相关实验视频
Updated: Jul 1, 2025

09:40
Novel Sequence Discovery by Subtractive Genomics
Published on: January 25, 2019
8.6K
黄蜂蜘蛛Argiope bruennichi (斯科波利,1772) 的基因组序列
Liam M Crowley1, Finley Hutchinson2,
1University of Oxford, Oxford, England, UK.
Wellcome open research
|March 4, 2024
概括
我们介绍了黄蜂蜘蛛 (Argiope bruennichi) 的基因组组合,这是了解蜘蛛遗传学的重要一步. 这个组合包括它的染色体和线粒体基因组.
科学领域:
- 基因组学就是基因组学.
- 类动物学 类动物学 类动物学
- 动物学 动物学
背景情况:
- 黄蜂蜘蛛 (Argiope bruennichi) 是一个分布广泛的球织蜘蛛.
- 了解各种节肢动物物种的遗传组成对于进化生物学至关重要.
研究的目的:
- 为了生成Argiope bruennichi的高质量基因组组.
- 为研究蜘蛛进化和生物学提供基因组资源.
主要方法:
- 一个单个雌性Argiope bruennichi的全基因组测序.
- 基因组序列的生物信息组装和支架.
- 线粒体基因组组装. 线粒体基因组组装.
主要成果:
- 一个由 1,778.4 兆基的基因组组件被生成.
- 该组件被组织成13种染色体伪分子,包括X1和X2性染色体.
- 线粒体基因组被组装在一起,长度为14.06 kilobases.
结论:
- 这种基因组组合为Argiope bruennichi研究提供了宝贵的资源.
- 这些数据可以促进比较基因组学和进化研究在Araneae.
- 有特征的性别染色体为蜘蛛的性别决定机制提供了洞察力.
相关概念视频
Multi-species Conserved Sequences
3.9K
Next-generation sequencing technologies have created large genomic databases of a variety of animals and plants. Ever since the human genome project was completed, scientists studied the genome of primates, mammals, and other phylogenetically distant living beings. Such large-scale studies have provided new insights into the evolutionary relationship between organisms.
Although the genome of each species varies greatly from each other, a few sequences are highly conserved. Such conserved...
Although the genome of each species varies greatly from each other, a few sequences are highly conserved. Such conserved...
3.9K
Sanger Sequencing
754.3K
DNA sequencing is a fundamental technique that is routinely used in the biological sciences. This method can be applied to a range of questions at different scales - from the sequencing of a cloned DNA fragment or the study of a mutation in a gene up to whole-genome sequencing. However, despite the widespread use of sequencing today, it was not until 1977 that Fredrick Sanger and his collaborators developed the chain-termination method to decode DNA sequences. It relies on the separation of a...
754.3K
Conservation of Protein Domains Over Different Proteins
10.9K
Protein domains are small structurally independent units that are part of a single amino acid chain. Although these domains are often structurally independent, they may rely on synergistic effects to perform their functions as part of a larger protein. Protein domains may be conserved within the same organism, as well as across different organisms.
A limited set of protein domains often duplicate and recombine during evolution. These domains can be organized in different combinations to...
A limited set of protein domains often duplicate and recombine during evolution. These domains can be organized in different combinations to...
10.9K
Next-generation Sequencing
88.8K
The first human genome sequencing project cost $2.7 billion and was declared complete in 2003, after 15 years of international cooperation and collaboration between several research teams and funding agencies. Today, with the advent of next-generation sequencing technologies, the cost and time of sequencing a human genome have dropped over 100 fold.
Next-Generation Sequencing Methods
Although all next-generation methods use different technologies, they all share a set of standard features....
Next-Generation Sequencing Methods
Although all next-generation methods use different technologies, they all share a set of standard features....
88.8K
LTR Retrotransposons
17.5K
LTR retrotransposons are class I transposable elements with long terminal repeats flanking an internal coding region. These elements are less abundant in mammals compared to other class I transposable elements. About 8 percent of human genomic DNA comprises LTR retrotransposons. Some of the common examples of LTR retrotransposons are Ty elements in yeast and Copia elements in Drosophila.
The internal coding region of LTR retrotransposons and their mechanism of transposition closely resembles a...
The internal coding region of LTR retrotransposons and their mechanism of transposition closely resembles a...
17.5K
Non-LTR Retrotransposons
11.5K
As the name suggests, non-LTR retrotransposons lack the long terminal repeats characteristic of the LTR retrotransposons. Additionally, both LTR and non-LTR retrotransposons use distinct mechanisms of mobilization. Non-LTR retrotransposons are further divided into two classes - Long interspersed nuclear elements (LINEs) and short interspersed nuclear elements (SINEs), both of which occur abundantly in most mammals, including humans. Some of the active non-LTR retrotransposons in humans are L1...
11.5K

