完整的Ficus hirta线粒体基因组及其比较分析
Wangdong Deng1,2,3, Xinyi Cai4
1Department of Urology, Longgang District Central Hospital of Shenzhen, Shenzhen, China.
Frontiers in genetics
|May 8, 2025
概括
测序了Ficus hirta的完整线粒体基因组,揭示了它的结构和基因含量. 这项研究为Ficus hirta研究提供了宝贵的基因组资源.
科学领域:
- 植物基因组学 植物基因组学
- 分子生物学分子生物学
背景情况:
- 花 (Ficus hirta) (Wuzhimaotao) 是一个来自莫拉科的双胞胎植物.
- 它具有重要的药用和生态意义.
研究的目的:
- 为了阐明Ficus hirta.的完整的线粒体基因组.
- 为未来的研究提供基因组资源.
主要方法:
- 混合组装方法. 混合组装方法.
- 纳米孔和Illumina测序的组合.
主要成果:
- 实现了详细的线粒体基因组架构.
- 基因组是一个单一的圆形结构 (486,226 bp,45.21% GC) 与31个蛋白质编码基因.
- 线粒体和叶绿体基因组之间共享了15个同源片段,表明基因交换.
结论:
- 这项研究提供了对Ficus hirta线粒体基因组的全面了解.
- 这项研究丰富了Ficus hirta和相关物种的基因组资源.
相关概念视频
Animal Mitochondrial Genetics
7.4K
Among all the organelles in an animal cell, only mitochondria have their own independent genomes. Animal mitochondrial DNA is a double-stranded, closed-circular molecule with around 20,000 base pairs. Mitochondrial DNA is unique in that one of its two strands, the heavy, or H, -strand is guanine rich, whereas the complementary strand is cytosine rich and called the light, or L, -strand. Compared to nuclear DNA, mitochondrial DNA has a very low percentage of non-coding regions and is marked by...
7.4K
Export of Mitochondrial and Chloroplast Genes
3.6K
A eukaryotic cell can have up to three different types of genetic systems: nuclear, mitochondrial, and chloroplast. During evolution, organelles have exported many genes to the nucleus; this transfer is still ongoing in some plant species. Approximately 18% of the Arabidopsis thaliana nuclear genome is thought to be derived from the chloroplast’s cyanobacterial ancestor, and around 75% of the yeast genome derived from the mitochondria’s bacterial ancestor. This export has occurred...
3.6K
Comparing Mitochondrial, Chloroplast, and Prokaryotic Genomes
11.9K
The present-day mitochondrial and chloroplast genomes have retained some of the characteristics of their ancestral prokaryotes and also have acquired new attributes during their evolution within eukaryotic cells. Like prokaryotic genomes, mitochondrial and chloroplast genomes neither bind with histone-like proteins nor show complex packaging into chromosome-like structures, as observed in eukaryotes. Unlike mitotic cell divisions observed in eukaryotic cells, mitochondria and chloroplasts...
11.9K
Mitochondria
8.9K
Mitochondria are eukaryotic cellular organelles that are known to produce energy through a process called oxidative phosphorylation. Besides their primary function, mitochondria are involved in various cellular processes, including cell growth, differentiation, signaling, metabolism, and senescence. Age-related changes cause a decline in mitochondrial quality and integrity due to increased mitochondrial mutations and oxidative damage. Thus, aging can severely impact mitochondrial functions,...
8.9K
Mitochondrial Protein Sorting
4.1K
Mitochondria are double-membrane organelles of the eukaryotes involved in cellular metabolism, signaling, ATP synthesis, and programmed cell death. Each of these processes requires specific proteins and enzymes that must be correctly sorted to the right mitochondrial subcompartment for the proper functioning of the organelle.
Most of these mitochondrial proteins are encoded by the nucleus and imported to the mitochondria as unfolded or loosely folded precursors. Mitochondrial precursors...
Most of these mitochondrial proteins are encoded by the nucleus and imported to the mitochondria as unfolded or loosely folded precursors. Mitochondrial precursors...
4.1K
Mitochondrial Membranes
6.6K
A single mitochondrion is a bean-shaped organelle enclosed by a double-membrane system. The outer membrane of mitochondria is smooth and contains many porins - the integral membrane transporters. Porins enable free diffusion of ions and small uncharged molecules through the outer mitochondrial membrane but limit the transport of molecules larger than 5000 Daltons. Further, the outer mitochondrial membrane forms a unique structure called membrane contact sites with other subcellular organelles,...
6.6K


