课题基金 / 基金详情

Revealing the hidden effects of anthropogenic disturbance on the spatiotemporal dynamics of animal populations

Revealing the hidden effects of anthropogenic disturbance on the spatiotemporal dynamics of animal populations
揭示人为干扰对动物种群时空动态的隐藏影响
批准号:
NE/W00190X/1
负责人:
Grant Hopcraft
金额:
$77.32万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --

项目摘要

项目成果

相似基金

相关文献

中文摘要
翻译
在全球范围内,由于人类活动造成的压力不断增加,自然生态系统受到威胁。许多生态系统正在变得支离破碎,或在边缘受到侵蚀,甚至在保护区的核心也感受到了人类干扰的影响。通常,人类活动或人类改变的环境的影响是显而易见的:当自然栖息地被破坏时,无法逃脱的动物将死亡;人类通过偷猎,狩猎或捕鱼直接收获野生动物;基础设施,如风力涡轮机或道路,导致动物死亡的碰撞;而疾病可以从牲畜传播并大量减少野生种群。除了这些直接影响,许多研究表明人类如何对动物产生更微妙的影响。例如,人类活动可能导致回避行为,限制进入重要的觅食区,增加压力和警惕水平,并通过将噪音和光线引入环境而干扰感官机制。虽然不那么明显,但这些间接影响可能会产生很大的影响,因为许多动物在其生理极限的边缘运作,从而使其能量需求与资源可用性保持良好平衡,并且虚弱的个体可以很快屈服于捕食者,寄生虫或疾病。这意味着,即使是人类活动的微小影响也会显著降低动物生存和繁殖的概率,进而导致种群数量的大幅突然下降。在这项研究中,我们将调查人类压力的增加对角马迁徙种群的影响,角马是东非大塞伦盖蒂生态系统的关键物种。我们将评估人类干扰如何改变动物的运动方式,它们花费多少时间消耗资源而不是保持警惕,以及这些因素如何影响它们的身体状况。我们将测试这些影响是否会改变个体的生存概率以及它们生育后代的机会。为了评估人类干扰对运动和活动的影响,我们将使用GPS设备和安装在项圈上的活动传感器,我们将在迁徙的角马上部署,结合对资源分布的全面描述,(植被和土壤养分图)和风险(人类基础设施的位置、旅游业、非法狩猎活动和自然捕食)。GPS项圈和传感器将使我们能够跟踪动物,并确定它们对这些环境特征的反应,包括它们如何在空间中移动,以及它们分配给不同活动的时间。为了评估身体状况如何影响生存和繁殖,我们将分析牛羚尾毛生长过程中沉积的代谢物。我们将首先对已知身体状况的动物进行校准分析,然后使用此方法评估因不同原因死亡的动物的身体状况。这将使我们能够估计出身体状况差如何降低角马的生存概率。通过类似的分析,我们将确定动物是否已经繁殖,并通过实地调查来测量小牛的存活率。为了了解人类的间接影响如何扩大到影响种群的弹性,我们将使用积分投影模型,这是一个框架,允许我们使用个体水平的数据来预测种群水平的变化。通过将经验数据收集与将个体生命率与人口动态联系起来的数学模型相结合,我们可以问,如果特定地区的人类活动增加,或者气候变化导致资源的不同分布,人口丰度会发生什么变化。这项研究将是人类对生态系统影响的最详细评估之一,并将为科学家和管理人员提供有关如何在未来保持生态系统弹性的重要信息。
英文摘要
Globally, natural ecosystems are under threat due to the ever increasing pressures imposed by human activities. Many ecosystems are becoming fragmented or are being eroded at the edges while the effects of human disturbance are being felt even at the core of protected areas. Often, the impact of human activity or human-altered environments is obvious: when natural habitats are destroyed animals that can't escape will perish; humans directly harvest wild animals through poaching, hunting or fishing; infrastructure, such as wind turbines or roads, lead to collisions that kill animals; while diseases can spread from livestock and decimate wild populations. Beyond these direct impacts, much research has shown how humans can have more subtle effects on animals. For example, human activities can induce avoidance behaviour and restrict access to vital foraging areas, increase stress and vigilance levels, and interfere with sensory mechanisms by introducing noise and light into environments. While not as obvious, these indirect effects can have large impacts since many animals operate at the edge of their physiological limits whereby their energetic demands are finely balanced with resource availability, and weakened individuals can quickly succumb to predators, parasites, or disease. This means that even subtle impacts of human activity can significantly reduce the probability that an animal will survive and reproduce, which in turn can translate to large and sudden declines in the population.In this research we will investigate the effects of increased human pressures on the migratory population of wildebeest, a keystone species that inhabit the Greater Serengeti ecosystem in East Africa. We will assess how human disturbance is changing how animals move, how much time they spend consuming resources as opposed to being vigilant, and how these factors are affecting their body condition. We will test