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首页> 外文期刊>Biological Rhythm Research >Impact of floor management practices on the growth of groundcover species and soil properties in an apple orchard in northern China
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Impact of floor management practices on the growth of groundcover species and soil properties in an apple orchard in northern China

机译:楼层管理实践对中国北方苹果园地下木地区土壤性质成长的影响

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摘要

Tillage and groundcover are the two mainly used management practices in orchard. Only small portion of orchard has been treated with groundcover in China, which would restrict our understanding of the scientific management of apple orchard. This study aimed to investigate the impact of different groundcover treatments on the plant growth of groundcover species and soil properties in an apple orchard near Beijing, northern China. Six commonly used groundcover species were chosen to grow underground. Our results showed that groundcover species had significant greater maximum photosynthesis rate (P-max) than weeds in control plots. Meanwhile, groundcover treatments could largely improve the microclimate of orchard compared with tillage treatment. Among all the groundcover species, alfalfa was proven to be the most appropriate species grown underground in apple orchard for its high P-max and high above-ground biomass. Groundcover treatments had little impact on soil bulk density, soil porosity and surface soil organic carbon (SOC) content. However, significantly greater deep soil organic carbon contents were found in two grass species, and significantly higher soil available nitrogen (N) contents were found in two leguminous species respectively. Our results indicated that groundcover treatment would be a sustainable management practice for apple orchard in northern China.
机译:耕作和地面是果园主要使用的管理实践。只有小部分果园已经在中国的地面处理,这将限制我们对苹果园科学管理的理解。本研究旨在探讨不同地基治疗对北方北部北京附近苹果园植物生长的影响。选择六种常用的地基物种以在地下生长。我们的研究结果表明,地基物种的最大光合速率(P-MAX)具有显着的最大光合速率(p-max)。与此同时,与耕作处理相比,地面处理可能大大改善了果园的微气门。在所有地下层物种中,苜蓿被证明是苹果园地下的最合适的物种,为其高p-max和高于地面生物质。地基治疗对土堆积密度,土壤孔隙率和表面土壤有机碳(SoC)含量影响不大。然而,在两种草地中发现了大量更大的深层有机碳含量,并且分别在两个豆类物种中发现了显着较高的土壤可用氮(N)含量。我们的结果表明,地下证待遇将成为中国北方苹果园的可持续管理实践。

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