相关实验视频
Updated: Jul 18, 2025

06:38
Preparation of Meiotic Chromosome Spreads from Mouse Spermatocytes
Published on: November 22, 2017
12.0K
杀手性介质驱动位置的扩散和传播
1Developmental Biology Program, Sloan Kettering Institute, 430 East 67th St, ROC-10, New York, NY 10065, USA.
Current opinion in genetics & development
|August 25, 2023
概括
自私的遗传元素称为介质驱动器,操纵繁殖以确保他们的遗传. 最近的研究表明,在真菌和果中发现的这些系统可以由单个基因驱动,并迅速进化.
科学领域:
- 进化遗传学的进化遗传学
- 分子生物学分子生物学
- 生殖生物学 生殖生物学
背景情况:
- 介质驱动元件是自私的遗传实体,通过破坏性手段促进它们的遗传.
- 存在两个主要类别:精子杀手 (动物,植物) 和子杀手 (真菌).
- 这些系统通常涉及毒素和解毒剂,以防止自我毁灭.
研究的目的:
- 要总结在真菌和果中已知的介质驱动家族.
- 突出共同的进化原则和扩散机制.
- 讨论环境驱动因素的快速功能多样化.
主要方法:
- 对真菌和虫中介性驱动系统的现有文献的审查.
- 对遗传机制的分析,包括毒素-解毒剂系统.
- 比较基因组学以了解基因复制和家族形成.
主要成果:
- 与历史假设相反,许多介质驱动系统是由单个基因起作用的.
- 介质驱动因素经常复制,形成具有复杂的物种间和物种内部相互作用的基因家族.
- 这些家族为快速的功能多样化提供了基板.
结论:
- 介质驱动系统在不同的种群中表现出共同的进化原则.
- 单基因系统和基因重复是它们繁殖和多样化的关键.
- 了解这些'有害基因'为进化动态提供了洞察力.
相关概念视频
Meiosis II
183.6K
Meiosis II is the second and final stage of meiosis. It relies on the haploid cells produced during meiosis I, each of which contain only 23 chromosomes—one from each homologous initial pair. Importantly, each chromosome in these cells is composed of two joined copies, and when these cells enter meiosis II, the goal is to separate such sister chromatids using the same microtubule-based network employed in other division processes. The result of meiosis II is two haploid cells, each...
183.6K
Meiosis vs. Mitosis
57.1K
Cell division is necessary for growth and reproduction in organisms. Mitosis aids cell growth and development by dividing somatic cells. In contrast, meiosis causes the division of germ cells and plays an essential role in sexual reproduction. Due to their unique functional requirements, mitosis and meiosis differ from each other in multiple aspects.
Before the start of mitosis and meiosis I, the cell synthesizes DNA, resulting in two homologous copies of each chromosome. DNA synthesis is...
Before the start of mitosis and meiosis I, the cell synthesizes DNA, resulting in two homologous copies of each chromosome. DNA synthesis is...
57.1K
Meiosis I
193.7K
Meiosis is a carefully orchestrated set of cell divisions, the goal of which—in humans—is to produce haploid sperm or eggs, each containing half the number of chromosomes present in somatic cells elsewhere in the body. Meiosis I is the first such division, and involves several key steps, among them: condensation of replicated chromosomes in diploid cells; the pairing of homologous chromosomes and their exchange of information; and finally, the separation of homologous chromosomes by...
193.7K
M-Cdk Drives Transition Into Mitosis
5.6K
Checkpoints throughout the cell cycle serve as safeguards and gatekeepers, allowing the cell cycle to progress in favorable conditions and slow or halt it in problematic ones. This regulation is known as the cell cycle control system.
Cyclin-dependent kinases, or Cdks, work in concert with cyclins to control cell cycle transitions. M-Cdk, a complex of Cdk1 bound to M cyclin, is a well-known example of this coordinated control that drives the transition from the G2 to the M phase.
M cyclin...
Cyclin-dependent kinases, or Cdks, work in concert with cyclins to control cell cycle transitions. M-Cdk, a complex of Cdk1 bound to M cyclin, is a well-known example of this coordinated control that drives the transition from the G2 to the M phase.
M cyclin...
5.6K
Crossing Over
147.1K
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...
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...
147.1K
Nondisjunction
75.8K
During meiosis, chromosomes occasionally separate improperly. This occurs due to failure of homologous chromosome separation during meiosis I or failed sister chromatid separation during meiosis II. In some species, notably plants, nondisjunction can result in an organism with an entire additional set of chromosomes, which is called polyploidy. In humans, nondisjunction can occur during male or female gametogenesis and the resulting gametes possess one too many or one too few chromosomes.
75.8K

