1) D-loop
D-loop
1.
The Genetic Diversity of mtDNA D-loop and the Origin of Chinese Goats;
中国山羊mtDNA D-loop遗传多样性及其起源研究(英文)
2.
Analysis on Partial Sequence of Mitochondrial DNA D-loop Region Variation Position of Goat;
山羊线粒体DNA D-loop区部分序列变异位点分析
3.
Sequencing D-loop Region of Mitochondrial DNA in Yak and Study on Its Taxonomic Status in Bovinae;
牦牛线粒体DNA D-loop区序列测定及其在牛亚科中分类地位的研究
2) D-loop
D-环
1.
Origin and Genetic Diversity of Mongolian and Chinese Sheep Using Mitochondrial DNA D-loop Sequences;
用mtDNA D-环序列探讨蒙古和中国绵羊的起源及遗传多样性
2.
The mtDNA D-loop Polymorphism and Origin of 4 Estern Asia Black Goat Populations;
东亚4个黑山羊群体mtDNAD-环遗传多样性及其起源
3.
Sequence and structure analysis of mitochondrial D-loop and tRNA~(thr) & tRNA~(pro) genes in Xiphophorus helleri;
剑尾鱼线粒体DNA D-环及侧翼tRNA~(thr)和tRNA~(pro)序列与结构分析
3) D-loop
D环
1.
The research for mtDNA D-loop gene mutation in plasma of primary breast cancer patients;
乳腺癌患者血浆线粒体D环高变区基因突变研究
2.
Analysis of mtDNA Partial D-loop Sequences in Suzhong and Taihu Pig;
苏钟猪和太湖猪的线粒体D环部分序列比较分析
3.
Molecular Phylogeny of Slow Lorises (Nycticebus) Revealed by D-loop Sequences and Complete Cytochrome b Gene Sequences of Mitochondrial DNA;
从D环和细胞色素b基因序列探讨懒猴属的分子系统发育关系(英文)
4) D-loop
Dloop
5) D-loop
D loop
1.
The mitochondrial DNA(mtDNA)D-loop sequences with 399 bp in 26 individuals from 5 donkey breeds in China were analyzed.
利用ClustalW软件对我国5个家驴品种26个个体的mtDNAD loop区399bp序列进行同源序列比对,共检测到核苷酸多态位点23个,只有转换1种类型,约占所测核苷酸的5。
6) D-loop
DNAD-环区
1.
Mutations in the D-loop region of mitochondrial DNA in colorectal carcinomas;
大肠癌细胞线粒体DNAD-环区的突变
参考词条
D-loop region
D-loop region
D-loop HVI sequence
D-loop HVRⅠ
D-loop region sequencing
D-loop region
mitochondrial D-loop sequence
Mitochondrial D-loop
mtDNA D-loop sequence
mtDNA D-loop
mtDNA D-loop region
mtDNA D-loop
典型顾客
Bi-2212相
补充资料:reactor coolant loop
分子式:
CAS号:
性质:即反应堆一回路冷却剂系统。它由堆芯的冷却剂管路、与二回路相连接的蒸汽发生器和主循环泵构成。冷却剂由堆芯顶部流至反应堆容器底部,再由下而上通过堆芯,最后流出反应堆容器进入蒸汽发生器,再经主循环泵返回反应堆进行循环。主循环泵振动要小,冷却剂泄漏少,能长期安全运行。
CAS号:
性质:即反应堆一回路冷却剂系统。它由堆芯的冷却剂管路、与二回路相连接的蒸汽发生器和主循环泵构成。冷却剂由堆芯顶部流至反应堆容器底部,再由下而上通过堆芯,最后流出反应堆容器进入蒸汽发生器,再经主循环泵返回反应堆进行循环。主循环泵振动要小,冷却剂泄漏少,能长期安全运行。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。