Site-Specific Measurement of Meiotic Crossing-Over Rate with Droplet Digital PCR

Understanding the frequency and distribution of meiotic crossovers (COs) is critical for both fundamental studies on meiosis and for practical applications in plant breeding, where controlling recombination can accelerate crop improvement. Determining CO rates at specific genomic loci has traditionally relied on labor-intensive methods that require the production and genotyping of large progenies. Here, we present a high-throughput protocol for site-specific quantification of meiotic COs in maize using droplet digital PCR (ddPCR). The method is based on genotyping individual pollen nuclei from hybrid plants to detect recombinant and nonrecombinant alleles at defined chromosomal intervals. By distributing several thousands of pollen nuclei into nanoliter-sized droplets and performing PCR with allele-specific fluorescent probes, this method allows precise quantification of CO frequency with high sensitivity. The protocol provides detailed guidance for nuclei isolation, probe master mix preparation, droplet generation, and data interpretation. This method can be easily adapted for use in other plants.

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Publication Details

Journal
Cold Spring Harbor Protocols
Published
2026-09-10
DOI
https://doi.org/10.1101/pdb.prot108743
Primary Topic
DNA Repair Mechanisms
Type
preprint
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preprint

Site-Specific Measurement of Meiotic Crossing-Over Rate with Droplet Digital PCR

Mateusz Zelkowski, Andrew Ziesel, О. В. Зимина, Wojciech P. Pawlowski
Cold Spring Harbor Protocols
DNA Repair Mechanisms
preprint

Site-Specific Measurement of Meiotic Crossing-Over Rate with Droplet Digital PCR

Mateusz Zelkowski, Andrew Ziesel, О. В. Зимина, Wojciech P. Pawlowski
preprint en

Abstract

Understanding the frequency and distribution of meiotic crossovers (COs) is critical for both fundamental studies on meiosis and for practical applications in plant breeding, where controlling recombination can accelerate crop improvement. Determining CO rates at specific genomic loci has traditionally relied on labor-intensive methods that require the production and genotyping of large progenies. Here, we present a high-throughput protocol for site-specific quantification of meiotic COs in maize using droplet digital PCR (ddPCR). The method is based on genotyping individual pollen nuclei from hybrid plants to detect recombinant and nonrecombinant alleles at defined chromosomal intervals. By distributing several thousands of pollen nuclei into nanoliter-sized droplets and performing PCR with allele-specific fluorescent probes, this method allows precise quantification of CO frequency with high sensitivity. The protocol provides detailed guidance for nuclei isolation, probe master mix preparation, droplet generation, and data interpretation. This method can be easily adapted for use in other plants.

Cold Spring Harbor Protocols
Cornell University (US), PhysioGenix (United States) (US)
Zero hunger
DNA Repair Mechanisms
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Site-Specific Measurement of Meiotic Crossing-Over Rate with Droplet Digital PCR — Mateusz Zelkowski, Andrew Ziesel, et al. · Cold Spring Harbor Protocols (2026) | TGRS Research Map | TGRS