Suppr超能文献

生态系统对更早冰期的响应:水温度的气候驱动变化、湖泊生境特有的生产力,以及鳟鱼栖息地和资源利用。

Ecosystem response to earlier ice break-up date: Climate-driven changes to water temperature, lake-habitat-specific production, and trout habitat and resource use.

机构信息

Ecology, Evolution and Conservation Biology Graduate Program, University of Nevada, Reno, NV, USA.

Department of Biology, College of Science, University of Nevada, Reno, NV, USA.

出版信息

Glob Chang Biol. 2020 Oct;26(10):5475-5491. doi: 10.1111/gcb.15258. Epub 2020 Aug 5.

Abstract

Climate warming has yielded earlier ice break-up dates in recent decades for lakes leading to water temperature increases, altered habitat, and both increases and decreases to ecosystem productivity. Within lakes, the effect of climate warming on secondary production in littoral and pelagic habitats remains unclear. The intersection of changing habitat productivity and warming water temperatures on salmonids is important for understanding how climate warming will impact mountain ecosystems. We develop and test a conceptual model that expresses how earlier ice break-up dates influence within lake habitat production, water temperatures and the habitat utilized by, resources obtained and behavior of salmonids in a mountain lake. We measured zoobenthic and zooplankton production from the littoral and pelagic habitats, thermal conditions, and the habitat use, resource use, and fitness of Brook Trout (Salvelinus fontinalis). We show that earlier ice break-up conditions created a "resource-rich" littoral-benthic habitat with increases in zoobenthic production compared to the pelagic habitat which decreased in zooplankton production. Despite the increases in littoral-benthic food resources, trout did not utilize littoral habitat or zoobenthic resources due to longer durations of warm water temperatures in the littoral zone. In addition, 87% of their resources were supported by the pelagic habitat during periods with earlier ice break-up when pelagic resources were least abundant. The decreased reliance on littoral-benthic resources during earlier ice break-up caused reduced fitness (mean reduction of 12 g) to trout. Our data show that changes to ice break-up drive multi-directional results for resource production within lake habitats and increase the duration of warmer water temperatures in food-rich littoral habitats. The increased duration of warmer littoral water temperatures reduces the use of energetically efficient habitats culminating in decreased trout fitness.

摘要

气候变暖导致最近几十年湖泊的冰期提前融化,从而导致水温升高、生境改变,以及生态系统生产力的增加和减少。在湖泊内部,气候变暖对沿岸和浮游生物生境的次级生产力的影响仍不清楚。改变的生境生产力和变暖的水温对鲑鱼的交叉影响对于理解气候变暖将如何影响山地生态系统非常重要。我们提出并测试了一个概念模型,该模型表达了冰期提前融化日期如何影响湖泊内的生境生产、水温以及鲑鱼在山区湖泊中的栖息地利用、资源获取和行为。我们测量了沿岸和浮游生物生境的底栖动物和浮游动物的生产力、热条件以及鳟鱼的栖息地利用、资源利用和适应性。我们表明,更早的冰期融化条件创造了一个“资源丰富”的沿岸底栖生境,与浮游生物生境相比,底栖动物的生产力增加,而浮游动物的生产力下降。尽管沿岸底栖食物资源增加,但由于沿岸地区水温持续较长时间较高,鳟鱼并没有利用沿岸栖息地或底栖生物资源。此外,在冰期提前融化期间,当浮游生物资源最不丰富时,87%的资源来自浮游生物生境。在冰期提前融化期间,对沿岸底栖资源的依赖减少导致鳟鱼的适应性降低(平均减少 12 克)。我们的数据表明,冰期融化的变化导致湖泊内生境的资源生产发生多方向变化,并增加了富含食物的沿岸暖水栖息地的持续时间。沿岸暖水温度持续时间的增加减少了对能量效率高的栖息地的利用,最终导致鳟鱼适应性降低。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验