鸟类昼夜钟基因:在鸟类胚胎中适应性编程的本体和作用
Caleb J Wellard1, Meltem Weger2, Frédéric Gachon2,3
1School of Life and Environmental Sciences, Deakin University, Geelong, VIC, Australia.
Frontiers in physiology
|July 8, 2025
概括
鸟类的循环时钟在胚胎生命的早期发展,影响新陈代谢和神经内分泌系统. 了解这一发展是对鸟类健康和光污染影响的关键.
科学领域:
- * 时代生物学和发育生物学
- * 专注于鸟类昼夜钟基因发育.
背景情况:
- *基于保存的负反循环的循环时钟,调节大多数生物体的生理和行为.
- * 虽然脊椎动物的昼夜机制是已知的,但它们对组织特异性基因表达的发育优化理解较少.
- * 鸟类的昼夜系统很复杂,在化前观察到节律性基因表达,但它的发育含义未被充分探索.
研究的目的:
- * 审查有关鸟类钟基因发育的现有文献.
- * 提出如何节奏时钟基因表达在鸟类中发展.
- * 假设发展时钟基因表达和鸟类胚胎发育之间的相互作用.
主要方法:
- * 对鸟类和非哺乳动物卵性种类的文献综述.
- *综合现有关于开发过程中的时钟基因表达的数据.
- * 发展相互作用的假设建模.
主要成果:
- *节律时钟基因表达可能为鸟类胚胎提供适应性益处.
- *代谢和神经内分泌系统的分期是潜在的好处.
- *节律性基因表达可能协调生理系统以启动化.
结论:
- * 发展节奏的时钟基因表达对于鸟类的本体发生至关重要.
- *需要进一步的研究来了解时钟基因在发育中的作用和生态相关性.
- * 调查人为光污染对鸟类时钟发展的影响至关重要.
更多相关视频
07:44In Vivo Monitoring of Circadian Clock Gene Expression in the Mouse Suprachiasmatic Nucleus Using Fluorescence Reporters
Published on: July 4, 2018
8.4K
07:42Rapid Analysis of Circadian Phenotypes in Arabidopsis Protoplasts Transfected with a Luminescent Clock Reporter
Published on: September 17, 2016
12.9K
相关概念视频
Circadian Rhythms and Gene Regulation
4.2K
The biological clock is involved in many aspects of regulating complex physiology in all animals. It was in 1935 when German zoologists, Hans Kalmus and Erwin Bünning, discovered the existence of circadian rhythm in Drosophila melanogaster. However, the internal molecular mechanisms behind the circadian clock remained a mystery until 1984, when Jeffrey C. Hall, Michael Rosbash, and Michael W. Young discovered the expression of the Per gene oscillating over a 24-hour cycle. In subsequent...
4.2K
Biological Clocks and Seasonal Responses
38.8K
The circadian—or biological—clock is an intrinsic, timekeeping, molecular mechanism that allows plants to coordinate physiological activities over 24-hour cycles called circadian rhythms. Photoperiodism is a collective term for the biological responses of plants to variations in the relative lengths of dark and light periods. The period of light-exposure is called the photoperiod.
38.8K
Background and Environment Affect Phenotype
6.7K
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...
6.7K
