While previous reviews have largely focused on individual crops or single target-site mechanisms, the full-chain comparative landscape across major cereal crops remains unexplored. Here, we fill this critical gap by providing the first systematic, cross-crop comparative review that spans herbicide targets, resistance mechanisms, and breeding applications across four major cereals—rice, maize, wheat, and sorghum. Weed infestation is a serious constraint on crop production. Chemical weed control faces challenges such as herbicide resistance evolution and ecological risks. Developing herbicide-resistant varieties is a fundamental approach to achieve green and sustainable weed management. This review systematically summarizes research progress on herbicide resistance genes from three aspects: herbicide classification, resistance mechanisms, and crop breeding applications. It highlights key differences among four major cereal crops (rice, maize, wheat, and sorghum) in resistance-gene discovery and translational progress. Rice has the richest target-site resistance-gene resources. Maize leads in commercialization of transgenic herbicide resistance. Wheat focuses on endogenous precise editing due to genome complexity and regulatory constraints. Sorghum relies on specific mutations to serve cereal–legume intercropping systems. Based on this comparison, this review identifies the core trends in resistance breeding: from single-gene to multi-gene stacking, and from exogenous gene introduction to endogenous gene editing. It also points out common bottlenecks, including insufficient systematic mining of resistance-gene resources, lagging elucidation of non-target-site resistance regulatory networks, and strong genotype dependence in genetic transformation. Future efforts should focus on exploring broad-spectrum resistance genes, optimizing precise editing technologies, and developing sustainable resistance management strategies. This review provides a theoretical framework and practical references for molecular breeding of herbicide-resistant crops.
Glyphosate, one of the most widely used and effective herbicides worldwide, plays a critical role in weed management. However, its application can indirectly compromise crop yield and fiber quality while controlling weeds. Consequently, breeding crop varieties that simultaneously exhibit high herbicide tolerance, high...
Peng Wang, Meng-Meng Li, Juyun Zheng et al.· Frontiers in Plant Science· 0 citations
Weeds are a serious limitation to legume crop productivity worldwide. This review brings together Indian and international literature on weed flora, critical period of weed competition (CPWC), cultural, mechanical, chemical, biological and integrated weed management (IWM) strategies in legume crops, with special emphas...
J. Karunakar, B. Somraj, Bijeta et al.· Legume Research An Internati...· 0 citations
Maize, the queen of cereals, is generally affected by several insect pests throughout its lifecycle and by post-harvest pests, which affects yield and grain quality, resulting in heavy reliance on chemical insecticides. Although host-plant resistance is environmentally friendly, its polygenic inheritance, genotype-by-e...
Sunandan Swain, Rohit, Ankushpreet Singh et al.· Plants· 0 citations
Weed interference remains a primary constraint on global crop productivity, directly competing with field crops for essential resources such as water, light, nutrients, and space. As traditional reliance on synthetic herbicides faces mounting challenges—including the rapid evolution of herbicide-resistant weed biotypes...
Research Author· American Journal of Advanced...· 0 citations
ABSTRACT Alfalfa (Medicago sativa) is the most widely cultivated forage crop worldwide, owing to its high protein content, balanced amino acid profile, and abundance of vitamins and minerals. However, weed infestation severely threatens alfalfa yield and quality. The lack of herbicide‑resistant cultivars, combined with...
Sustainable weed management in intensive cropping systems requires systematic evaluation of herbicide persistence, rotational safety and terminal residue behaviour. Punjab, characterized by high cropping intensity and cereal-dominated rotations, represents one of the most herbicide-intensive agricultural state in India...
P. Kaur, Harshdeep Kaur, Tarundeep Kaur et al.· Indian Journal of Weed Scien...· 0 citations
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