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Position-effect Variegation02:32

Position-effect Variegation

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In 1928, a German botanist Emil Heitz observed the moss nuclei with a DNA binding dye. He observed that while some chromatin regions decondense and spread out in the interphase nucleus, others do not. He termed them euchromatin and heterochromatin, respectively. He proposed that the heterochromatin regions reflect a functionally inactive state of the genome. It was later confirmed that heterochromatin is transcriptionally repressed, and euchromatin is transcriptionally active chromatin.
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Complementation Tests00:49

Complementation Tests

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A complementation test is a simple cross to identify whether the two mutations are located on the same gene or different genes. It was first performed by Edward Lewis in the 1940s while working on fruit flies. He developed the test to identify the location and arrangement of different mutations on chromosomes.
Organisms heterozygous for different mutations are crossed pairwise in all combinations. If present on different genes, the mutations can complement each other by providing the missing...
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Background and Environment Affect Phenotype02:27

Background and Environment Affect Phenotype

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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...
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Cis-regulatory Sequences02:02

Cis-regulatory Sequences

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Cis-regulatory sequences are short fragments of non-coding DNA that are present on the same chromosomes as the genes that they regulate. These fragments serve as binding sites for transcriptional regulators, proteins that are responsible for controlling gene transcription and differential gene expression across cell types in eukaryotes. Cis-regulatory sequences can be close to the gene of interest or thousands of bases away in the DNA sequence; however, those sequences that are further away are...
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X-Inactivation01:58

X-Inactivation

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The human X chromosome contains over ten times the number of genes as in the Y chromosome. Since males have only one X chromosome, and females have two, one might expect females to produce twice as many of the proteins, with undesirable results.
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Crossing Over01:34

Crossing Over

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Unlike mitosis, meiosis aims for genetic diversity in its creation of haploid gametes. Dividing germ cells first begin this process in prophase I, where each chromosome—replicated in S phase—is now composed of two sister chromatids (identical copies) joined centrally.
The homologous pairs of sister chromosomes—one from the maternal and one from the paternal genome—then begin to align alongside each other lengthwise, matching corresponding DNA positions in a process...
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相关实验视频

Updated: Sep 10, 2025

Assessing Species-specific Contributions To Craniofacial Development Using Quail-duck Chimeras
09:38

Assessing Species-specific Contributions To Craniofacial Development Using Quail-duck Chimeras

Published on: May 31, 2014

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染色体逆转与共享冬天场地的常见的饮食差异有关

Celia Vinagre-Izquierdo1, Ines Sanchez-Donoso1, Jennifer A Leonard1

  • 1Conservation and Evolutionary Genetics Group Estación Biológica de Doñana (EBD-CSIC) Seville Spain.

Ecology and evolution
|August 22, 2025
PubMed
概括

常见的特定染色体逆转与独特的特征和有限的迁移有关. 这导致两种基因不同的群体在冬季息地共存,影响了它们的行为和资源使用.

关键词:
染色体逆转饮食方式通过测序进行基因型鉴定迁移情况稳定的同位素

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相关实验视频

Last Updated: Sep 10, 2025

Assessing Species-specific Contributions To Craniofacial Development Using Quail-duck Chimeras
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Assessing Species-specific Contributions To Craniofacial Development Using Quail-duck Chimeras

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Probing the Limits of Egg Recognition Using Egg Rejection Experiments Along Phenotypic Gradients
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科学领域:

  • 进化遗传学
  • 行为生态学
  • 保护生物学

背景情况:

  • 染色体逆转是遗传差异化和适应的重要驱动因素.
  • 常见的 (Coturnix coturnix) 的大反转会影响身体大小和飞行效率等特征,可能会影响迁徙.

研究的目的:

  • 调查特定染色体逆变的高频率是否解释了伊比利亚南部居民的存在.
  • 分析西班牙南部的基因组合,形态和迁徙行为.

主要方法:

  • 调查了一群冬季常见的.
  • 在初级羽毛中分析了基因组组成,形态和稳定的同位素比率 (,,碳).
  • 根据稳定的同位素特征推断出迁徙行为和饮食.

主要成果:

  • 识别了具有和没有染色体逆转的的共存,表现出不同的形态和迁徙行为.
  • 它们的迁移很有限, 而没有的则似乎来自其他度.
  • 与居民相比,迁徙的饮食有所不同.

结论:

  • 在冬季息地存在两种不同且共存的染色体系,它们在形态,行为和资源使用上有所不同.
  • 预计反转内缺乏重组会促进这些谱系之间的进一步分歧.
  • 这种染色体多态性在常见的生态和进化动态中起着至关重要的作用.