Reverse Breeding: A Breakthrough Technique for Genetic Fixation and Hybrid Reconstruction

Reverse breeding (RB), a novel plant breeding approach, helps to identify the parental homozygous lines for any uncharacterized but useful heterozygous plant that a plant breeder needs utmost. For this, genetic engineering at meiotic cell division, particularly meiosis-I, must achieve the right combination and complement homozygous parental lines for recreating the desired hybrid. In this technology, meiotic cross-over is suppressed to stop the recombination at the chromosome level in the selected heterozygous plants. The success of RB in crops depends on the efficiency and effectiveness of doubled haploid (DH) technology, which is needed to produce diploid (2n) plants from haploid gametes (n) after diploidization. The review initially highlights the current status and requirement of RB in addressing global challenges related to food and nutritional security. It then discusses the different mechanisms to engineer meiosis to suppress cross-over and the fixation of nonrecombinant chromosomes through DH technology. The review further examines immediate applications of RB and the factors influencing its efficiency. The advantages and limitations of RB are also discussed, along with its potential applications in future crop improvement. In conclusion, RB represents a promising plant breeding approach for overcoming prevailing challenges through the development of crop varieties with improved disease resistance, climate resilience, nutritional quality, and other traits relevant to sustainable agriculture and human needs.

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Publication Details

Journal
genesis
Published
2026-09-29
DOI
https://doi.org/10.1002/dvg.70070
Primary Topic
Chromosomal and Genetic Variations
Type
article
Field-Weighted Citation Impact
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article

Reverse Breeding: A Breakthrough Technique for Genetic Fixation and Hybrid Reconstruction

K. V. Kadam, Manoj Kumar Patel, Arjun Lal Ola, Ankit Malik et al.
genesis
Chromosomal and Genetic Variations
article

Reverse Breeding: A Breakthrough Technique for Genetic Fixation and Hybrid Reconstruction

K. V. Kadam, Manoj Kumar Patel, Arjun Lal Ola, Ankit Malik, Pawan Kumar, Sanjay Kumar Sanadya, Bharath Kumar Alam, Subhash Chand, Vijay Kamal Meena, Girija Choudhary, C Rakesh
article en

Abstract

Reverse breeding (RB), a novel plant breeding approach, helps to identify the parental homozygous lines for any uncharacterized but useful heterozygous plant that a plant breeder needs utmost. For this, genetic engineering at meiotic cell division, particularly meiosis-I, must achieve the right combination and complement homozygous parental lines for recreating the desired hybrid. In this technology, meiotic cross-over is suppressed to stop the recombination at the chromosome level in the selected heterozygous plants. The success of RB in crops depends on the efficiency and effectiveness of doubled haploid (DH) technology, which is needed to produce diploid (2n) plants from haploid gametes (n) after diploidization. The review initially highlights the current status and requirement of RB in addressing global challenges related to food and nutritional security. It then discusses the different mechanisms to engineer meiosis to suppress cross-over and the fixation of nonrecombinant chromosomes through DH technology. The review further examines immediate applications of RB and the factors influencing its efficiency. The advantages and limitations of RB are also discussed, along with its potential applications in future crop improvement. In conclusion, RB represents a promising plant breeding approach for overcoming prevailing challenges through the development of crop varieties with improved disease resistance, climate resilience, nutritional quality, and other traits relevant to sustainable agriculture and human needs.

genesisVol. 64(5)
Indian Grassland and Fodder Research Institute (IN), Central Arid Zone Research Institute (IN), Central Research Institute for Dryland Agriculture (IN), Indian Council of Agricultural Research (IN), Maharani Laxmi Bai Medical College (IN), Chaudhary Sarwan Kumar Himachal Pradesh Krishi Vishvavidyalaya (IN), Indian Agricultural Research Institute (IN)
Zero hunger
Openalex Percentile: Top 13%
Chromosomal and Genetic Variations
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