Return
Organization of the Ectodermal Nervous Structures in Jellyfish: Scyphomedusae
R
J
DOI:10.1086/BBLv226n1p29.png)
Abstract
En 中文
Antibodies to alpha- or beta-tubulin and to the bioactive peptide FMRFamide were used to investigate the organization of the ectodermal nervous structures in five species of scyphomedusae. Within the swim system, morphological evidence, including a developmental sequence, suggests that the tubulin-immunoreactive nerve net in the sub-umbrella is the Giant Fiber Nerve Net (Motor Nerve Net) that directly activates the swim musculature, and the FMRFamide-immunoreactive nerve net is the Diffuse Nerve Net that serves a sensory function and also enhances swim muscle activity. Similar dual labeling was found in other structures, including those involved in feeding and protective reactions (pedalia and tentacles, radial strips of smooth muscle), and in the exumbrella, where the networks were associated with batteries of nematocysts. In addition, FMRFamide immuno-staining in the rhopalia and rhopalial niches suggests that sensory components of these networks may aid in the gravitational sense of scyphomedusae.
Keywords:
CYANEA-CAPILLATA
EVOLUTIONARY ORIGIN
SCYPHOZOA
NET
COELENTERATA
CNIDARIANS
MEDUSAE
INNERVATION
PATTERNS
MUSCLES
AI Summary
Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.
Journal
B
IF:
1.7
Papers:
23
Citations:
1.1W
