Collaborative Research: The tropicalization of Western Atlantic seagrass beds
Collaborative Research: The tropicalization of Western Atlantic seagrass beds
批准号:
2019022
负责人:
Justin Campbell
金额:
$14.38万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-12-01 至 2021-12-31
中文摘要
温带海洋生物群落变暖正在成为一种全球现象,产生新的生物相互作用,可能导致生态系统结构的一系列级联效应。例如,食草动物种群向极地扩张可能导致形成栖息地的植被的消耗,从而改变沿海环境提供的生态服务(一种被称为热带化的现象)。许多危险的栖息地,如海藻森林和海草床,提供了支持复杂食物网的基础栖息地。墨西哥湾沿岸的海草草甸目前正在经历热带食草动物的涌入,但对这些群落最终可能做出的反应缺乏全面的了解。这个项目描述了第一个实验,以量化热带化对广泛分布的海草生态的破坏影响。该项目的一个主要贡献将是开发一个海草研究协作网络,作为更广泛的科学研究和未来协作的平台。这一合作涉及11个机构,这个网络将促进初级和高级科学家以及许多本科生和研究生之间的广泛合作。鉴于这项工作的地理范围,研究小组将通过举办一系列公共讲座和科学咖啡馆活动,进一步寻求整个网络的外联机会,以推广海洋生态和养护主题。这项研究将在整个加勒比地区开展一项大规模的操控实验,前提是建立一个由15个海洋站点组成的比较网络,该网络将量化温度和光照如何与主要热带海草--地中海海生海草的食草者效应相互作用。已经沿着纬度梯度(从百慕大到巴拿马)选择了地点,这样光和温度就会不同,使调查人员能够测试非生物因素对放牧增加的生态影响的影响(通过人工剪叶模拟热带化)。在15个海洋地点中的每个地点,放牧处理将与营养处理以析因设计交叉,为期18周,之后将通过测量面积生产力、嫩枝密度、地上生物量和碳水化合物储存来评估海草的结构和功能。实验将在夏季和冬季进行,此时非生物梯度分别最弱和最强。分层混合模型和结构方程模型中新出现的统计技术将进一步整合实验数据和观测数据。
英文摘要
The warming of temperate marine communities is becoming a global phenomenon, producing new biotic interactions that can result in a series of cascading effects on ecosystem structure. For example, the poleward expansion of herbivore populations can lead to the consumption of habitat-forming vegetation, which alters the ecological services provided by coastal environments (a phenomenon known as tropicalization). Many of the habitats at risk, such as kelp forest and seagrass beds, provide foundational habitat that supports complex food webs. Seagrass meadows along the Gulf of Mexico are currently experiencing an influx of tropical grazers, however a integrated understanding of how these communities might ultimately respond is lacking. This project describes the first experiment to quantify the disruptive effect of tropicalization on the ecology of a widely-distributed seagrass. A major contribution of this project will be the development of a seagrass research collaborative network to serve as a platform for broader scientific inquiry and future collaboration. The collaboration spans a total of 11 institutions, and this network will foster extensive collaborations among junior and senior scientists, as well as many undergraduate and graduate students. Given the geographic scope of this work, the research team will further pursue outreach opportunities across the network by hosting a series of public lectures and science café events promoting topics in marine ecology and conservation. This study will develop a large-scale manipulative experiment across the Caribbean, premised upon a comparative network of 15 marine sites, which will quantify how temperature and light interact with grazer effects on the dominant tropical seagrass, Thalassia testudinum. Sites have been selected along a latitudinal gradient (from Bermuda to Panama), such that light and temperature vary, allowing the investigators to test for the effects of abiotic factors on the ecological effects of increased grazing (tropicalization simulated via artificial leaf clipping). At each of the 15 marine sites, grazing treatments will be crossed with nutrient manipulations in a factorial design for 18 weeks, after which seagrass structure and functioning will be assessed via measurements of areal productivity, shoot density, aboveground biomass, and carbohydrate storage. Experiments will be conducted both in the summer and winter seasons, when abiotic gradients are at their weakest and strongest, respectively. Emerging statistical techniques in hierarchical mixed modeling and structural equation modeling will further allow for integration of experimental and observational data.
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Collaborative Research: The tropicalization of Western Atlantic seagrass beds
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批准号:1737247
-
项目类别:Standard Grant
-
资助金额:$69.91万
-
财政年份:2018
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负责人:Justin Campbell
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依托单位:
国内基金
海外基金
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