ cells (Q47922084) (← links)
- Expression of Hox genes during the larval development of the snail, Gibbula varia (L.)-further evidence of non-colinearity in molluscs (Q48062230) (← links)
- Evolution of Hox3 and ftz in arthropods: insights from the crustacean Daphnia pulex (Q48081440) (← links)
- Russian comparative embryology takes form: a conceptual metamorphosis toward "evo-devo". (Q48381349) (← links)
- The ancestral retinoic acid receptor was a low-affinity sensor triggering neuronal differentiation. (Q50317574) (← links)
- Marine invertebrates, model organisms, and the modern synthesis: epistemic values, evo-devo, and exclusion. (Q51666881) (← links)
- A PCR survey of Hox genes in the myzostomid Myzostoma cirriferum. (Q51751984) (← links)
- Worms by number. (Q51875827) (← links)
- The segmental pattern of otx, gbx, and Hox genes in the annelid Platynereis dumerilii. (Q51891861) (← links)
- Vasa, PL10, and Piwi gene expression during caudal regeneration of the polychaete annelid Alitta virens. (Q54284593) (← links)
- An Overview of Hox Genes in Lophotrochozoa: Evolution and Functionality. (Q55111217) (← links)
- Staggered Hox expression is more widespread among molluscs than previously appreciated (Q57286291) (← links)
- gene expression in postmetamorphic juveniles of the brachiopod (Q60916139) (← links)
- A Revised Spiralian Homeobox Gene Classification Incorporating New Polychaete Transcriptomes Reveals a Diverse TALE Class and a Divergent Hox Gene (Q63430739) (← links)
- The structure of the nervous system and muscles of the pygidium in the polychaete Alitta virens (Nereididae) (Q87308080) (← links)
- Scallop genome provides insights into evolution of bilaterian karyotype and development (Q88785652) (← links)