Long-Term Integrated Systems of Green Manure and Pasture Significantly Recover the Macrofauna of Degraded Soil in the Brazilian Savannah

IF 2.9 Q2 SOIL SCIENCE Soil Systems Pub Date : 2023-05-30 DOI:10.3390/soilsystems7020056
C. S. B. Bonini, Thais Monique de Souza Maciel, B. R. D. A. Moreira, José Guilherme Marques Chitero, Rodney Lúcio Pinheiro Henrique, M. C. Alves
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引用次数: 1

Abstract

Healthy soil biota is the key to meeting the world population’s growing demand for food, energy, fiber and raw materials. Our aim is to investigate the effect of green manure as a strategy to recover the macrofauna and the chemical properties of soils which have been anthropogenically degraded. The experiment was a completely randomized block design with four replicates. Green manure, Urochloa decumbens, with or without application of limestone and gypsum, composed the integrated systems. The macroorganisms as well as the soil fertility were analyzed after 17 years of a process of soil restoration with the aforementioned systems. The succession of Stizolobium sp. with Urochloa decumbens, with limestone and gypsum, was teeming with termites, beetles and ants. This integrated system presented the most technically adequate indexes of diversity and uniformity. Multivariate models showed a substantial increase in the total number of individuals due to the neutralization of harmful elements and the gradual release of nutrients by limestone and plaster. These conditioners have undergone multiple chemical reactions with the substrate in order to balance it chemically, thus allowing the macroinvertebrates to grow, develop, reproduce and compose their food web in milder microclimates. It was concluded that the integration of green manure together with grass is an economical and environmentally correct strategy to restore the macrofauna properties of degraded soil in the Brazilian savannah.
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绿肥与牧场长期整合系统显著恢复巴西大草原退化土壤中的大型动物
健康的土壤生物群是满足世界人口对粮食、能源、纤维和原材料日益增长的需求的关键。我们的目的是研究绿肥作为一种恢复大型动物和人为退化土壤化学性质的策略的效果。试验采用完全随机区组设计,共设4个重复。绿肥、卧氯藻、石灰石和石膏的应用或不应用,组成了综合系统。采用上述系统对土壤进行了17年的修复,分析了土壤的微生物和肥力。石柱藻(Stizolobium sp.)与卧尿藻(Urochloa decumbens)的演替,以及石灰岩和石膏,到处都是白蚁、甲虫和蚂蚁。这个综合系统提供了技术上最充分的多样性和一致性指标。多变量模型显示,由于有害元素的中和和石灰石和石膏逐渐释放营养物质,个体总数大幅增加。这些调节剂与基质发生了多种化学反应,以达到化学平衡,从而使大型无脊椎动物能够在更温和的小气候中生长、发育、繁殖和组成食物网。结果表明,绿肥配草是恢复巴西草原退化土壤大型动物特性的一种经济、环保的策略。
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
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