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Managing Artificially Drained Low-Gradient Agricultural Headwaters for Enhanced Ecosystem Functions

机译:管理人工排水的低坡度农业上游源头以增强生态系统功能

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摘要

Large tracts of lowlands have been drained to expand extensive agriculture into areas that were historically categorized as wasteland. This expansion in agriculture necessarily coincided with changes in ecosystem structure, biodiversity, and nutrient cycling. These changes have impacted not only the landscapes in which they occurred, but also larger water bodies receiving runoff from drained land. New approaches must append current efforts toward land conservation and restoration, as the continuing impacts to receiving waters is an issue of major environmental concern. One of these approaches is agricultural drainage management. This article reviews how this approach differs from traditional conservation efforts, the specific practices of drainage management and the current state of knowledge on the ecology of drainage ditches. A bottom-up approach is utilized, examining the effects of stochastic hydrology and anthropogenic disturbance on primary production and diversity of primary producers, with special regard given to how management can affect establishment of macrophytes and how macrophytes in agricultural landscapes alter their environment in ways that can serve to mitigate non-point source pollution and promote biodiversity in receiving waters.
机译:大片的低地已被排干,以将广泛的农业扩大到历史上被归类为荒地的地区。农业的扩张必然与生态系统结构,生物多样性和养分循环的变化相吻合。这些变化不仅影响了它们发生的地貌,而且还影响了从排水土地流走的较大水体。由于对收水的持续影响是一个主要的环境问题,因此新的方法必须在当前的土地保护和恢复工作上进行额外的努力。这些方法之一是农业排水管理。本文回顾了这种方法与传统的保护工作,排水管理的特定实践以及排水沟生态学的当前知识状态有何不同。采用了一种自下而上的方法,研究了随机水文学和人为干扰对初级生产和初级生产者多样性的影响,并特别考虑了管理如何影响大型植物的建立以及农业景观中大型植物如何以下列方式改变环境。可以减轻面源污染并促进接收水域的生物多样性。

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