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Cytological Analysis of Spermatogenesis: Live and Fixed Preparations of Drosophila Testes
Published on: January 20, 2014
Spermiogenesis in Lumbricus herculeus; an electron microscope study
Abstract:
Small pieces of the sperm sacs of Lumbricus herculeus were fixed for 4 hours in chrome-osmium, embedded in methacrylate, sectioned with a Porter-Blum microtome, and studied with a R.C.A. EMU-2C electron microscope. Each spermatid of a group developing synchronously is attached by a cytoplasmic strand to a common nutrient protoplasmic mass. This mass contains mitochondria and yolk bodies but is anucleate. The proximal centriole, that is, the centriole nearer the nucleus, is at first associated with a small peg which becomes firmly attached to the nuclear membrane. Later these two bodies become separated during the development of the middle-piece which is differentiated in the usual manner from a nebenkern formed by the fusion of 6 or 7 mitochondria. The acrosome develops in relation to the dictyosome (Golgi body), itself composed of 8 or more individual flattened sacs and situated in the cytoplasm opposite the point of attachment of the spermatid to the nutrient mass. Soon after its formation, the acrosome becomes incorporated into a cytoplasmic appendage or acrosome carrier. The carrier moves from its original position, along the lateral border of the elongating nucleus, to the distal margin of the nucleus where the acrosome is deposited. No evidence was found of a centriole located at the point of junction between nucleus and acrosome as suggested by earlier workers.
Insights
Spermatid development in Lumbricus herculeus involves attachment to a nutrient mass and acrosome formation via a carrier. This study details the intricate process of sperm development in this earthworm species.
Area of Science:
- Cell Biology
- Reproductive Biology
- Zoology
Background:
- Spermatogenesis is a complex process involving cell differentiation and structural development.
- Understanding the specific mechanisms in invertebrates like Lumbricus herculeus provides comparative insights.
Purpose of the Study:
- To elucidate the ultrastructural details of spermatid development in Lumbricus herculeus.
- To describe the formation and deposition of the acrosome and the role of the nutrient mass.
Main Methods:
- Transmission electron microscopy (RCA EMU-2C) was used to examine fixed and sectioned Lumbricus herculeus spermatids.
- Specimens were prepared using chrome-osmium fixation and methacrylate embedding.
Main Results:
- Spermatids are attached to an anucleate, cytoplasmic nutrient mass containing mitochondria and yolk bodies.
- The proximal centriole associates with a nuclear membrane peg, separating during middle-piece development.
- The acrosome originates from the dictyosome (Golgi body) and is transported by an acrosome carrier to the nucleus.
Conclusions:
- The acrosome is deposited at the distal nuclear margin via a carrier, refuting previous suggestions of a centriole at the nucleus-acrosome junction.
- The nutrient mass plays a crucial role in supporting synchronous spermatid development.
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