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相关概念视频

Optimal Foraging00:48

Optimal Foraging

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How animals obtain and eat their food is called foraging behavior. Foraging can include searching for plants and hunting for prey and depends on the species and environment.
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Trophic Levels01:35

Trophic Levels

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All organisms in an ecosystem occupy a trophic level in the food chain. The lowest level consists of primary producers, which synthesize their food from either solar or chemical energy. Each subsequent level obtains energy from the levels below. Detritivores can occupy any of the levels above primary producers.
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Keystone Species01:39

Keystone Species

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Measures of species biodiversity, such as richness (i.e., the number of species present) and evenness (i.e., their relative abundance), describe an ecological community’s structure. Many factors affect community structure, including abiotic factors (e.g., sunlight and nutrients), disturbances (e.g., fire or flood), species interactions (e.g., predation or competition), and chance events (e.g., foreign species invasion). Certain species—such as keystone species—also play a...
25.4K
Predator-Prey Interactions02:39

Predator-Prey Interactions

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Predators consume prey for energy. Predators that acquire prey and prey that avoid predation both increase their chances of survival and reproduction (i.e., fitness). Routine predator-prey interactions elicit mutual adaptations that improve predator offenses, such as claws, teeth, and speed, as well as prey defenses, including crypsis, aposematism, and mimicry. Thus, predator-prey interactions resemble an evolutionary arms race.
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Epiphytes, Parasites, and Carnivores02:40

Epiphytes, Parasites, and Carnivores

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Plants often form mutualistic relationships with soil-dwelling fungi or bacteria to enhance their roots’ nutrient uptake ability. Root-colonizing fungi (e.g., mycorrhizae) increase a plant’s root surface area, which promotes nutrient absorption. While root-colonizing, nitrogen-fixing bacteria (e.g., rhizobia) convert atmospheric nitrogen (N2) into ammonia (NH3), making nitrogen available to plants for various biological functions. For example, nitrogen is essential for the...
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Microbial Interactions: Predation01:28

Microbial Interactions: Predation

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Microbial predation refers to the process by which one microorganism kills and consumes another to obtain nutrients and energy. It encompasses both bacterial and protozoan predators. This interaction plays a crucial role in shaping microbial communities and regulating nutrient cycling.Bacterial Predators: Epibiotic vs. EndobioticBacterial predators are classified based on their mode of attack as either epibiotic or endobiotic. Epibiotic predators, such as Vampirococcus, attach to the surface of...
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相关实验视频

Updated: Apr 14, 2026

Linking Predation Risk, Herbivore Physiological Stress and Microbial Decomposition of Plant Litter
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Linking Predation Risk, Herbivore Physiological Stress and Microbial Decomposition of Plant Litter

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lemmings 是猎物还是捕食者? 它们是猎物还是捕食者?

P Turchin1, L Oksanen, P Ekerholm

  • 1Department of Ecology and Evolutionary Biology, University of Connecticut, Storrs 06269, USA. Peter.Turchin@UConn.edu

Nature
|June 13, 2000
PubMed
概括

挪威的 lemming 种群周期不是由捕食者驱动的. 相反, lemming 种群动态表明它们充当掠食者,与它们的食物植物相互作用,与周期性飞鸟不同.

科学领域:

  • 生态生态学 生态生态学
  • 人口动态 人口动态
  • 热量相互作用 热量相互作用

背景情况:

  • 挪威 lemmings (Lemmus lemmus) 的大量人口波动长期以来一直吸引着生态学家的兴趣.
  • 假设这些循环是由于食用机制造成的,特别是与食物资源或捕食者的相互作用.

研究的目的:

  • 为了确定 lemming 种群周期是否是由它们作为猎物或捕食者的角色驱动的.
  • 使用峰值形状分析,区分资源驱动和掠食者驱动的人口动态.

主要方法:

  • 应用统计测试对三个挪威虫种群数据集.
  • 与周期性飞鸟 (Myodes glareolus) 的可比数据比较的 lemming 峰形状.
  • 使用了理论模型,其中资源峰值是的,消费峰值是的.

主要成果:

  • 飞鸟种群峰值呈现出形,圆形的形状,与捕食者驱动的周期一致.
  • 软弱人口峰值显示出利的角形形状,与消费者驱动的动态保持一致.
  • 研究结果表明, lemmings 在其种群周期中作为捕食者,受食植物相互作用的驱动.

结论:

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  • 的种群周期很可能是由它们与食物植物的相互作用驱动的,而不是掠食.
  • 一个单一的机制解释了所有周期性动物动态的假设受到挑战.
  • 虫和虫的种群动态似乎由不同的初级热带相互作用来调节.