Cytological Studies of the Nematocysts of Hydra

Author:

Chapman George B.1,Tilney Lewis G.1

Affiliation:

1. From The Biological Laboratories, Harvard University, Cambridge

Abstract

Entire hydras or tentacles were prepared for electron microscopy as described in the preceding paper. The stenotele capsule has been observed to be composed of an external membrane, a thick chitinous or keratin layer, and an inner membrane. A sac-like extension of the capsular wall into the capsule bears spines and stylets on its inner surface and evagination of this structure occurs on discharge. Profiles of tubular or membranous structures often are seen within the capsules of resting stenoteles. These structures are presumably related to the external filament. The spines often reveal a flattened aspect which suggests that at least some of them might more accurately be called "vanes." A cnidocil has been found to accompany each stenotele. This study revealed several aspects of the developmental stages of stenoteles: A vacuole is formed which is nearly surrounded by the nematocyte nucleus. The vacuole content changes in density and a capsular wall is formed at the periphery of the vacuole. Tubules differentiate from the capsular matrix, and spines and stylets develop somewhat later. An operculum is formed from the nematocyte cytoplasm.

Publisher

Rockefeller University Press

Subject

Cell Biology

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1. New Class of Crosslinker-Free Nanofiber Biomaterials from Hydra Nematocyst Proteins;Scientific Reports;2019-12

2. A genome wide survey reveals multiple nematocyst-specific genes in Myxozoa;BMC Evolutionary Biology;2018-09-12

3. Cnidarian Origins of the Myxozoa;Myxozoan Evolution, Ecology and Development;2015

4. Diversity and evolution of myxozoan minicollagens and nematogalectins;BMC Evolutionary Biology;2014-09-29

5. Proteome of Hydra Nematocyst;Journal of Biological Chemistry;2012-03

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