社会环境影响着特立尼达群岛的雄性毛皮犬的颜色发育
Lauren Hunter Puleo1, Andrés López-Sepulcre2, Eleanor Grant3
1Department of Biology, Stanford University, Stanford, CA, United States.
Journal of evolutionary biology
|September 22, 2025
概括
社会线索,而不是捕食者线索,显著影响 (Poecilia reticulata) 的色彩. 隔离养殖的鱼类发展出更明亮的色和黑色颜色,突出了特征多样性的社会动态.
科学领域:
- 进化生物学是进化的生物学.
- 行为生态学 行为生态学
- 动物颜色可塑性 动物颜色可塑性
背景情况:
- 现型可塑性对于物种在环境变化中的生存至关重要.
- 形态特征通常会对温度和捕食等生态因素做出反应.
- 然而,社会线索对特征发展的影响仍然不太了解.
研究的目的:
- 为了研究捕食者和社会线索对雄性 (Poecilia reticulata) 色彩的影响.
- 评估这些线索如何与先前存在的基因适应不同捕食环境的基因适应相互作用.
主要方法:
- 实验设计涉及来自高和低掠食环境的第二代 (F2) 熊猫.
- 交叉治疗:捕食者线索的存在/不存在以及社会养育条件 (隔离与导师).
- 对男性身体颜色的分析,特别是色和黑色的色素.
主要成果:
- 来自掠食性较低的环境中的古皮犬表现出更大的色,证实了遗传影响.
- 捕食者线索没有显著影响明显的色彩.
- 社会线索强烈影响着色彩:孤立的鱼比受辅导的鱼显示更多的色和黑色.
结论:
- 社会动态在塑造雄性鱼颜色方面发挥着重要作用,独立于捕食线索.
- 塑性作为对社会环境的反应,有助于特征的多样性.
- 了解复杂的环境相互作用是预测物种对全球变化的反应的关键.
相关概念视频
Testing a Claim about Population Proportion
3.9K
A complete procedure for testing a claim about a population proportion is provided here.
There are two methods of testing a claim about a population proportion: (1) Using the sample proportion from the data where a binomial distribution is approximated to the normal distribution and (2) Using the binomial probabilities calculated from the data.
The first method uses normal distribution as an approximation to the binomial distribution. The requirements are as follows: sample size is large...
There are two methods of testing a claim about a population proportion: (1) Using the sample proportion from the data where a binomial distribution is approximated to the normal distribution and (2) Using the binomial probabilities calculated from the data.
The first method uses normal distribution as an approximation to the binomial distribution. The requirements are as follows: sample size is large...
3.9K
Background and Environment Affect Phenotype
7.3K
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...
7.3K
Mate Choice
11.5K
Mate choice—the decision about whom to mate with—is a type of natural selection, since animals must reproduce to pass down their genes. Mate choice is also called intersexual selection because the behavior occurs between the sexes.
11.5K
Epistasis
50.0K
In addition to multiple alleles at the same locus influencing traits, numerous genes or alleles at different locations may interact and influence phenotypes in a phenomenon called epistasis. For example, rabbit fur can be black or brown depending on whether the animal is homozygous dominant or heterozygous at a TYRP1 locus. However, if the rabbit is also homozygous recessive at a locus on the tyrosinase gene (TYR), it will have an unshaded coat that appears white, regardless of its TYRP1...
50.0K
X-linked Traits
58.1K
In most mammalian species, females have two X sex chromosomes and males have an X and Y. As a result, mutations on the X chromosome in females may be masked by the presence of a normal allele on the second X. In contrast, a mutation on the X chromosome in males more often causes observable biological defects, as there is no normal X to compensate. Trait variations arising from mutations on the X chromosome are called “X-linked”.
58.1K
Types of Selection
43.7K
Natural selection influences the frequencies of particular alleles and phenotypes within populations in several different ways. Primarily, natural selection can be directional, stabilizing, or disruptive. Directional selection favors one extreme trait and shifts the population towards that phenotype while selecting against individuals displaying alternate traits. Stabilizing selection favors an intermediate trait with a narrow range of variation. Deviation from the optimal phenotype towards an...
43.7K


