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相关概念视频

The Ratio of X Chromosome to Autosomes02:45

The Ratio of X Chromosome to Autosomes

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In most organisms, sex is determined by the ratio of X and Y chromosomes. However, in some organisms, such as Drosophila and C.elegans, sex is determined by the ratio of the number of X chromosomes to the number of sets of autosomes. The Y chromosome in Drosophila is active but does not determine sex. It contains genes responsible for the production of sperms in adult flies.  
Normal male Drosophila has a ratio of one X chromosome to two sets of autosomes. In contrast, normal female...
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X and Y Chromosomes02:32

X and Y Chromosomes

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Among mammals, the gender of an organism is determined by the sex chromosomes. Humans have two sex chromosomes, X and Y. Every human diploid cell has 22 pairs of autosomes and one pair of sex chromosomes. A human female has two X chromosomes, while a male has one X chromosome and one Y chromosome.
The germline cells such as egg and sperm cells carry only half the number of chromosomes, i.e., 22 autosomes and one sex chromosome. All eggs have an X chromosome, while sperm cells can carry an X or...
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Dosage Compensation02:50

Dosage Compensation

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In animals, gender is determined by the number and type of sex chromosome. For example, human females have two X chromosomes, and males have one X and one Y chromosome, whereas C.elegans with one X chromosome is a male, and the one with two X chromosomes is a hermaphrodite.
In addition to sexual development, the X chromosome has genes involved in autosomal functions such as brain development and the immune system. Therefore, males and females with  distinct numbers of X chromosomes will...
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The Y Chromosome Determines Maleness02:19

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The Y chromosome is a sex chromosome found in several vertebrates and mammals, including humans. In addition to 22 pairs of autosomes, the human males have one X chromosome and one Y chromosome. In these organisms, the presence or absence of the Y chromosome determines the development of male traits.
Evolution
Around 300 million years ago, the two sex chromosomes diverged from two identical autosomal chromosomes. Over time, the Y chromosome has lost most of its genes, shrinking in size....
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Sex-linked Disorders01:43

Sex-linked Disorders

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Like autosomes, sex chromosomes contain a variety of genes necessary for normal body function. When a mutation in one of these genes results in biological deficits, the disorder is considered sex-linked.
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Development of the Sexual Organs in the Embryo and Fetus01:15

Development of the Sexual Organs in the Embryo and Fetus

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Development of the reproductive organs in an embryo starts from a bipotential state. This means the early embryo can develop either male or female reproductive organs. The formation of these organs begins with the growth of gonadal ridges that arise from the intermediate mesoderm during the fifth week of development.
Near the gonadal ridges, two duct systems are present: the mesonephric ducts (Wolffian ducts) and paramesonephric ducts (Müllerian ducts). These ducts form the basis for the...
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性是否仍然是二进制的?

Christoph Rehmann-Sutter1, Olaf Hiort2, Ulrike M Krämer3

  • 1Universität zu Lübeck Institut für Medizingeschichte und Wissenschaftsforschung Königstraße 20 23552 Lübeck Deutschland.

Medizinische Genetik : Mitteilungsblatt des Berufsverbandes Medizinische Genetik e.V
|June 6, 2024
PubMed
概括
此摘要是机器生成的。

性别比简单的二进制更复杂,包括染色体,荷尔蒙和各种生物特征. 认识到这种性别多样性对于个性化医学的进步和理解人类生物学至关重要.

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科学领域:

  • 生物科学 生物科学
  • 医学研究 医学研究
  • 性别研究是性别研究.

背景情况:

  • 传统观点将性别归类为基于生殖器或生殖能力的严格二元.
  • 新出现的数据显示,性是一种多方面的生物构造.
  • 了解性别多样性挑战了简单的性别二元模型.

研究的目的:

  • 讨论性别二元概念的局限性.
  • 探索医学进步和对性别多样性的更深入理解如何挑战这种二元.
  • 强调在个性化医学中承认性别多样性的重要性.

主要方法:

  • 透视性文章讨论当前的科学文献和数据.
  • 分析生殖能力以外的生物特征 (染色体,荷尔蒙,二次性特征).
  • 考虑性别发育差异 (DSD) 的个人.

主要成果:

  • 性不能简化为二元分类;它涉及多个生物学层面.
  • 性发育的差异 (DSD) 是生物性别的范.
  • 性影响基因表达,大脑发育和行为.

结论:

  • 由于其复杂性和多层次性质,性别的二元模型是不够的.
  • 性多样性影响疾病呈现,药物反应和治疗疗效.
  • 需要采用跨学科的方法来开发研究性别多样性的新模型.