Weed community composition and diversity in long-term conservation agriculture-based maize-wheat-green gram rotation: Impacts of tillage, residue, and nitrogen

Weed interference remains a major challenge to the widespread adoption of conservation agriculture in the Indo-Gangetic Plains. This study was designed to assess the long-term effects (>12 years) of integrated tillage (conventional and zero tillage), residue, and nitrogen (applied at 50%, 75% and 100% of the recommended dose) management on weed abundance, diversity, and community structure in a maize-wheat-green gram rotation. Long-term adoption of conservation agriculture promoted the dominance of a few broad-leaved weed species (relative abundance: 74.2–77.4% in maize, 96.8–98.2% in wheat, and 74.1–74.9% in green gram), resulting in a more homogeneous weed community, whereas conventional tillage supported a more diverse and evenly distributed weed flora with a higher prevalence of grassy species. Zero tillage combined with residue retention and higher nitrogen rates (75% and 100%) significantly reduced weed density by 58.8% in maize, 55.4% in wheat and 59.7% in green gram compared with conventional tillage, highlighting the greater weed-suppressive effect of conservation agriculture practices. These treatments accounted for 20–56% of the variation in weed community composition, with distinct indicator species associated with the tillage-residue-nitrogen treatments, indicating that weed community structure was shaped primarily by the combined implementation of conservation agriculture practices and higher nitrogen fertilization. The findings support a shift towards preventive and integrated weed management in conservation agriculture, in which tillage, residue, and nitrogen are strategically combined to manipulate weed community structure and target weed-specific management, rather than relying solely on generalized control measures.

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Journal
Agriculture Ecosystems & Environment
Published
2026-09-18
DOI
https://doi.org/10.1016/j.agee.2026.110764
Primary Topic
Weed Control and Herbicide Applications
Type
article
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article

Weed community composition and diversity in long-term conservation agriculture-based maize-wheat-green gram rotation: Impacts of tillage, residue, and nitrogen

Gunturi Alekhya, Rishi Raj, Rahul Sadhukhan, M. B. Reddy et al.
Agriculture Ecosystems & Environment
Weed Control and Herbicide Applications
article

Weed community composition and diversity in long-term conservation agriculture-based maize-wheat-green gram rotation: Impacts of tillage, residue, and nitrogen

Gunturi Alekhya, Rishi Raj, Rahul Sadhukhan, M. B. Reddy, Anchal Dass, Chaitanya Prasad Nath, Arti Bhatia, Suman Sen, Tarun Sharma, T. K. Das, Priyanka Saha, Ranjan Bhattacharyya, Arkaprava Roy, Ramanjit Kaur
article en

Abstract

Weed interference remains a major challenge to the widespread adoption of conservation agriculture in the Indo-Gangetic Plains. This study was designed to assess the long-term effects (>12 years) of integrated tillage (conventional and zero tillage), residue, and nitrogen (applied at 50%, 75% and 100% of the recommended dose) management on weed abundance, diversity, and community structure in a maize-wheat-green gram rotation. Long-term adoption of conservation agriculture promoted the dominance of a few broad-leaved weed species (relative abundance: 74.2–77.4% in maize, 96.8–98.2% in wheat, and 74.1–74.9% in green gram), resulting in a more homogeneous weed community, whereas conventional tillage supported a more diverse and evenly distributed weed flora with a higher prevalence of grassy species. Zero tillage combined with residue retention and higher nitrogen rates (75% and 100%) significantly reduced weed density by 58.8% in maize, 55.4% in wheat and 59.7% in green gram compared with conventional tillage, highlighting the greater weed-suppressive effect of conservation agriculture practices. These treatments accounted for 20–56% of the variation in weed community composition, with distinct indicator species associated with the tillage-residue-nitrogen treatments, indicating that weed community structure was shaped primarily by the combined implementation of conservation agriculture practices and higher nitrogen fertilization. The findings support a shift towards preventive and integrated weed management in conservation agriculture, in which tillage, residue, and nitrogen are strategically combined to manipulate weed community structure and target weed-specific management, rather than relying solely on generalized control measures.

Agriculture Ecosystems & EnvironmentVol. 414
Indian Council of Agricultural Research (IN), Indian Veterinary Research Institute (IN), Indian Institute of Pulses Research (IN), Indian Agricultural Research Institute (IN), Central Agricultural University (IN)
Zero hunger
Openalex Percentile: Top 13%
Weed Control and Herbicide Applications
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