The sperm of the crayfish, Procambarus clarkii, is relatively simple among decapod sperm and was described in the first paper of this series (28). The present paper details the development of this sperm as followed with the light and electron microscopes. The process is divided into six stages for purposes of description. The main points of interest discussed are the absence of mitochondria or mitochondrial derivatives in the mature sperm, the development of a complex acrosome in the absence of highly organized characteristic Golgi apparatus but in the presence of small stacks of annulate lamellae, and the changes in the nucleus. Of the latter, the elaborate convoluted sheets of membrane that are extensions of the nuclear envelope are unique. The nucleus undergoes unusual changes in size and shape that are accompanied by several phases of organization of the chromatin. In the mature sperm the nucleus is empty-appearing and notably lacking in any apparent high degree of order. The entire development of the sperm is consonant with the idea that the fate of the mitochondria and centrioles, structures that figure prominently in the elaborate architecture of flagellate sperm, is associated with the lack of a flagellum.
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1 July 1961
Content prior to 1962 was published under the journal name
The Journal of Biophysical and Biochemical Cytology
Article|
July 01 1961
SPERMIOGENESIS IN THE CRAYFISH (PROCAMBARUS CLARKII) : II. Description of Stages
Montrose J. Moses
Montrose J. Moses
From the Department of Anatomy, Duke University School of Medicine, Durham, North Carolina, and The Rockefeller Institute
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Montrose J. Moses
From the Department of Anatomy, Duke University School of Medicine, Durham, North Carolina, and The Rockefeller Institute
Received:
December 18 1960
Copyright, 1961, by The Rockefeller Institute Press
1961
J Biophys and Biochem Cytol (1961) 10 (3): 301–333.
Article history
Received:
December 18 1960
Citation
Montrose J. Moses; SPERMIOGENESIS IN THE CRAYFISH (PROCAMBARUS CLARKII) : II. Description of Stages . J Biophys and Biochem Cytol 1 July 1961; 10 (3): 301–333. doi: https://doi.org/10.1083/jcb.10.3.301
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