相关实验视频
Updated: Jun 27, 2025

09:32
Evaluation of Auditory Brainstem Response in Chicken Hatchlings
Published on: April 1, 2022
3.0K
产前和产后噪音直接影响鸟类的发育,并影响健康
Alizée Meillère1,2, Katherine L Buchanan1, Justin R Eastwood1,3
1School of Life and Environmental Sciences, Deakin University, Waurn Ponds, VIC 3216, Australia.
概括
早期暴露于噪音污染会对正在发育的斑马造成伤害,导致胚胎死亡,并减少终身繁殖成功. 这项研究强调了噪音对年轻野生动物的普遍健康影响.
科学领域:
- 环境科学
- 生态学
- 动物的行为
背景情况:
- 噪音污染是一个日益严重的全球问题,越来越多的证据将其与各种物种的繁殖和发育问题联系起来.
- 噪声对正在发育的生物体产生影响的具体机制和长期健康后果在很大程度上是未知的.
研究的目的:
- 调查早期噪音暴露对斑马子后代发育和健康的内在影响.
- 确定噪音是否直接对成长中的幼儿有害,或者主要是父母的干扰.
主要方法:
- 斑马的后代在出生前和出生后的发育过程中仅暴露于交通噪音.
- 监测了幼的生长,生理,端粒长度和成人的生殖能力.
主要成果:
- 仅仅在生命早期暴露于噪音会导致胚胎死亡.
- 噪音暴露会影响幼的生长和生理,并加速端粒的缩短.
- 产前噪音显著降低了成年后代的产量.
结论:
- 噪音波对成长中的幼儿有本质的有害影响,
- 早期的噪音污染会对身体健康产生长期的负面影响,包括降低生殖能力.
- 噪音污染对野生动物发展和健康的影响比以前理解的要大.
相关概念视频
Background and Environment Affect Phenotype
6.5K
Although the genetic makeup of an organism plays a major role in determining the phenotype, there are also several environmental factors, such as temperature, oxygen availability, presence of mutagens, that can alter an organism’s phenotype.
An example of how genetic background affects phenotype can be seen in horses. The Extension gene in horses is responsible for their coat color. A wild-type gene (EE) produces black pigment in the coat, while a mutant gene (ee) produces red pigment. A...
An example of how genetic background affects phenotype can be seen in horses. The Extension gene in horses is responsible for their coat color. A wild-type gene (EE) produces black pigment in the coat, while a mutant gene (ee) produces red pigment. A...
6.5K
Conservation of Declining Populations
9.6K
Conservation of declining population focuses on ways of detecting, diagnosing, and halting a population decline. The approach uses methods to prevent populations from going extinct.
9.6K
Frequency-dependent Selection
22.0K
When the fitness of a trait is influenced by how common it is (i.e., its frequency) relative to different traits within a population, this is referred to as frequency-dependent selection. Frequency-dependent selection may occur between species or within a single species. This type of selection can either be positive—with more common phenotypes having higher fitness—or negative, with rarer phenotypes conferring increased fitness.
22.0K

