线粒体dna是一个很奇特的东西。
线粒体并不使用通用的遗传密码。
因此,线粒体是细胞真正重要部分。
The mitochondrion is therefore a really essential part of the cell.
随年龄增长线粒体功能上也有差异。
There are differences in mitochondrial function with age as well.
线粒体基因组具有种内高度保守性。
Mitochondrial DNA sequence is highly conserved within species.
线粒体是细胞凋亡调控的活动中心。
Mitochondria play a central role in the regulation of apoptotic cell death.
目前已从线粒体中分离出铁硫蛋白。
这两种化合物相信在线粒体的功能中发挥了作用。
Both compounds are believed to play a role in mitochondrial function.
线粒体是细胞的能量工厂。
线粒体是细胞的能量工厂。
修复线粒体,就有可能修复一个老化的你。
线粒体是真核细胞中的一种重要的细胞器。
遗传信息由染色体和线粒体的DNA携带。
The genetic information is carried in the DNA of the chromosomes and mitochondria.
例如,人随着年龄增长,线粒体大大减少。
For example, there are far fewer mitochondria as people age.
在身体每个细胞中线粒体是很小的能量单位。
Mitochondria are tiny energy units within eery cell of the body.
细胞器的移植主要是指中绿体和线粒体的移植。
Cell transplant are mainly in green and mitochondria transplant.
线粒体自身携带DNA,可自我复制、表达。
Mitochondria contain their own DNA. They can replicate and express themselves.
在细胞凋亡的过程中,线粒体起着主要的作用。
Mitochondria play a crucial role in cellular survival and apoptosis.
现就线粒体通透性转换孔的研究现状做一综述。
This review articles is refer to the study current situation of MPTP.
例如,当你运动很多时,你会产生较多的线粒体。
For example, when you exercise a lot, you make more mitochondria.
这种特定的任务落到了线粒体的“发电厂”的细胞。
That particular task falls to the mitochondria, the "power plants" of the cell.
研究背景——线粒体基因组的稀有变异可引发疾病。
Background - Rare mutations in the mitochondrial genome may cause disease.
该蛋白存在一种跨膜螺旋结构和线粒体运输肽结构。
A transmembrane helical structure and a mitochondria transportation structure were also found.
长期以来,人们一直认为线粒体中不存在DNA的修复。
It has long been held that there is no DNA repair in mitochondrial.
但ROS与线粒体损伤之间的关系,至今尚未完全清楚。
However, the relationship between the ROS and the mitochondrial injury is still unclear.
线粒体膜尚基本完整,髓鞘轻度崩解,游离核蛋白体多。
There was a mild breakdown of myelin and many free ribosomes.
线粒体各指标损伤组与防治组差异显著(P<0.01)。
There were significant difference between protection group and injure group(P< 0. 01 ).
线粒体各指标损伤组与防治组差异显著(P<0.01)。
There were significant difference between protection group and injure group(P< 0. 01 ).
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