Hasheminasab Seyed Sajjad
Dept. of Parasitology, Faculty of Veterinary Medicine, University of Tehran, Tehran, Iran.
Iran J Parasitol. 2016 Apr-Jun;11(2):253-258.
Genomic DNA was isolated from . rRNA region was amplified and sequenced.
The RNA secondary structure was predicted using mfold software ( http://mfold.rit.albany.edu ). The secondary structure with bulge, hairpins, helices, interior, external and multi loops was predicted for 5.8srDNA of our sequence of and a sequence and two species of ( and ) in GenBank. RNA motifs were predicted by MEME program version 4.10.2.
The length of 5.8S rRNA sequence for , , and was 158, 156, 127 and 127bp, and the DG required for the formation of the secondary structure was -70.50, -56.40, -41.50 and -41.40 kcal/Mol, respectively. Common structural elements were initially recognized with the help of mfold by screening for thermodynamically optimal and suboptimal secondary structures (default settings, with T = 37 °C). The energy levels of the presumptive secondary structures were then calculated with mfold at the DNA level. Both motifs and the sequence of were completely different from the other analyzed samples. This difference might be due to the differences in host and geographical area.
This is the first molecular study of in sheep, which could be further used in the structure modeling across Habronematidae.
从……中分离出基因组DNA。扩增并测序rRNA区域。
……、……、……和……的5.8S rRNA序列长度分别为158、156、127和127bp,形成二级结构所需的ΔG分别为-70.50、-56.40、-41.50和-41.40 kcal/mol。通过筛选热力学最优和次优二级结构(默认设置,T = 37°C),借助mfold初步识别常见结构元件。然后在DNA水平上用mfold计算推定二级结构的能量水平。……的基序和序列与其他分析样本完全不同。这种差异可能是由于宿主和地理区域的差异。
这是首次对绵羊体内……进行的分子研究,可进一步用于整个柔线虫科的结构建模。