1) DNA cryptography
DNA密码
1.
On the other hand, one can use DNA to realize new cryptographic technologies-DNA cryptography.
另一方面, 利用DNA可以实现新的密码技术DNA密码。
2.
In particular, the DNA encoding quality is analyzed in the experiment process of solving a combinatorial problem in cryptography by DNA computing, and a better encodings for DNA cryptography is proposed.
DNA密码是目前新兴的一个前沿研究方向。
3.
Using DNA computing to solve NP problems is a hot spot in current research of DNA cryptography.
NP问题是密码学中的一个难题,用DNA计算解决NP问题是目前DNA密码研究的一个热点。
2) DNA barcode
DNA条形码
1.
DNA barcode identification Ⅲ.A primary study of DNA barcode chip on medical mosquito;
DNA条形码识别 Ⅲ.媒介蚊类DNA条形码芯片的初步研究
2.
In this article,the usefulness and characteristics of molecular DNA barcode were reviewed simply,and some disputes and prospects in this research field were discussed.
DNA条形码是一种利用短的DNA序列对物种进行鉴定的技术。
3.
The data from minimalist DNA barcode and DNA barcode were compared to testify if the minimalist DNA barcode was available for species identification.
选用双翅目实蝇科12属36种55个样本为材料,将其DNA条形码(mtDNACOI基因648bp)与微型DNA条形码(mtDNACOI基因50~200bp)数据进行比较分析,探讨微型DNA条形码对果实蝇物种鉴定的可行性。
3) DNA barcoding
DNA条形码
1.
Current advances of DNA barcoding study in plants;
植物DNA条形码研究进展
2.
DNA Barcoding IdentificationⅠ.Research Progress and Applied Perspective of DNA Barcoding;
DNA条形码识别Ⅰ.DNA条形码研究进展及应用前景
3.
The DNA Barcoding Application of mtDNA COⅠ Genes in Seven Species of Catantopidae (Orthoptera);
斑腿蝗科Catantopidae七种蝗虫线粒体COⅠ基因的DNA条形码研究
4) DNA coding
DNA编码
1.
Identification on the two-phased flow-type of DNA coding and chaos neural network;
DNA编码和混沌神经网络的两相流型辨识
2.
Meanwhile,a new method that based on DNA coding genetic algorithm to construct decision tree was proposed.
同时,提出一种新颖的基于DNA编码遗传算法构造决策树的方法。
5) DNA encoding
DNA编码
1.
Analysis and research on DNA encoding grammar;
DNA编码文法的分析与设计
2.
Triple elements and adding elements DNA encoding methods
三元DNA编码法与扩元DNA编码法
6) non-coding DNA
非编码DNA
1.
The observed differences in genome size are primarily due to polyploidy level and abundance of non-coding DNA,especially the contribution of transposable elements(TEs).
不同的真核生物之间基因组大小差异很大,并与生物体复杂性不相关,在基因组中存在大量的非编码DNA序列是造成这种差异的主要原因,特别是转座子序列。
补充资料:DNA分子花窗(沿B―DNA轴线方向看)
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说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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