if these effects alter the survival probability of individuals and the chance that they have viable offspring.To evaluate the effects of human disturbance on movement and activities, we will use GPS devices and activity sensors mounted on collars that we will deploy on migratory wildebeest, combined with a comprehensive description of the distribution of resources (vegetation and soil nutrient maps) and risks (location of human infrastructure, tourism, illegal hunting activities, and natural predation). The GPS collars and sensors will allow us to track animals and determine how they respond to these environmental features, both in terms of how they move around in space, and how much time they allocate to different activities. To assess how body condition affects survival and reproduction we will analyse metabolites that get deposited in wildebeest tail hair as it grows. We will firstly calibrate our analysis on animals of known body condition, and then use this method to assess the body condition of animals that have died of different causes. This will allow us to estimate how poor body condition reduces a wildebeest's probability of survival. Using a similar analysis we will determine whether animals have reproduced and use field surveys to measure calf survival rates.To understand how indirect effects of humans scale-up to impact the resilience of the population, we will use Integral Projection Models, a framework that will allow us to use data at the individual level to predict what will happen at the population level. By combining empirical data collection with mathematical models that link individual vital rates with population dynamics, we can ask what happens to the population abundance if human activities increase in specific areas, or if climate change leads to different distributions of resources. This research will be one of the most detailed assessments of the effects of humans on an ecosystem and will provide scientists and managers with vital information about how to keep ecosystems resilient in the future.
期刊论文(4)
专著(0)
科研奖励(0)
会议论文
DOI: 10.3389/fevo.2022.846171
发表时间: 2022-03
期刊:
影响因子: --
作者: [J. Stabach;L. Hughey;R. Crego;C. Fleming;J. Hopcraft;P. Leimgruber;T. Morrison;J. Ogutu;R. Reid;J. Worden;R. Boone]
通讯作者: J. Stabach;L. Hughey;R. Crego;C. Fleming;J. Hopcraft;P. Leimgruber;T. Morrison;J. Ogutu;R. Reid;J. Worden;R. Boone
Behavioral responses of terrestrial mammals to COVID-19 lockdowns
陆生哺乳动物对 COVID-19 封锁的行为反应
DOI: 10.1126/science.abo6499
发表时间: 2023
期刊: Science
影响因子: 56.9
作者: [Tucker, Marlee A., Schipper, Aafke M., Adams, Tempe S., Attias, Nina, Avgar, Tal, Babic, Natarsha L., Barker, Kristin J., Bastille-Rousseau, Guillaume, Behr, Dominik M., Belant, Jerrold L.]
通讯作者: Belant, Jerrold L.
Interplay of competition and facilitation in grazing succession by migrant Serengeti herbivores
塞伦盖蒂迁徙食草动物放牧演替过程中竞争与促进的相互作用
DOI: 10.1126/science.adg0744
发表时间: 2024
期刊: Science
影响因子: 56.9
作者: [Anderson T]
通讯作者: Anderson T
国内基金
海外基金
基于 Hidden-Markov 理论的孤岛微电网负荷 频率鲁棒控制研究
  • 批准号:
    Q24F030019
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2024
  • 负责人:
    吕欣欣
  • 依托单位:
基于隐半马尔科夫模型的无线传感器网络入侵检测系统研究
  • 批准号:
    61101083
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    25.0万元
  • 批准年份:
    2011
  • 负责人:
    史景伦
  • 依托单位:
存储安全中介系统理论、仿真和实现技术研究
  • 批准号:
    61070154
  • 项目类别:
    面上项目
  • 资助金额:
    30.0万元
  • 批准年份:
    2010
  • 负责人:
    韩德志
  • 依托单位: