Sep 2026· Open Agriculture Journal· 0 citations· 89 references
Wheat and Barley Genetics and Pathology
Abstract
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.
Overall, transcription factors from the DREB, NAC, MYB, and WRKY families are still considered the primary regulatory targets, but CRISPR/Cas-based gene editing is now able to provide precise, multiplex gene modifications in polyploid wheat.
Amit Kumar, Shivani, R. Chaudhary et al.· Progressive Agriculture· 0 citations
This review summarizes current breeding and molecular genetic strategies aimed at improving the resistance of winter bread wheat to biotic and abiotic stresses under changing climatic conditions and outlines key future research directions for improving breeding efficiency under increasing environmental variability.
Yegor Kucherenko, A. Yarosh, Z. Usova et al.· Studia Biologica· 0 citations
Tomato (Solanum lycopersicum L.) is one of the most important horticultural crops in the world, but its production continually grapples with difficulty of improving yield without compromising fruit quality. To achieve, this balance requires breeders to make full use of the wide genetic diversity present in cultivated v...
Samuel Boakye Yeboah, Michael Osei, Hans Adu-Dapaah et al.· Current Horticulture· 0 citations
To comprehensively evaluate 212 tomato accessions and gain an in-depth understanding of their genetic background, 17 major agronomic traits were assessed, and whole-genome resequencing was performed on all materials. The results indicated that the genetic diversity of quantitative traits was abundant, with the genetic...
Rice (Oryza sativa L.) is a staple food for more than half of the world’s population, and enhancing its yield, grain quality, and adaptability remains a central goal in most breeding programmes. Genetic gain is defined as the improvement in mean performance of a population across selection cycles and is a fundamental i...
Elias Jeke, James Bokosi, R. Murori et al.· Journal of Experimental Agri...· 0 citations
Exploring how generative AI could make machine vision more accessible to businesses. The post GenEye in a Box: Making Machine Vision Something You Can Just Ask For appeared first on GPT-Lab.