Department of Biological Sciences, Florida Institute of Technology, Melbourne, FL, 32901, USA.
Instituto de Geología, Universidad Nacional Autónoma de México, Coyoacán, Mexico City, 04510, Mexico.
Glob Chang Biol. 2017 Aug;23(8):3181-3192. doi: 10.1111/gcb.13608. Epub 2017 Mar 6.
The long-term interaction between human activity and climate is subject to increasing scrutiny. Humans homogenize landscapes through deforestation, agriculture, and burning and thereby might reduce the capacity of landscapes to provide archives of climate change. Alternatively, land-use change might overwhelm natural buffering and amplify latent climate signals, rendering them detectable. Here we examine a sub-annually resolved sedimentary record from Lake Sauce in the western Amazonian lowlands that spans 6900 years. Finely-laminated sediments were deposited from ca. 5000 years ago until the present, and human activity in the watershed was revealed through the presence of charcoal and maize agriculture. The laminations, analyzed for color content and bandwidth, showed distinctive changes that were coupled to more frequent occurrence of fossil maize pollen. As agricultural activity intensified ca. 2200 cal. BP, the 2- to 8-year periodicity characteristic of El Niño-Southern Oscillation became evident in the record. These agricultural activities appeared to have amplified an existing, but subtle climatic signal that was previously absorbed by natural vegetation. When agricultural activity slowed, or land use around Lake Sauce changed at ca. 800 cal. BP, the signal of El Niño-Southern Oscillation (ENSO) activity became erratic.
人类活动与气候的长期相互作用受到越来越多的关注。人类通过砍伐森林、农业和燃烧等活动使景观均质化,从而可能降低景观提供气候变化档案的能力。或者,土地利用变化可能会超过自然缓冲作用,放大潜在的气候信号,从而使这些信号变得可检测。在这里,我们研究了亚马孙低地西部 Sauce 湖的一个亚年分辨率的沉积记录,该记录跨越了 6900 年。大约从 5000 年前开始,直到现在,都有细纹层沉积物沉积,流域中的人类活动通过木炭和玉米农业的存在而显现出来。通过对颜色含量和带宽进行分析,这些纹层显示出与更频繁出现的化石玉米花粉相关的独特变化。随着农业活动在大约 2200 年前的 cal. BP 加剧,厄尔尼诺-南方涛动的 2 至 8 年周期特征在记录中变得明显。这些农业活动似乎放大了以前被自然植被吸收的现有但微妙的气候信号。当农业活动放缓,或者大约在 800 年前 cal. BP 时,Sauce 湖周围的土地利用发生变化时,厄尔尼诺-南方涛动(ENSO)活动的信号变得不稳定。