首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Protective shade, tree diversity and soil properties in coffee agroforestry systems in the Atlantic Rainforest biome.
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Protective shade, tree diversity and soil properties in coffee agroforestry systems in the Atlantic Rainforest biome.

机译:大西洋雨林生物群落中咖啡农林业系统的保护性树荫,树木多样性和土壤特性。

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摘要

Sustainable production and biodiversity conservation can be mutually supportive in providing multiple ecosystem services to farmers and society. This study aimed to determine the contribution of agroforestry systems, as tested by family farmers in the Brazilian Rainforest region since 1993, to tree biodiversity and evaluated farmers' criteria for tree species selection. In addition, long-term effects on microclimatic temperature conditions for coffee production and chemical and biological soil characteristics at the field scale were compared to full-sun coffee systems. A floristic inventory of 8 agroforests and 4 reference forest sites identified 231 tree species in total. Seventy-eight percent of the tree species found in agroforests were native. The variation in species composition among agroforests contributed to a greater gamma -diversity than alpha -diversity. Monthly average maximum temperatures were approximately 6 degrees C higher in full-sun coffee than in agroforests and forests. Total soil organic C, N mineralization and soil microbial activity were higher in forests than in coffee systems, whereas the chemical and biological soil quality in agroforests did not differ significantly from full-sun coffee after 13 years. Given its contribution to the conservation of biodiversity and its capacity to adapt coffee production to future climate change, coffee agroforestry offers a promising strategy for the area.
机译:可持续生产和生物多样性保护可以相互支持,为农民和社会提供多种生态系统服务。这项研究旨在确定农作物林业系统(自1993年以来在巴西雨林地区的家庭农民进行的测试)对树木生物多样性的贡献,并评估了农民选择树木的标准。此外,与全日制咖啡系统相比,对田间尺度上咖啡生产的微气候温度条件以及化学和生物土壤特性的长期影响进行了比较。对8种农林和4种参考林地进行的植物学调查总共确定了231种树种。在农林中发现的树种中有百分之七十八是本地的。农林间物种组成的变化导致了比α多样性更大的γ多样性。日照咖啡的月平均最高温度比农林和森林高约6摄氏度。森林中的总土壤有机碳,氮矿化度和土壤微生物活性高于咖啡系统,而农林中的化学和生物土壤质量与13年后的全日照咖啡无显着差异。鉴于其对保护生物多样性的贡献以及使咖啡生产适应未来气候变化的能力,咖啡农林业为该地区提供了有希望的战略。

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