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相关概念视频

The Tree of Life - Bacteria, Archaea, Eukaryotes02:40

The Tree of Life - Bacteria, Archaea, Eukaryotes

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The “tree of life” describes the evolution of life and the evolutionary relationships between organisms. The root of the tree is the common ancestor to all life on Earth. All other species radiate from this point, much like the branches of a tree. The numerous tips of these branches on the tree of life represent every living, or extant, species. Extinct species, which are species that no longer exist, can be found towards the center of the tree. Currently, these organisms, both...
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Prokaryotic Cells01:51

Prokaryotic Cells

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Prokaryotes are small unicellular organisms that include the domains—Archaea and Bacteria. Bacteria include many common organisms, such as Salmonella and E. coli, while the Archaea include extremophiles that live in harsh environments, such as volcanic springs.
Like eukaryotic cells, all prokaryotic cells are surrounded by a plasma membrane, have genetic material in the form of single, circular DNA, a cytoplasm that fills the interior of the cell, and ribosomes that synthesize proteins....
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Eukaryotic Evolution01:24

Eukaryotic Evolution

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The endosymbiont theory is the most widely accepted theory of eukaryotic evolution; however, its progression is still somewhat debated. According to the nucleus-first hypothesis, the ancestral prokaryote first evolved a membrane to enclose DNA and form the nucleus. Conversely, the mitochondria-first hypothesis suggests that the nucleus was formed after endosymbiosis of mitochondria.
Contrary to the endosymbiont theory, the eukaryote-first hypothesis proposes that the simpler prokaryotic and...
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Binary Fission01:20

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Fission is the division of a single entity into two or more parts, which regenerate into separate entities that resemble the original. Organisms in the Archaea and Bacteria domains reproduce using binary fission, in which a parent cell splits into two parts that can each grow to the size of the original parent cell. This asexual method of reproduction produces cells that are all genetically identical.
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Genomic DNA in Prokaryotes00:46

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The genome of most prokaryotic organisms consists of double-stranded DNA organized into one circular chromosome in a region of cytoplasm called the nucleoid. The chromosome is tightly wound, or supercoiled, for efficient storage. Prokaryotes also contain other circular pieces of DNA called plasmids. These plasmids are smaller than the chromosome and often carry genes that confer adaptive functions, such as antibiotic resistance.
Genomic Diversity in Bacteria
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Changes in the environment of the early Earth drove the evolution of organisms. As prokaryotic organisms in the oceans began to photosynthesize, they produced oxygen. Eventually, oxygen saturated the oceans and entered the air, resulting in an increase in atmospheric oxygen concentration, known as the oxygen revolution approximately 2.3 billion years ago. Therefore, organisms that could use oxygen for cellular respiration had an advantage. More than 1.5 years ago, eukaryotic cells and...
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候选细胞放射细菌 候选细胞放射细菌

Alexander L Jaffe1, Jillian F Banfield2

  • 1Department of Earth System Science, Stanford University, Stanford, CA 94305, USA.

Current biology : CB
|February 6, 2024
PubMed
概括
此摘要是机器生成的。

微生物多样性正在迅速扩大,揭示了新的生命形式. 本指南介绍了候选细胞辐射 (CPR) 细菌,这是最近发现的一大群微生物.

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科学领域:

  • 微生物学 微生物学
  • 基因组学就是基因组学.
  • 进化生物学 进化生物学

背景情况:

  • 最近测序技术的进步极大地加速了对微生物多样性的发现.
  • 许多新的微生物系仍然无法培养,这对传统的研究方法构成了挑战.

研究的目的:

  • 为了简要介绍候选细胞辐射 (CPR) 细菌.
  • 突出CPR细菌在微生物生命的更广泛背景中的意义.

主要方法:

  • 本书是对现有文献的综述和综合.
  • 专注于对CPR细菌的基因组和遗传学分析.

主要成果:

  • CPR细菌代表了一个广泛和古老的细菌超级族.
  • 这些细菌具有独特的基因组特征,包括减少的基因组和对宿主的依赖.

结论:

  • 尽管CPR细菌难以捉摸,但它们是许多生态系统的关键组成部分.
  • 对CPR细菌的进一步研究将加深我们对微生物进化和生态学的理解.