Diversifying wheat-based cropping systems with pulse crops enhances ecosystem services

IF 6.4 1区 农林科学 Q1 AGRONOMY
Kui Liu, Mohammad Khakbazan, Manjula Bandara, Chang Liang, Pedro Vitor Ferrari Machado
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引用次数: 0

Abstract

Pulse crops are commonly used to improve nitrogen management and diversify cereal-based cropping systems. However, integrated assessments of diversified rotations with pulse crops using plant, soil, and environmental quality indicators remain limited and relatively underexplored. A comprehensive evaluation of such diversified rotations based on agronomic performance, economic returns, and environmental sustainability over time is essential for enhancing cropping system resilience. An eight-year study (two cycles of 4-year rotation) was conducted at two locations to determine the effects of diversification with pulses on ecosystem services indicators including productivity, resource use efficiency, soil carbon, soil nitrogen, carbon footprint, and economic returns. Four cropping systems were evaluated, including a low-diversified rotation of lentil-wheat-lentil-wheat, a moderately diversified rotation of pea-wheat-lentil-wheat, a highly diversified rotation of pea-mustard-lentil-wheat, and a wheat monocrop control. At the 4-year rotation level, diversified rotations increased yield by 22–36%, water use efficiency by 31–42%, energy productivity by 78–86%, and economic returns by 46–65%, compared to the wheat monocrop. Additionally, diversified rotations resulted in net CO2 withdrawal when accounting for carbon sequestration in the soil. There was no difference between moderately and highly diversified rotations, suggesting that a large portion of diversification benefits can be achieved at the moderately diversified rotation level. Compared with the wheat monocrop, diversified rotations reduced nitrogen fertilizer inputs and resulted in a 10–31% lower partial nitrogen balance at the end of 8-year rotations. Moreover, diversifying cropping systems with pulse crops had no adverse effect on soil organic carbon, despite relatively low straw returns from pulse crops. These results, assessed using multiple system indicators at both the crop phase and rotation levels, reveal that diversifying rotations with pulse crops, even at a moderate level, can effectively improve the ecosystem services, contributing to the sustainability of cropping systems.

以小麦为基础的豆类作物种植系统多样化,可增强生态系统服务
脉冲作物通常用于改善氮素管理和多样化以谷物为基础的种植系统。然而,利用植物、土壤和环境质量指标对脉冲作物的多样化轮作进行综合评估仍然有限,而且研究相对不足。基于农艺绩效、经济回报和长期环境可持续性对这种多样化轮作进行全面评估,对于提高种植系统的抗灾能力至关重要。在两个地点进行了为期8年的研究,确定了豆类多样化对生态系统服务指标的影响,包括生产力、资源利用效率、土壤碳、土壤氮、碳足迹和经济回报。评估了四种种植系统,包括小扁豆-小麦-小扁豆-小麦的低多样化轮作,豌豆-小麦-小扁豆-小麦的中等多样化轮作,豌豆-芥菜-小扁豆-小麦的高度多样化轮作,以及小麦单一作物对照。在4年轮作水平上,与单一小麦相比,多样化轮作可提高产量22-36%,水分利用效率31-42%,能源生产率78-86%,经济效益46-65%。此外,考虑到土壤中的碳固存,多样化的轮作导致了二氧化碳的净回收。适度和高度多样化的轮作之间没有差异,这表明在适度多样化的轮作水平上可以实现大部分多样化效益。与单一作物相比,轮作多样化减少了氮肥投入,导致8年轮作结束时氮肥部分平衡降低10-31%。此外,尽管脉冲作物的秸秆收益相对较低,但脉冲作物的多样化种植制度对土壤有机碳没有不利影响。利用作物期和轮作水平的多个系统指标对这些结果进行了评估,结果表明,即使在中等水平上,脉冲作物轮作的多样化也能有效改善生态系统服务,有助于种植系统的可持续性。
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来源期刊
Agronomy for Sustainable Development
Agronomy for Sustainable Development 农林科学-农艺学
CiteScore
10.70
自引率
8.20%
发文量
108
审稿时长
3 months
期刊介绍: Agronomy for Sustainable Development (ASD) is a peer-reviewed scientific journal of international scope, dedicated to publishing original research articles, review articles, and meta-analyses aimed at improving sustainability in agricultural and food systems. The journal serves as a bridge between agronomy, cropping, and farming system research and various other disciplines including ecology, genetics, economics, and social sciences. ASD encourages studies in agroecology, participatory research, and interdisciplinary approaches, with a focus on systems thinking applied at different scales from field to global levels. Research articles published in ASD should present significant scientific advancements compared to existing knowledge, within an international context. Review articles should critically evaluate emerging topics, and opinion papers may also be submitted as reviews. Meta-analysis articles should provide clear contributions to resolving widely debated scientific questions.
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