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相关概念视频

Lampbrush Chromosomes01:51

Lampbrush Chromosomes

In 1882, Flemming observed lampbrush chromosomes (LBC) in salamander eggs. Later in 1892, Rückert observed LBCs in shark egg cells and coined the term "lampbrush chromosomes" because they looked like brushes used to clean kerosene lamps.
LBCs are made up of two pairs of conjugating homologous chromatids. Each chromatid consists of alternatively positioned regions of condensed-inactive chromatin and loosely placed-active side loops, which can be contracted and extended. The loops resemble the...
Telomeres and Telomerase02:41

Telomeres and Telomerase

In eukaryotic DNA replication, a single-stranded DNA fragment remains at the end of a chromosome after the removal of the final primer. This section of DNA cannot be replicated in the same manner as the rest of the strand because there is no 3’ end to which the newly synthesized DNA can attach. This non-replicated fragment results in gradual loss of the chromosomal DNA during each cell duplication. Additionally, it can induce a DNA damage response by enzymes that recognize single-stranded DNA.
Microtubules in Cell Motility01:24

Microtubules in Cell Motility

Microtubules are thick hollow cylindrical proteins that help form the cytoskeleton. Microtubules have varied roles in the cell. These filaments help form cellular appendages like cilia and flagella, which are responsible for locomotion. The cilia arise from basal bodies, separated from the main body by a membrane-like structure forming the transition zone. This zone is the gate for the entry of lipids and proteins, creating a unique composition of lipids and proteins in the ciliary membrane and...
The Contractile Ring02:15

The Contractile Ring

Contractile rings are composed of microfilaments and are responsible for separating the daughter cells during cytokinesis. Contractile ring assembly proceeds along with other cell cycle events; however, very few mechanistic details are known about the timing and coordination of the contractile rings with the cell cycle.
A small GTPase, RhoA, controls the function and assembly of the contractile ring. RhoA belongs to the Ras superfamily of proteins. The activation of formins by RhoA promotes...
Mechanism of Filopodia Formation01:39

Mechanism of Filopodia Formation

Filopodia are thin, actin-rich cellular protrusions that play an important role in many fundamental cellular functions. They vary in their occurrence, length, and positioning in different cell types, suggesting their diverse roles.
Their main function is to guide migrating cells during normal tissue morphogenesis or cancer metastasis by recognizing and making initial contacts with the extracellular matrix. However, they can also act as stationary cell anchors or help to establish communication...
Cell Motility through Blebbing01:16

Cell Motility through Blebbing

Blebs are a type of membrane protrusion formed by the internal hydrostatic pressure of the cytoplasm. Blebs are observed in several cell types, including fibroblasts, immune cells, and single-celled organisms like the amoeba. The primary function of blebs is cell locomotion and apoptosis, but they are also found during necrosis and cell division. The life cycle of a bleb comprises an initiation phase followed by the expansion and retraction phases.
Blebbing Through the Matrix
In multicellular...

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相关实验视频

Updated: Jul 13, 2026

Observation and Quantification of Telomere and Repetitive Sequences Using Fluorescence In Situ Hybridization (FISH) with PNA Probes in Caenorhabditis elegans
10:01

Observation and Quantification of Telomere and Repetitive Sequences Using Fluorescence In Situ Hybridization (FISH) with PNA Probes in Caenorhabditis elegans

Published on: August 4, 2016

在Oxytricha fallax中由C4A4端粒重复结合的移动元素.

G Herrick, S Cartinhour, D Dawson

    Cell
    |December 1, 1985
    PubMed
    概括

    研究人员在微核中发现了新的端粒载体元素 (TBEs). 这些元素很可能是转位子,因为它们被保存,分散,并在插入时导致目标重复.

    科学领域:

    • 分子生物学分子生物学
    • 遗传学 是一个遗传学.
    • 细胞生物学 细胞生物学

    背景情况:

    • 微核元素在基因组动力学中起着至关重要的作用.
    • 了解移动遗传元素是解读基因组演变的关键.

    研究的目的:

    • 描述一个新的微核元素家族,称为端粒载体元素 (TBE).
    • 调查TBE的性质和潜在的转化机制.

    主要方法:

    • 对TBE和周边地区的序列分析.
    • 将TBE与基因组DNA进行比较,以确定插入部位.
    • 终端重复序列的分析.

    主要成果:

    • 一个由1900个微核元素 (TBEs) 组成的新型家族被确定,所有这些元素都在宏核开发过程中被消除.
    • TBEs表现出中度的序列保存和基因组分散,表明了转位子活性.
    • 插入分析显示了3bp的目标重复 (AAT),元素具有77/78bp的反转终端重复,包含类似端粒的序列.

    结论:

    • 端粒载体元素 (TBEs) 可能是微核中的新型转子体.

    更多相关视频

    Manipulation of Ploidy in Caenorhabditis elegans
    07:54

    Manipulation of Ploidy in Caenorhabditis elegans

    Published on: March 15, 2018

    Microfocus X-ray CT (microCT) Imaging of Actinia equina (Cnidaria), Harmothoe sp. (Annelida), and Xenoturbella japonica (Xenacoelomorpha)
    08:09

    Microfocus X-ray CT (microCT) Imaging of Actinia equina (Cnidaria), Harmothoe sp. (Annelida), and Xenoturbella japonica (Xenacoelomorpha)

    Published on: August 6, 2019

    相关实验视频

    Last Updated: Jul 13, 2026

    Observation and Quantification of Telomere and Repetitive Sequences Using Fluorescence In Situ Hybridization (FISH) with PNA Probes in Caenorhabditis elegans
    10:01

    Observation and Quantification of Telomere and Repetitive Sequences Using Fluorescence In Situ Hybridization (FISH) with PNA Probes in Caenorhabditis elegans

    Published on: August 4, 2016

    Manipulation of Ploidy in Caenorhabditis elegans
    07:54

    Manipulation of Ploidy in Caenorhabditis elegans

    Published on: March 15, 2018

    Microfocus X-ray CT (microCT) Imaging of Actinia equina (Cnidaria), Harmothoe sp. (Annelida), and Xenoturbella japonica (Xenacoelomorpha)
    08:09

    Microfocus X-ray CT (microCT) Imaging of Actinia equina (Cnidaria), Harmothoe sp. (Annelida), and Xenoturbella japonica (Xenacoelomorpha)

    Published on: August 6, 2019

  • 一种拟议的转移途径涉及切除,端粒添加,然后再将其重新插入生殖系DNA.