Skip to content

Author

Mankesh Kumar

2 papers indexed here

We haven’t gathered this author’s papers yet. Follow them and we’ll fetch their work.

Not the right person? Other researchers publish under this name.

#gene editing Open access Sep 2026

Waterlogging and hypoxia in plant abiotic stress

Waterlogging is a major abiotic stress affecting 12–27% of global cultivated land and causing average yield losses of 20–33% in cereals and legumes. This poses a serious threat to food security in flood-prone regions. Soil saturation reduces gas diffusion nearly 10,000-fold compared to air. This rapidly induces hypoxia or anoxia in the root zone within hours to days. This oxygen limitation forces a metabolic shift from efficient aerobic respiration (approximately 36 ATP per glucose) to anaerobic fermentation (approximately 2 ATP per glucose). This shift results in severe energy deficits, cytoplasmic acidosis, and accumulation of toxic metabolites such as ethanol, acetaldehyde, and organic acids. Plants exhibit diverse adaptive responses to flooding stress, including morphological modifications such as aerenchyma formation, adventitious root development, hypertrophied lenticels, and shoot elongation in deepwater rice. These modifications facilitate internal oxygen transport and gas exchange. At the biochemical level, fermentative enzymes including alcohol dehydrogenase and pyruvate decarboxylase are upregulated, while antioxidant defense systems mitigate oxidative damage during reoxygenation. Hormonal crosstalk among ethylene, abscisic acid, auxin, and gibberellins regulates the balance between escape and quiescence strategies. At the molecular level, oxygen sensing is primarily mediated by the N-degron pathway through Group VII Ethylene Response Factors (ERF-VIIs). Plant cysteine oxidases regulate oxygen-dependent degradation under normoxia, while hypoxia stabilizes ERF-VIIs to activate anaerobic gene expression. Nitric oxide further modulates ERF-VII proteolysis and stability. The Sub1A locus in rice exemplifies genetic adaptation, conferring 14–18 days of submergence tolerance and significant yield advantages in flood-prone environments. Despite these advances, major crops such as wheat, maize, and soybean remain highly susceptible, underscoring the need for translating mechanistic insights into field-level solutions. Integrating CRISPR/Cas-based gene editing, genomic selection, multi-omics approaches, and improved agronomic practices offers promising avenues for developing flood-resilient crop varieties under changing climatic conditions.

Ashutosh Kumar, Mankesh Kumar, Nitish Kumar et al. · 0 citations
#gene editing Review Open access Sep 2026

Advances in Wheat (Triticum aestivum L.) Genetics, Genomics and Breeding: Current Status, Tools and Future Perspectives for Sustainable Food Security

Wheat ( Triticum aestivum L.) is one of the most important cereal crops in the world. It supplies nearly 18–20% of global dietary calories and protein, sustaining the food security of over 2.5 billion people. Global food demand is projected to increase by 35–56% by 2050, placing additional pressure on wheat production and improvement programmes and making genetic improvement an urgent priority. This review synthesizes current advances in wheat genetics, genomics, and breeding. It discusses the origin and domestication of wheat, as well as the structure of the allohexaploid genome (AABBDD; 2 n = 6 x = 42). Major genes and Quantitative Trait Loci (QTLs) governing yield, disease resistance, grain quality, and abiotic stress tolerance are critically reviewed. Key breeding approaches are evaluated, including doubled haploid technology, Marker-Assisted Selection (MAS), Genomic Selection (GS), speed breeding, and CRISPR/Cas9 genome editing. Stability analysis methods, particularly the Additive Main Effects and Multiplicative Interaction (AMMI) model and the Eberhart–Russell regression, are discussed in the context of multi-environment trial evaluation. The integration of Genome-Wide Association Studies (GWAS), pangenomics, multi-omics, and high-throughput phenotyping for precision wheat improvement is also covered. This review focuses primarily on India, with special attention to the North Eastern Plains Zone (NEPZ) and the eastern Indo-Gangetic Plains. In this region, terminal heat stress and monsoon variability pose major production challenges. Key challenges and strategic recommendations for developing climate-resilient, high-yielding, and nutritionally superior wheat varieties are outlined.

Ashutosh Kumar, Sudhir Kumar, Mankesh Kumar et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.