Collaborative research: Quantifying the influence of nonconsumptive predator effects on prey population dynamics
Collaborative research: Quantifying the influence of nonconsumptive predator effects on prey population dynamics
批准号:
1736943
负责人:
David Kimbro
金额:
$59.51万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-01-01 至 2022-06-30
中文摘要
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英文摘要
Predators can affect populations of their prey in two ways: by consuming them ("consumptive effects" or "CE"s), or by causing the prey to change behavior to avoid contact with the predator. For example, prey often spend less time feeding and more time watching out for predators, which comes with the cost of lower food intake and thus slower growth. Such "non-consumptive effects" (NCEs) have been described for a wide range of terrestrial and marine prey species, from elk to clams, but mostly in short-term ( 1 month) experiments. These prior results suggest that in some cases, the behavioral changes (NCEs) have a bigger effect on prey populations than consumption by predators (CEs). However, those short-term, controlled experiments may artificially inflate the perceived importance of NCEs. Over longer time periods, prey may adapt or become acclimated to predation risk, and NCEs may become less important. Additionally, environmental variability (e.g., differences in the availability of the prey's food between study sites) may have a bigger effect on prey populations than NCEs do. This project will use a combination of short- (months) and long-term (years) field experiments and mathematical models to evaluate the role of NCEs on Florida oyster reefs. The prey species in this study is the eastern oyster, an important marine resource in the southeast US for harvesting and habitat creation; the main oyster predator is a mud crab. In this study, results from mathematical models of oyster populations will be compared to experimental data from the field to see whether including NCEs in the model leads to better model predictions. Better understanding of NCEs in oysters should improve management of that important marine resource. Furthermore, the mathematical model will be used to develop broader, generalizable conclusions about the importance of NCEs that could be applied to other important prey species. This project will provide data useful for oyster resource management, will support public education regarding the ecological importance of NCEs, and will enhance the scientific engagement of underrepresented groups in the study region. The project will support a partnership with the Guana Tolomato Matanzas National Estuarine Research Reserve in Florida, including data sharing, sponsoring an oyster management symposium, and funding the development of multimedia scientific outreach materials at the reserve that will be used by a large and diverse population of K-12 students in the surrounding community. The project will train a postdoctoral researcher, two graduate students, two undergraduate students, and research results will be disseminated by those students and the principal investigators at scientific conferences, in journal publications, and in online content through an ongoing partnership with a Florida public television station. Predators can alter prey population dynamics by causing fear-based shifts in prey traits (nonconsumptive effect, NCE). The importance of NCEs for prey populations - relative to direct consumption by predators (consumptive effects, CEs) - remains uncertain, particularly because short-term studies of NCEs cannot estimate their effect over multiple prey generations. This project addresses that knowledge gap by combining short- and long-term field experiments with population models to investigate the importance of NCEs on oyster population dynamics in a Florida estuary. The central question is whether accounting for NCEs improves the ability to predict long-term trends in oyster population abundance. Several types of NCEs are present in this system: exposure to water containing predator odors reduces oyster larval recruitment and causes juvenile oysters to increase shell thickness, reducing their somatic growth. In addition to CEs and NCEs , environmental gradients in stress, food, and propagule delivery are also present in this system. Those environmental factors can have strong effects on post-settlement survivorship, growth, and recruitment of oysters, so the relative importance of predator CEs and NCEs may vary along those spatial gradients as well. This project will consist of four components. (1) A series of short-term field experiments to test how NCEs vary with predator density and environmental variables, and whether one of the NCEs (increased shell thickness) actually reduces vulnerability to predators. (2) A population model, parameterized using experimental results; model simulations will quantify how the relative importance of NCEs should vary over time, space, and environmental gradients. (3) A longer-term (3.5 year) field experiment; the results from this experiment will be compared to model predictions to test whether accounting for NCEs improves predictions of long-term variation in oyster population dynamics. (4) A general form of the model will be developed to broadly investigate the effect of NCEs on non-equilibrium, transient population dynamics. By combining models and field experiments, this project will bridge the gap between the theoretical understanding of how NCEs affect population dynamics and empirical tests of that theory, advancing the field towards the goal of predicting how multiple interacting factors structure communities.
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A framework and standardized terminology to facilitate the study of predation‐risk effects
促进捕食风险影响研究的框架和标准化术语
DOI:
10.1002/ecy.3152
发表时间:
2020
期刊:
Ecology
影响因子:
4.8
作者:
[Peacor, Scott D., Barton, Brandon T., Kimbro, David L., Sih, Andrew, Sheriff, Michael J]
通讯作者:
Sheriff, Michael J
Environmental forcing and predator consumption outweigh the nonconsumptive effects of multiple predators on oyster reefs
环境强迫和捕食者的消耗超过了多种捕食者对牡蛎礁的非消耗性影响
DOI:
10.1002/ecy.3041
发表时间:
2020
期刊:
Ecology
影响因子:
4.8
作者:
[Kimbro, David L., Tillotson, Hanna G., White, J. Wilson]
通讯作者:
White, J. Wilson
Evidence for local adaptation of oysters to a within-estuary gradient in predation pressure weakens with ontogeny
牡蛎对河口内捕食压力梯度的局部适应随着个体发育而减弱的证据
DOI:
10.1016/j.jembe.2022.151784
发表时间:
2022
期刊:
Journal of Experimental Marine Biology and Ecology
影响因子:
2
作者:
[Kimbro, David L., White, J. Wilson, Breef-Pilz, Adrienne, Peckham, Nicole, Noble, Allison, Chaney, Cade]
通讯作者:
Chaney, Cade
Beyond Residence Time: Quantifying Factors that Drive the Spatially Explicit Filtration Services of an Abundant Native Oyster Population
超越停留时间:量化驱动丰富本地牡蛎种群的空间显式过滤服务的因素
DOI:
10.1007/s12237-021-01017-x
发表时间:
2022
期刊:
Estuaries and Coasts
影响因子:
2.7
作者:
[Gray, M. W., Pinton, D., Canestrelli, A., Dix, N., Marcum, P., Kimbro, D., Grizzle, R.]
通讯作者:
Grizzle, R.
The influence of biophysical coupling and cross-scale interactions on ecosystems of the Plum Island LTER
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批准号:2308605
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项目类别:Standard Grant
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资助金额:$99.59万
-
财政年份:2023
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负责人:David Kimbro
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依托单位:
Collaborative Research: RAPID: Quantifying mechanisms by which Hurricane Michael facilitates a stable-state reversal on oyster reefs
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批准号:1917015
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财政年份:2019
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依托单位:
Collaborative Research: the influence of predators on community structure and resultant ecosystem functioning at a biogeographic scale
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批准号:1338372
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项目类别:Standard Grant
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资助金额:$7.56万
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财政年份:2013
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负责人:David Kimbro
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依托单位:
Collaborative Research: the influence of predators on community structure and resultant ecosystem functioning at a biogeographic scale
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批准号:0961633
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项目类别:Standard Grant
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资助金额:$29.22万
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财政年份:2010
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负责人:David Kimbro
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依托单位:
国内基金
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