Aug 2026· Agrosystems, Geosciences & Environment· Vol 9· 0 citations· 26 references
Abstract
Retaining crop residue on agricultural land mitigates soil erosion and conserves nutrients, but its removal generates a valuable commodity for competing uses in agriculture and industry. Understanding long‐term effects of crop residue removal on crop performance and soil condition is essential to guide management decisions regarding recommended practices, particularly in arid and semiarid regions where limited precipitation contributes to low levels of non‐harvested aboveground biomass. This report shares crop and soil outcomes over a 24‐year period from a continuous spring wheat (
Triticum aestivum
L.) production system with and without straw removal under minimum and no‐tillage. Treatments were included in a long‐term experiment near Mandan, ND, on a site with nearly level topography (0–1%) and Temvik–Wilton silt loam soils (Fine‐silty, mixed, superactive, frigid Typic, and Pachic Haplustolls). Soil coverage by residue was significantly greater with straw retention compared to straw removal (80% vs. 72%,
p
= 0.025), and no‐tillage provided greater soil coverage by residue compared to minimum tillage (87% vs. 66%,
p
= 0.004). Grain and straw production, however, were not affected by residue management or tillage treatments. Among soil properties measured, only water‐stable aggregates were affected by treatments at 0–7.6 cm, exhibiting greater values with straw retention compared to straw removal (31% vs. 22%,
p
= 0.044). Degradation‐related attributes of wheat straw such as high C:N ratio and lignin content, coupled with treatment features that limited N inputs and soil disturbance in a monoculture system, are hypothesized to have contributed to observed outcomes in this study.
This study sought to assess the impact of cover cropping and high rates of soil amendments on crop yield during organic transition. Compost, biochar, or a “50/50” mixture of the two on a C‐equivalent basis were applied at a rate of 8 Mg C ha
−1
per varying application regimens, with and without cover crops, at tw...
Fred Teasley, J. Heitman, S. Kulesza et al.· Agronomy Journal· 0 citations
Crop residue return is widely used to improve soil conditions in rainfed croplands, but its effects may differ among soil properties and cropping systems. This study evaluated the field performance of crop residue return with three-year consecutive observations in rainfed Northeast China. The field treatments included...
Yu-Xuan Che, Xian-Wei Jiang, Jie Ma et al.· Land· 0 citations
Diversified crop rotations can affect soil water and nutrient uptake and produce variable quality and quantity of crop residue that may alter soil chemical properties and crop yields compared to monocropping. We examined the effects of dryland diversified crop rotations with or without cover crop on soil pH, organi...
Gautam P. Pradhan, James Staricka, S. Dangi et al.· Soil Science Society of Amer...· 0 citations
Cover crops have been recognized as a sustainable practice to improve soil structure and fertility in intensive agroecosystems, yet quantitative evidence on their effects and underlying mechanisms remains limited in high-altitude cereal cropping systems. This study investigated the effects of diverse cover crops on soi...
Cheng Duan, Yang Yu, Xuejie Mou et al.· Agriculture· 0 citations
Cropping systems in the southeastern United States established on sandy soils and subject to a subtropical climate with heavy rainfall often lose nutrients and carbon during winter fallow periods. While cover crops can mitigate these losses, their adoption is limited because they are not harvested for profit. Repla...
Julia Barra Netto-Ferreira, G. Hoogenboom, Henrique Boriolo Dias et al.· Agronomy Journal· 0 citations
Maintaining soil health and crop productivity in the semi‐arid Vertisols of central India poses a significant challenge under intensive agricultural practices. This 6‐year field study assessed the combined impact of different tillage methods, maize‐based crop rotations, and nitrogen management on soil's physical, c...
N. K. Sinha, M. Mohanty, S. Jayaraman et al.· Land Degradation & Devel...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.