Related Experiment Video
Updated: Jun 6, 2026

Multipronged Phenotyping Approaches to Characterize Sugarcane Root Systems
Published on: August 17, 2022
Somaclonal variation in Saccharum spp.: unraveling its potential despite current neglect
S Munir1, M A B Jaffar2, S Yasmeen2
1Sugarcane Biotechnology Group, Nuclear Institute of Agriculture (NIA), Tando Jam, Pakistan Plant Breeding and Genetics Division, Nuclear Institute for Agriculture and Biology, Faisalabad, Pakistan.
Abstract:
Hybridization of different landraces or wild crop species facilitates genetic recombination and leads to the development of improved cultivars, particularly in sexually propagated crops. In contrast, genetic recombination via hybridization in asexually propagated crops like sugarcane (Saccharum spp. hybrid) is challenging due to self or cross incompatibility (low fertility). Such crops can be improved by somaclonal variation, which is achieved by tissue culture techniques. As a major contributor to global sugar and bioethanol production, sugarcane suffers substantial yield loss due to various biotic or abiotic stresses, which may be attributed to its poor resistance mechanism. Despite the potential of in vitro culture techniques, somaclonal variation remains underexplored in sugarcane breeding programs. To address the challenges posed to sugarcane under changing environmental dynamics, this review critically evaluates the role of somaclonal variation in sugarcane variety development, its underlying mechanism, practical applications, and factors affecting its occurrence. This review also discusses the limitations and challenges in the practical implementation of this technique in variety development, resulting in its neglect in modern breeding efforts. The focus on the potential of somaclonal variation, sustained by cutting-edge approaches, can unlock its limitations and fulfill the growing future demands of sugar, biofuel, and bioenergy industries.
More Related Videos
11:31High-throughput Screening of Recalcitrance Variations in Lignocellulosic Biomass: Total Lignin, Lignin Monomers, and Enzymatic Sugar Release
Published on: September 15, 2015
10:08Genetic Mapping of Thermotolerance Differences Between Species of Saccharomyces Yeast via Genome-Wide Reciprocal Hemizygosity Analysis
Published on: August 12, 2019
Related Concept Videos
Bioreactor Controls-III
Genetic Variation
Genes exist in different versions called alleles, which...
Biosynthesis of Polysaccharides
Production of Alcohol
Applications of Molecular Taxonomy
Glucose Transporters
Facilitated diffusion-glucose transporters (GLUTs) are encoded by the solute-linked carrier (SLC) family 2, subfamily A gene family, or SLC2A. The 14 GLUT protein members are distributed into three classes: