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26 pages, 30241 KB  
Article
Drip Emitter-Line Layout Modulates Spatial Coupling Between Phenolic Load and Biological Activity and Improves Soil Biochemical Status in Young Apple–Soybean Alley-Cropping Systems
by Huiying Zheng, Ruoshui Wang, Xin Wang, Lisha Wang and Li Chen
Agronomy 2026, 16(16), 1539; https://doi.org/10.3390/agronomy16161539 - 12 Aug 2026
Viewed by 427
Abstract
In semi-humid loess regions, young apple–soybean alley-cropping is constrained by water competition and phenolic accumulation, but how emitter-line layout reorganizes soil biochemical environment remains unclear. This study evaluated whether locally used management systems differed in the spatial coupling of phenolic load, biological activity, [...] Read more.
In semi-humid loess regions, young apple–soybean alley-cropping is constrained by water competition and phenolic accumulation, but how emitter-line layout reorganizes soil biochemical environment remains unclear. This study evaluated whether locally used management systems differed in the spatial coupling of phenolic load, biological activity, and productivity. A two-year field experiment compared rainfed apple monoculture, rainfed soybean monoculture, rainfed apple–soybean alley-cropping, and drip-irrigated alley-cropping with one emitter line per soybean row (DL1), per two rows (DL2), or per three rows. Drip-irrigated monoculture was not included because monocultures are generally rainfed locally owing to lower water demand relative to regional precipitation. Soil phenolics, enzyme activities, microbial abundances, yield, and WUE were assessed using spatial profiling, PLS-SEM, SHAP-based model interpretation, and a network-informed soil quality index (SQI). Drip-irrigated alley-cropping, particularly DL1 and DL2, was associated with lower phenolic load and higher biological activity than rainfed systems. Under DL treatments, phenolics were concentrated mainly in the 40–60 cm layer, whereas enzymes and microorganisms remained enriched in the 0–20 cm layer and shifted horizontally away from the tree row, indicating reduced spatial overlap between chemical constraints and biological activity. Productivity was more closely associated with microbial abundance under rainfed conditions but with enzyme activity under drip irrigation. The network-informed SQI discriminated treatments more clearly than conventional indices. DL1 had the highest SQI, whereas DL2 achieved the highest productivity. Among locally relevant systems, DL2 provides a practicable emitter-line layout that balances soil biochemical improvement with crop productivity. Full article
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21 pages, 1065 KB  
Article
Introducing Agroforestry into Urban Planning: A Procedural Approach for Italian Cities
by Marco Focacci, Isabella De Meo, Alessandro Paletto, Francesca Ugolini and Fabio Salbitano
Land 2026, 15(8), 1373; https://doi.org/10.3390/land15081373 - 30 Jul 2026
Viewed by 617
Abstract
This study aimed at developing a procedural approach to introduce agroforestry in urban planning and to provide governance orientation. The proposed approach focused on understanding: (i) the key stakeholders that can promote agroforestry; (ii) their orientations towards the integration of agroforestry in urban [...] Read more.
This study aimed at developing a procedural approach to introduce agroforestry in urban planning and to provide governance orientation. The proposed approach focused on understanding: (i) the key stakeholders that can promote agroforestry; (ii) their orientations towards the integration of agroforestry in urban planning documents; and (iii) the most suitable urban planning documents in which agroforestry-sound norms can be incorporated. The approach was tested in the town of Sesto Fiorentino, in Central Italy. A total of 170 stakeholders among municipal officials, schoolteachers, farmers, gardeners, citizens frequenting city parks, associations, and researchers were identified and involved in a questionnaire-based survey. The results showed that respondents opted for gradually introducing agroforestry in the green infrastructure. Educational food forests and alley cropping were preferred as the most suitable agroforestry elements in urban and peri-urban contexts. The municipality was considered a pivotal actor for introducing agroforestry, also involving associations and citizens in a multistakeholder perspective. Decision makers introduced agroforestry in city technical implementation standards, equating it to urban forestry. However, no mention was made in the city development plan as urban planners were reluctant to incorporate agroforestry at the strategic level. Associations may facilitate municipalities in this sense and assist in implementing agroforestry-sound norms. Full article
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22 pages, 2271 KB  
Article
Effect of Intercropping Paulownia with Spring Barley on Biodiversity in Agroecosystems Under Polish Conditions
by Marek Liszewski, Małgorzata Woźniak, Anna Jama-Rodzeńska, Jacek Twardowski, Iwona Gruss, Ewa Tendziagolska, Piotr Kuc, Elżbieta Gębarowska, Dariusz Zalewski and Bernard Gałka
Sustainability 2026, 18(12), 6028; https://doi.org/10.3390/su18126028 - 12 Jun 2026
Viewed by 357
Abstract
The study evaluated the effect of intercropping Paulownia (Paulownia spp.) with spring barley (Hordeum vulgare L., cv. KWS Thalis) on selected components of agroecosystem biodiversity under Polish conditions. A field experiment established in 2019 compared an alley cropping system with barley [...] Read more.
The study evaluated the effect of intercropping Paulownia (Paulownia spp.) with spring barley (Hordeum vulgare L., cv. KWS Thalis) on selected components of agroecosystem biodiversity under Polish conditions. A field experiment established in 2019 compared an alley cropping system with barley monoculture during the 2025 growing season. Weed infestation, soil microbial communities, mesofauna abundance, and crop yield were assessed. Weed abundance was lower in the intercropping system than in monoculture, reaching 5.6 vs. 15.6 plants m−2 at BBCH 21 and 21 and 22.8 vs. 35.6 plants m−2 at BBCH 75. Bacterial alpha diversity was significantly higher under intercropping conditions, with Shannon index values ranging from 5.12 to 5.25, compared with 4.98–5.09 in monoculture. Fungal diversity showed moderate differences between systems, whereas the abundance of Collembola and Acari was influenced mainly by seasonal variation rather than by cultivation system. No significant reduction in barley yield was observed under intercropping conditions. The results suggest that Paulownia-based alley cropping may reduce weed pressure and support selected soil biological properties without negatively affecting crop productivity. However, the observed responses varied depending on the analyzed parameter and sampling period, indicating the preliminary and context-dependent character of the results. Further long-term studies are required to better understand the ecological mechanisms operating in such agroforestry systems. Full article
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18 pages, 2479 KB  
Article
Rooting for Words: An Analysis of Agroforestry Terminology in U.S. Forest Action Plans
by Kianie B. David and Lord Ameyaw
Land 2026, 15(3), 507; https://doi.org/10.3390/land15030507 - 21 Mar 2026
Viewed by 938
Abstract
Forest Action Plans (FAPs) are strategic documents guiding forest management across the United States (U.S.), yet agroforestry terminology is used inconsistently within these plans. This study analyzed 50 state FAPs to assess how agroforestry practices are communicated. Using a predetermined list of 29 [...] Read more.
Forest Action Plans (FAPs) are strategic documents guiding forest management across the United States (U.S.), yet agroforestry terminology is used inconsistently within these plans. This study analyzed 50 state FAPs to assess how agroforestry practices are communicated. Using a predetermined list of 29 terms, including the five main agroforestry practices in the U.S. (alley cropping, forest farming, riparian forest buffers, silvopasture, and windbreaks), a descriptive content analysis was conducted, examining the frequency of agroforestry terms and their associated terms across all states. Results revealed wide variation in FAP document page length and regional differences in terminology usage. FAPs ranged from about 15–681 pages and the Midwestern (Great Plains) states demonstrated the highest frequency of agroforestry term mentions. Among the five main agroforestry practices, riparian forest buffers were mentioned most frequently (437 times across 44 states), while alley cropping and forest farming appeared in only two states. Notably, some states with established agroforestry traditions and practices showed minimal explicit agroforestry term usage in their FAPs. These findings highlight the need for clearer guidance within FAPs to improve the consistency and visibility of agroforestry terminology in the U.S. This analysis establishes a benchmark for understanding how agroforestry is communicated in FAPs and offers guidance for future research and FAP writing cycles beyond the current 2025–2026 updates. Full article
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27 pages, 4787 KB  
Article
The Optimization of Maize Intercropped Agroforestry Systems by Changing the Fertilizing Level and Spacing Between Tree Lines
by Zibuyile Dlamini, Ágnes Kun, Béla Gombos, Mihály Zalai, Ildikó Kolozsvári, Mihály Jancsó, Beatrix Bakti and László Menyhárt
Land 2026, 15(1), 126; https://doi.org/10.3390/land15010126 - 8 Jan 2026
Cited by 1 | Viewed by 2065
Abstract
Agroforestry is defined as a multifunctional approach to land management that enhances biodiversity and soil health while mitigating environmental impacts compared to intensive agriculture. The efficacy of maize cultivation in agroforestry systems is significantly influenced by nutrient competition. The factors that influence this [...] Read more.
Agroforestry is defined as a multifunctional approach to land management that enhances biodiversity and soil health while mitigating environmental impacts compared to intensive agriculture. The efficacy of maize cultivation in agroforestry systems is significantly influenced by nutrient competition. The factors that influence this phenomenon include the dimensions and configuration of the tree rows, as well as the availability of nutrients. This study examined the effect of nitrogen fertilization, tree line spacing, and seasonal changes on the productivity and the leaf spectral characteristics of the intercropped maize (Zea mays L.) within a willow-based agroforestry system in eastern Hungary. The experiment involved the cultivation of maize with two spacings (narrow and wide field strips) and four nitrogen levels (0, 50, 100, and 150 kg N ha−1) across two growing seasons (2023–2024). The results demonstrated that yield-related parameters, including biomass, cob size and weight, and grain weight, exhibited a strong response to nitrogen level and tree line spacing. The reduction in spacing resulted in a decline in maize productivity. However, a high nitrogen input (150 kg N ha−1) partially mitigated this effect in the first growing season. Vegetation indices demonstrated a high degree of sensitivity to annual variations, particularly with regard to tree competition and weather conditions. Multispectral vegetation indices exhibited a heightened responsiveness to environmental and management factors when compared to indices based on visible light (RGB). The findings of this study demonstrate that a combination of optimized tree spacing and optimized nitrogen management fosters productivity while maintaining agroecological sustainability in temperate agroforestry systems. Full article
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26 pages, 7740 KB  
Article
Simulation of Soil Water Transport and Utilization in an Apple–Soybean Alley Cropping System Under Different Irrigation Methods Based on HYDRUS-2D
by Xueying Zhang, Ruoshui Wang, Houshuai Dai, Lisha Wang, Li Chen, Huiying Zheng and Feiyang Yu
Agronomy 2025, 15(4), 993; https://doi.org/10.3390/agronomy15040993 - 21 Apr 2025
Cited by 2 | Viewed by 1465
Abstract
This study employed the HYDRUS-2D model to simulate soil water movement and water productivity (WP) in an apple–soybean alley cropping system in the Loess Plateau region, Shanxi Province, China, under four irrigation methods: mulched drip irrigation, subsurface drip irrigation, bubbler irrigation, and rainwater-harvesting [...] Read more.
This study employed the HYDRUS-2D model to simulate soil water movement and water productivity (WP) in an apple–soybean alley cropping system in the Loess Plateau region, Shanxi Province, China, under four irrigation methods: mulched drip irrigation, subsurface drip irrigation, bubbler irrigation, and rainwater-harvesting ditch irrigation, with varying water management treatments. Field experiments provided 2022 data for model calibration and 2023 data for validation using soil water content (SWC) measurements, achieving R2 = 0.80–0.87 and RMSE = 0.011–0.017 cm3·cm−3, confirming robust simulation accuracy. The simulation results indicated that different irrigation methods had a significant impact on the soil water distribution. Mulched drip irrigation enhanced the water content in the surface layer (0–20 cm), while subsurface drip irrigation increased the moisture in the middle soil layer (20–40 cm). Bubbler irrigation was most effective in replenishing both the surface (0–20 cm) and middle (20–40 cm) layers. Rainwater-harvesting ditch irrigation significantly improved the soil water content in both the surface (0–20 cm) and middle (20–40 cm) layers, with minimal changes observed in the deep layer (40–120 cm). Furthermore, soil water variations were significantly influenced by the water uptake of tree roots. In 2022, soil moisture initially increased with distance, then decreased, and subsequently increased again, while in 2023, it increased initially and then stabilized. When the irrigation amount was limited to 75% of the field capacity in the 0–60 cm soil layer, water productivity (WP) reached its optimum, with values of 4.79 kg/m3 (2022) and 5.56 kg/m3 (2023). Based on the simulation results, it is recommended that young apple trees be irrigated using subsurface drip irrigation with a soil layer depth of 30 cm, while soybeans should be irrigated with mulched drip irrigation. Both crops should be irrigated at the podding and filling stages of soybeans, and the irrigation amount should be limited to 75% of the field water capacity in the 0–60 cm soil layer. This study was designed to aid orchard growers in precision irrigation and water optimization. Full article
(This article belongs to the Section Water Use and Irrigation)
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20 pages, 2526 KB  
Article
Leucaena-Based Alley Cropping System: An Approach for Reclaiming Degraded Land, Reducing the Use of Inorganic Nitrogen Fertilizer, and Improving Crop Productivity
by Md. Suhag, Tofayel Ahamed, Ashim Kumar Das, Md. Abiar Rahman, Md. Mizanur Rahman and Md. Giashuddin Miah
Nitrogen 2025, 6(2), 25; https://doi.org/10.3390/nitrogen6020025 - 11 Apr 2025
Cited by 3 | Viewed by 4422
Abstract
Alley cropping, an agroforestry system that integrates trees and arable crops, holds the potential to improve both crop yields and soil health. It has been found to be effective for upland crops in many countries of the world. However, the utilization of alley [...] Read more.
Alley cropping, an agroforestry system that integrates trees and arable crops, holds the potential to improve both crop yields and soil health. It has been found to be effective for upland crops in many countries of the world. However, the utilization of alley cropping to improve soil health in the terrace ecosystem of Bangladesh is poorly understood. Therefore, this study was undertaken to assess the changes in soil biochemical properties and quantify the cabbage yield under three alley widths of Leucaena leucocephala (3.0, 4.5, and 6.0 m size) and five nitrogen (N) levels [0, 40, 80, 120, and 160 kg N ha−1 (0, 25, 50, 75, and 100% of recommended N rates, respectively) with the addition of pruned materials of L. leucocephala (Ipil-ipil)]. The field experiment was conducted following a split-plot design, where alley width was considered as the main-plot factor and N rate as the sub-plot factor. Within each main plot, the five N rates were replicated thrice. Control plots with similar N doses were applied accordingly without addition of pruned materials to compare the results with alley cropping. Data were collected on the biochemical properties of the soil [soil pH, organic carbon (C), total N, available phosphorus (P), exchangeable potassium (K), microbial biomass C, and biomass N] and the yield of cabbage quantified [edible head weight (kg plant−1) and head yield (t ha−1)] under different alley widths and control. Findings revealed that organic C, total N, available P, exchangeable K, microbial biomass C, and biomass N in the topsoil exhibited maximum values in the L. leucocephala-based alley plot, which is proved to be a possible solution of restoration of degradable land. Additionally, L. leucocephala-based alley cropping improved the soil pH, indicating a potential avenue for more-sustainable land management practices. Results also showed that alley widths and N rates have significant effects on cabbage (Brassica oleracea L. var. capitata) yield. Alley width of 6.0 m along with 100% N provided the highest cabbage yield followed by 75% N in 6.0 m alley, and the control with 100%. The wider alley minimizes tree–crop competition, allowing for optimal cabbage production. These aforementioned results suggest that alley cropping with L. leucocephala is a promising approach to enhance soil fertility and crop productivity in the terrace ecosystem of Bangladesh. Full article
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10 pages, 1639 KB  
Article
Improving the Sustainability of Pollarding in Multifunctional Agro-Forestry Plantations
by Natascia Magagnotti, Giustino Mezzalira and Raffaele Spinelli
Sustainability 2025, 17(7), 3164; https://doi.org/10.3390/su17073164 - 2 Apr 2025
Cited by 1 | Viewed by 1053
Abstract
Pollarding is an ancient agroforestry practice that greatly contributes to the sustainability of farming but is slowly becoming extinct because traditional pollards are not viable from a financial and social viewpoint. In particular, the cutting of pollards is too slow, expensive and dangerous [...] Read more.
Pollarding is an ancient agroforestry practice that greatly contributes to the sustainability of farming but is slowly becoming extinct because traditional pollards are not viable from a financial and social viewpoint. In particular, the cutting of pollards is too slow, expensive and dangerous for modern farmers to apply. This study presents the first test of mechanized pollarding, performed with two different devices: a set of shears and a disc saw. Both devices were fitted to the boom tip of a tracked excavator and were tested on poplar rows in a typical alley-cropping system. The introduction of those simple devices restored productivity and safety to pollarding as a modern practice. Tree topping incurred a cost around 1 € tree−1, or 250–350 € ha−1. This cost would need to be balanced against the revenue obtained from the treetops sold as biomass and the increased yields of the alley crop, prolonged for several years. Mechanization also allows cutting the treetops several metres above ground level, so that the trunks of the pollarded trees may yield valuable timber when they are eventually harvested. Full article
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16 pages, 1570 KB  
Article
Insights into Beneficial Effects of an Agroforestry System on Soil Properties and Crop Yields: A Case Study from the Experimental Farm at University of Copenhagen, Denmark
by Vaibhav Pradip Chaudhary and Bhim Bahadur Ghaley
Sustainability 2025, 17(4), 1466; https://doi.org/10.3390/su17041466 - 11 Feb 2025
Cited by 7 | Viewed by 4673
Abstract
Agroforestry systems are sustainable farming practices with multiple benefits like enhanced biodiversity, soil nutrient cycling, soil physical properties, and carbon sequestration. Investigating these multiple beneficial effects of agroforestry systems compared to monoculture cropping systems under diverse pedo-climatic zones and crop-tree combinations is required [...] Read more.
Agroforestry systems are sustainable farming practices with multiple benefits like enhanced biodiversity, soil nutrient cycling, soil physical properties, and carbon sequestration. Investigating these multiple beneficial effects of agroforestry systems compared to monoculture cropping systems under diverse pedo-climatic zones and crop-tree combinations is required to gather robust field evidence for agroforestry performance. Hence, the objective was to investigate the beneficial effects of agroforestry systems on soil properties and crop yields in a combined food and energy production (CFE) agroforestry system compared to the conventional winter wheat (CWW) production system in Denmark. The field methods consisted of soil and crop cut sampling, soil moisture measurement, earthworm abundance count in CFE compared to the CWW fields, and climate data for 2023. The study demonstrated that an agroforestry system viz CFEmean and natural forest (NF) had a lower bulk density viz. 1.48 and 1.01 g cm−3, respectively compared to CWW (1.74 g cm−3) with intensive use of fertilizers and chemicals. CFEmean and NF had higher soil organic matter, total nitrogen %, available potassium (K), potentially mineralizable nitrogen, soil moisture retention, and earthworm count under drought conditions compared to CWW. The study demonstrated that alley cropped winter wheat (CFE WW) recorded similar grain yields and significantly higher straw and aboveground biomass accumulation compared to CWW with intensive use of chemical and fertilizer inputs. The biomass belt (BB) effects on alley crop yield varied with the distance with negative effects on grain, straw, and aboveground biomass yields in CFE WW at the nearest points from the BB, and yields increased gradually in the alley fields further away from the BB with maximum grain yields at 62.83 m away from the BB. The study provided a robust field evidence on the beneficial effects of agroforestry on soil properties and crop and biomass yields compared to CWW for informed decision-making by land managers for the adoption of agroforestry practice. Full article
(This article belongs to the Section Sustainable Products and Services)
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22 pages, 4922 KB  
Article
Biomass Partitioning, Carbon Storage, and Pea (Pisum sativum L.) Crop Production under a Grewia optiva-Based Agroforestry System in the Mid-Hills of the Northwestern Himalayas
by Alisha Keprate, Daulat Ram Bhardwaj, Prashant Sharma, Dhirender Kumar and Rajesh Kumar Rana
Sustainability 2024, 16(17), 7438; https://doi.org/10.3390/su16177438 - 28 Aug 2024
Cited by 7 | Viewed by 2731
Abstract
A well-designed tree-based culture provides multiple benefits, aiding in achieving sustainable development goals (SDGs), especially SDG1 (no poverty), SDG2 (zero hunger), SDG13 (climate action), and SDG15 (life on land). A split-plot field experiment near Solan, Himachal Pradesh, tested the following Grewia optiva tree [...] Read more.
A well-designed tree-based culture provides multiple benefits, aiding in achieving sustainable development goals (SDGs), especially SDG1 (no poverty), SDG2 (zero hunger), SDG13 (climate action), and SDG15 (life on land). A split-plot field experiment near Solan, Himachal Pradesh, tested the following Grewia optiva tree spacings as main plots: S1 10 m × 1 m, S2 10 m × 2 m, S3 10 m × 3 m, and sole cropping (S0—Open) of pea (Pisum sativum L.). Pea cultivation included the following six fertilizer treatments as subplots: control (no application), farmyard manure (FYM), vermicompost (VC), Jeevamrut, FYM + VC, and the recommended dose of fertilizers (RDFs), each replicated three times. The results indicated that the leaves, branches, total biomass, carbon density, and carbon sequestration rate of G. optiva alleys at 10 m × 1 m were greater than those at the other spacings. However, peas intercropped at 10 m × 3 m produced the highest yield (5.72 t ha−1). Compared with monocropping, G. optiva-based agroforestry significantly improved soil properties. Among fertilizers, FYM had the highest yield (6.04 t ha−1) and improved soil health. The most lucrative practice was the use of peas under a 10 m × 1 m spacing with FYM, with economic gains of 2046.1 USD ha−1. This study suggests integrating pea intercropping with G. optiva at broader spacing (10 m × 3 m) and using FYM for optimal carbon sequestration, soil health, and economic returns, and this approach is recommended for the region’s agroecosystems. Full article
(This article belongs to the Section Sustainable Agriculture)
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15 pages, 3759 KB  
Article
Soil Carbon Dioxide Emissions and Carbon Sequestration with Implementation of Alley Cropping in a Mediterranean Citrus Orchard
by Jose A. Acosta, Alberto Imbernón-Mulero, Belén Gallego-Elvira, Jose F. Maestre-Valero, Silvia Martínez-Martínez and Victoriano Martínez-Álvarez
Plants 2024, 13(17), 2399; https://doi.org/10.3390/plants13172399 - 28 Aug 2024
Cited by 3 | Viewed by 2711
Abstract
Agroecological ecosystems produce significant carbon dioxide fluxes; however, the equilibrium of their carbon sequestration, as well as emission rates, faces considerable uncertainties. Therefore, sustainable cropping practices represent a unique opportunity for carbon sequestration, compensating greenhouse gas emissions. In this research, we evaluated the [...] Read more.
Agroecological ecosystems produce significant carbon dioxide fluxes; however, the equilibrium of their carbon sequestration, as well as emission rates, faces considerable uncertainties. Therefore, sustainable cropping practices represent a unique opportunity for carbon sequestration, compensating greenhouse gas emissions. In this research, we evaluated the short-term effect of different management practices in alleys (tillage, no tillage, alley cropping with Rosmarinus officinalis and Thymus hyemalis on soil properties, carbon sequestration, and CO2 emissions in a grapefruit orchard under semiarid climate). For two years every four months, soil sampling campaigns were performed, soil CO2 emissions were measured, and rhizosphere soils were sampled at the end of the experimental period. The results show that alley cropping with Thymus and Rosmarinus contributed to improve soil fertility, increasing soil organic carbon (SOC), total nitrogen, cation exchange capacity, and nutrients. The CO2 emission rates followed the soil temperature/moisture pattern. Tillage did not contribute to higher overall CO2 emissions, and there were no decreased SOC contents. In contrast, alley crops increased CO2 emission rates, especially Rosmarinus; however, the bigger root system and biomass of Rosmarinus contributed to soil carbon sequestration at a greater rate than Thymus. Therefore, Rosmarinus is positioned as a better option than Thymus to be used as an alley crop, although long-term monitoring is required to evaluate if the reported short-term benefits are maintained over time. Full article
(This article belongs to the Special Issue Plant-Soil Interaction Response to Global Change)
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14 pages, 2090 KB  
Article
Agro-Ecological Practice for Sustaining Higher Productivity of Fennel Plant Using Alley Cropping System and Endophytic Fungi
by Sabah A. Hammad, Magdi I. Bahnasy, Nurah M. Alzamel, Mona F. A. Hussein, Ahmed A. A. Mahmoud and Naglaa Loutfy
Sustainability 2024, 16(12), 5167; https://doi.org/10.3390/su16125167 - 18 Jun 2024
Cited by 2 | Viewed by 2360
Abstract
Sustainable ecological agriculture is achieved by regulating the benefits of trees. The application of leguminous trees as alley cropping protects and increases soil fertility, improves the quality of water by intercepting pesticides, changes the local climate, improves biodiversity, and thus improves productivity. In [...] Read more.
Sustainable ecological agriculture is achieved by regulating the benefits of trees. The application of leguminous trees as alley cropping protects and increases soil fertility, improves the quality of water by intercepting pesticides, changes the local climate, improves biodiversity, and thus improves productivity. In order to evaluate the impact of alley cropping upon the growth and productivity attributes of fennel, an experiment was carried out during two seasons. The experiment included eight treatments. Fennel seeds were cultivated between Sesbania alleys and treated with N and endophytic fungi according to the eight treatments. After harvesting the fennel, different parameters were determined and biochemical analyses were conducted. All of the alley cropping treatments showed remarkable superiority in all measures of fennel growth and productivity compared to the sole crop treatment. Among the different alley cropping treatments, applying Sesbania at 4 m spacing with N fertilizer and EF increased most of the studied parameters in terms of the least number of days from planting until harvesting of fennel, herb dry weight, number of umbels, fruit yield, essential oil, N, P, and K content, and pigments. In contrast, the highest plant height was recorded with fennel–Sesbania at 2 m spacing + N fertilizer + EF. Applying fennel–Sesbania at 6 m spacing + N fertilizer + EF treatment resulted in higher stem diameter and increased the number of main branches compared to the other treatments. Full article
(This article belongs to the Special Issue Sustainable Soil Management and Crop Production Research)
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26 pages, 1022 KB  
Review
The Influence of Trees on Crop Yields in Temperate Zone Alley Cropping Systems: A Review
by Marie Majaura, Christian Böhm and Dirk Freese
Sustainability 2024, 16(8), 3301; https://doi.org/10.3390/su16083301 - 15 Apr 2024
Cited by 20 | Viewed by 7410
Abstract
Agroforestry is a multifunctional land use system that represents a promising approach to mitigate the environmental impact of agriculture while enhancing the resilience of agricultural systems and ensuring sustainable food production. However, the tree rows in agroforestry systems, particularly in alley cropping systems [...] Read more.
Agroforestry is a multifunctional land use system that represents a promising approach to mitigate the environmental impact of agriculture while enhancing the resilience of agricultural systems and ensuring sustainable food production. However, the tree rows in agroforestry systems, particularly in alley cropping systems (ACS), can affect crop productivity on adjacent agricultural fields through various mechanisms. Hence, concerns about declining yields and reduced farm profitability persist and explain the reluctance of farmers to implement ACS on their land. In this review, we examine the available literature on the effects of temperate ACS on yields of various agricultural crops to evaluate if and to what extent crop yields in ACS are affected by tree presence. We identified that ACS crop yields often vary substantially across different species, geographical locations, weather conditions and ACS designs. Our analysis also revealed that several parameters are modified in ACS by the presence of tree rows affecting crop yields positively or negatively and that ACS design aspects play a crucial role in determining crop productivity. Full article
(This article belongs to the Special Issue Agroforestry for Sustainable Soil Management)
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22 pages, 2537 KB  
Article
SDEWES 2023: Barriers and Possibilities for the Development of Short-Rotation Coppice as an Agroforestry System for Adaptation to Climate Change in Central European Conditions
by Jan Weger, Kamila Vávrová, Lukáš Janota and Jaroslav Knápek
Energies 2024, 17(8), 1779; https://doi.org/10.3390/en17081779 - 9 Apr 2024
Cited by 2 | Viewed by 2144
Abstract
This article compares different production, economic, and selected environmental aspects of agroforestry systems in a standard (alley cropping) and a newly proposed design with fast-growing trees grown in short-rotation coppice. Our models of agroforestry systems (AFSs) are as follows: (i) alley cropping AFS [...] Read more.
