Marion Guy S, Dunbar Robert B, Mucciarone David A, Kremer James N, Lansing J Stephen, Arthawiguna Alit
Department of Biological Sciences, Stanford University, Stanford, CA 94305, USA.
Mar Pollut Bull. 2005 Sep;50(9):931-44. doi: 10.1016/j.marpolbul.2005.04.001.
This study introduces a new method of tracing the history of nutrient loading in coastal oceans via delta(15)N analysis of organic nitrogen preserved in the skeleton of the massive Porites coral. Four coral cores were collected in Bali, Indonesia, from reefs exposed to high levels of fertilizers in agricultural run-off, from lagoonal corals impacted by sewage, and from a reef located 30 km offshore. Skeletal delta(15)N in the agriculturally exposed coral declined from 10.7+/-0.4 per thousand in 1970-1971, when synthetic fertilizers (-0.8 per thousand+/-0.2 per thousand) were introduced to Bali, to a depleted "anthropogenic" baseline of 3.5 per thousand+/-0.4% in the mid-1990s. delta(15)N values were negatively correlated with rainfall, suggesting that marine delta(15)N lowers during flood-bourn influxes of waste fertilizers. Reef cores exposed to untreated sewage in terrestrial discharge were enriched (7.8 and 7.3+/-0.4 per thousand), while the offshore core reflected background oceanic signals (6.2+/-0.4 per thousand). delta(15)N, N concentration, and C:N systematics indicate that the N isotopic composition of skeletal organic matter was generally well preserved over 30 years. We suggest that skeletal organic delta(15)N can serve as a recorder of past nitrogen sources. In Bali, this tracer suggests that the intensification of Western style agricultural practices since 1970 are contributing to the degradation of coastal coral reefs.
本研究介绍了一种通过对大型滨珊瑚骨骼中保存的有机氮进行δ(15)N分析来追溯沿海海洋营养负荷历史的新方法。在印度尼西亚巴厘岛,从受农业径流中高浓度肥料影响的珊瑚礁、受污水影响的泻湖珊瑚以及离岸30公里处的珊瑚礁采集了四个珊瑚岩芯。受农业影响的珊瑚骨骼中的δ(15)N从1970 - 1971年的10.7±0.4‰下降,当时合成肥料(-0.8‰±0.2‰)被引入巴厘岛,到20世纪90年代中期降至贫化的“人为”基线3.5‰±0.4%。δ(15)N值与降雨量呈负相关,表明在洪水携带的废肥料流入期间海洋δ(15)N降低。暴露于陆地排放中未经处理污水的珊瑚礁岩芯δ(15)N值富集(7.8和7.3±0.4‰),而离岸岩芯反映了背景海洋信号(6.2±0.4‰)。δ(15)N、氮浓度和C:N系统分析表明,骨骼有机质的氮同位素组成在30年里总体保存良好。我们认为骨骼有机δ(15)N可作为过去氮源的记录器。在巴厘岛,这种示踪剂表明自1970年以来西式农业实践的强化正在导致沿海珊瑚礁的退化。