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Irrigation agriculture affects organic matter decomposition in semi-arid terrestrial and aquatic ecosystems

机译:灌溉农业影响半干旱陆地和水生生态系统中的有机物分解

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摘要

Many dryland areas are being converted into intensively managed irrigation crops, what can disrupt the hydrological regime, degrade soil and water quality, enhance siltation, erosion and bank instability, and affect biological communities. Still, the impacts of irrigation schemes on the functioning of terrestrial and aquatic ecosystems are poorly understood. Here we assess the effects of irrigation agriculture on breakdown of coarse organic matter in soil and water. We measured breakdown rates of alder and holm oak leaves, and of poplar sticks in terrestrial and aquatic sites following a gradient of increasing irrigation agriculture in a semi-arid Mediterranean basin transformed into irrigation agriculture in 50% of its surface. Spatial patterns of stick breakdown paralleled those of leaf breakdown. In soil, stick breakdown rates were extremely low in non-irrigated sites (0.0001-0.0003day-1), and increased with the intensity of agriculture (0.0018-0.0044day-1). In water, stick breakdown rates ranged from 0.0005 to 0.001day-1, and increased with the area of the basin subject to irrigation agriculture. Results showed that irrigation agriculture affects functioning of both terrestrial and aquatic ecosystems, accelerating decomposition of organic matter, especially in soil. These changes can have important consequences for global carbon budgets. © 2013 Elsevier B.V.
机译:许多干旱地区正在转变为集约化管理的灌溉作物,这会破坏水文状况,降低土壤和水质,加剧淤积,侵蚀和河岸不稳定,并影响生物群落。尽管如此,人们对灌溉计划对陆地和水生生态系统功能的影响知之甚少。在这里,我们评估了灌溉农业对土壤和水中粗有机物分解的影响。我们测量了陆陆和水生场所的赤杨和栎叶的分解率,以及在半干旱的地中海盆地中增加灌溉农业的梯度(在其表层的50%转化为灌溉农业)之后,陆生和水生场所的杨树棒的分解率。叶片分解的空间模式与叶片分解的空间模式平行。在土壤中,非灌溉地点的土壤分解率极低(0.0001-0.0003day-1),并且随着农业强度的提高而增加(0.0018-0.0044day-1)。在水中,棒的分解率范围为0.0005至0.001day-1,并且随灌溉农业流域面积的增加而增加。结果表明,灌溉农业影响陆地和水生生态系统的功能,加速有机物的分解,尤其是在土壤中。这些变化可能会对全球碳预算产生重要影响。 ©2013 Elsevier B.V.

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