This article compares different production, economic, and selected environmental aspects of agroforestry systems in a standard (alley cropping) and a newly proposed design with fast-growing trees grown in short-rotation coppice. Our models of agroforestry systems (AFSs) are as follows: (i) alley cropping AFS with cherry and walnut trees in single rows (tree strips) with 28 m-wide arable fields between them (crop strips), and (ii) coppiced tree belt AFS with poplars and willows and 25 m-wide arable fields between them (crop strips). To evaluate the production characteristics of trees, we used yield curves from experimental plantations in conditions of the Czech Republic from previous research projects. Cost data were collected from long-term experimental plantations and combined with current operation and energy prices. The article presents an economic methodology for assessing the competitiveness of biomass production in AFSs under the current identified market conditions. Our results show that AFSs with short-rotation coppice can have similar economic and production results as annual crops if grown on suitable sites and with appropriate quality of agronomy. In comparison, alley cropping AFSs with fruit trees would not be economically viable for farmers without a significant subsidy for establishment and maintenance in the first years after establishment. Concerning the latest economic and political developments, the product from SRC (energy woodchips) can be evaluated as strategic, increasing the producer’s independence from purchased energy fuels. Full article
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14 pages, 4813 KB  
Article
Effects of Varying Planting Patterns on Wheat Aphids’ Occurrence and the Control Effect of Pesticide Reduction Spraying Process by Unmanned Aerial Vehicle
by Haifeng Gao, Yuyang Shen, Li Chen, Hanlin Lai, Hong Yang, Guangkuo Li, Sifeng Zhao and Feng Ge
Appl. Sci. 2023, 13(21), 11916; https://doi.org/10.3390/app132111916 - 31 Oct 2023
Cited by 3 | Viewed by 2544
Abstract
A walnut–wheat intercropping pattern is practiced widely in southern Xinjiang to alleviate the contradiction between the lack of cultivated land resources and to increase economic value. Previous studies have confirmed that an alley cropping pattern could change the microclimate by supplying additional ecological [...] Read more.
A walnut–wheat intercropping pattern is practiced widely in southern Xinjiang to alleviate the contradiction between the lack of cultivated land resources and to increase economic value. Previous studies have confirmed that an alley cropping pattern could change the microclimate by supplying additional ecological functions such as windbreak, light interception, water conservation, etc. Cereal aphids (including Sitobion avenae, Rhopalosiphum padi, Metopolophium dirhodum, etc.) are commonly spread pests that harm wheat plants. But, the difference in population numbers between local patterns is still unknown. Pesticide reduction is the national strategy in China to alleviate the contraction between the demand of grain yield and environment protection. Plant protection-unmanned aerial vehicles (UAV) spraying pesticides are the most efficient method to control pests. However, compared to traditional artificial spraying method, how the UAV spraying method affect the control effect of reduced concentration pesticide is unclear. In order to address this problem, we conducted field investigations at Zepu county in southern Xinjiang to test the difference between walnut–wheat intercropping and wheat monocropping patterns for three consecutive years. And, we employed the field experiments to ensure the effectiveness of the reduced concentration common pesticides through the UAV spraying method. In conclusion, we conducted a comparison of the control effects of two spraying methods under conditions of reduced pesticide usage. Our findings revealed that the population of cereal aphids was larger in the intercropping pattern compared to the monocropping pattern. Although the control effect of the reduced treatment was lower than the regular dosage, some treatments still demonstrated sufficient capability to eliminate aphids, particularly when considering the effect within major varieties. Additionally, the use of the UAV spraying method exhibited a satisfactory effect when compared to the traditional artificial spraying method. Full article
(This article belongs to the Special Issue Research on Insecticides and Their Applications)
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