Primary Spermatocyte

A primary spermatocyte is a diploid germ cell formed from a spermatogonium that prepares to produce sperm through meiosis, making it a key stage in spermatogenesis. After replicating its DNA, it enters the first meiotic division, during which homologous chromosomes pair, may exchange genetic material through crossing over, and then separate to form two haploid secondary spermatocytes. This reduction in chromosome number and reshuffling of genetic information support sexual reproduction and genetic diversity. Studying primary spermatocytes helps researchers understand chromosome behavior, meiotic errors, male fertility, and the cellular basis of inherited abnormalities.

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Research

JoVE Journal - Biology

Preparation of Meiotic Chromosome Spreads from Mouse Spermatocytes

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Cited by 27 •

2017

Meiosis is the developmental process by which gametes are formed through a single round of DNA replication and two successive rounds of chromosome segregation. Mammalian meiosis can be examined by utilizing a technique to prepare meiotic chromosome spreads. Here, we demonstrate a method of preparing surface-spread nuclei from mouse spermatocytes.

Micromanipulation of Chromosomes in Insect Spermatocytes

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Cited by 9 •

2018

In this protocol, we describe the selection and preparation of appropriate cells for micromanipulation and the use of a piezoelectric micromanipulator to reposition chromosomes within those cells.

Preparation of Meiotic Chromosome Spreads from Zebrafish Spermatocytes

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Cited by 6 •

2020

Nuclear surface spreads are an indispensable tool for studying chromosome events during meiosis. Here we demonstrate a method to prepare and visualize meiotic chromosomes during prophase I from zebrafish spermatocytes.

Using Primary Neurosphere Cultures to Study Primary Cilia

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Cited by 3 •

2017

The primary cilium is fundamentally important in neural progenitor cell proliferation, neuronal differentiation, and adult neuronal function. Here, we describe a method to study ciliogenesis and the trafficking of signaling proteins to cilia in neural stem/progenitor cells and differentiated neurons using primary neurosphere cultures.

Immunostaining of Whole-Mount Drosophila Testes for 3D Confocal Analysis of Large Spermatocytes

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Cited by 6 •

2020

We present here an improved protocol for the whole-mount preparation and immunostaining of Drosophila testes, suitable for confocal microscopy and also allowing reproducible and reliable labeling. We illustrate this protocol by 3D representation and quantification of colocalization experiments on the large S4-S5 spermatocytes.

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