城市化在温带森林生态系统中加强了的营养偏好垂直分层
Michelle Kirchner1,2,3, Lucie Ciccone2,3, Clyde Sorenson2
1U.S. Department of Agriculture-Agricultural Research Service, Pollinating Insect-Biology, Management, Systematics Research Unit, Logan, Utah, United States of America.
PloS one
|March 28, 2025
概括
在温带森林中,广泛食,没有表现出特定的营养偏好. 然而,城市根据其垂直位置表现出明显的蛋白质和碳水化合物偏好,模仿热带模式.
科学领域:
- 生态生态学 生态生态学
- 动物行为 动物行为
- 营养物质的动力学
背景情况:
- 资源的可用性影响了动物的食模式.
- 补偿假设表明动物寻求限制营养素.
- 热带地区的营养偏好得到了很好的研究,与温带森林的垂直分层不同.
研究的目的:
- 检查在温带森林和城市地区的垂直梯度中的营养偏好模式.
- 研究垂直分层在食生态学中的作用.
- 在温带和城市息地之间比较营养偏好.
主要方法:
- 进行了新的诱设计的诱选择实验.
- 测量了社区在树冠和地面层的营养偏好.
- 评估了14个地点的83棵树的多样性和社区组成.
主要成果:
- 的多样性在垂直层或息地类型之间没有差异.
- 鉴于物种交换,已经确定了四种不同的群.
- 温带森林没有显示出任何特定的营养偏好.
- 城市表现出特定层次的偏好:树木的蛋白质,陆地的碳水化合物.
结论:
- 温带森林的广泛食限制了不同的营养偏好.
- 城市化改变了食的强度,并引入了具有特定营养需求的物种.
- 城市的营养偏好通过新的机制反映了热带模式,突出了对生物群特定生态研究的需要.
相关概念视频
Optimal Foraging
11.8K
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.
11.8K
Trophic Levels
28.7K
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.
28.7K
Trophic Efficiency
19.5K
Trophic level transfer efficiency (TLTE) is a measure of the total energy transfer from one trophic level to the next. Due to extensive energy loss as metabolic heat, an average of only 10% of the original energy obtained is passed on to the next level. This pattern of energy loss severely limits the possible number of trophic levels in a food chain.
19.5K
Ecological Niches
22.3K
All organisms have a position within an ecosystem. The complete set of living and nonliving factors—including food resources, climate, and terrain—that define the position of a given organism are collectively referred to as the organism’s ecological niche.
22.3K
Epiphytes, Parasites, and Carnivores
12.6K
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...
12.6K
Microbial Mats
67
Microbial communities forming biofilms and mats represent complex, spatially structured ecosystems where metabolic processes are stratified according to light, oxygen, and nutrient gradients. Biofilms are initial colonization stages, only a few millimeters thick, while mature microbial mats can reach centimeter-scale thickness and display intricate vertical organization. Their structural and functional heterogeneity allows microorganisms to occupy distinct ecological niches within a few...
67


