نتایج جستجو برای: bit torrent

تعداد نتایج: 55711  

2016
Dan Loureiro Ricardo W. Portela Thiago J. Sousa Flávia Rocha Felipe L. Pereira Fernanda A. Dorella Alex F. Carvalho Nildo Menezes Eduardo S. Macedo Lilia F. Moura-Costa Roberto Meyer Carlos A. G. Leal Henrique C. Figueiredo Vasco Azevedo

We present the complete genome sequence of Corynebacterium pseudotuberculosis strain N1. The sequencing was performed with the Ion Torrent Personal Genome Machine system. The genome is a circular chromosome with 2,337,845 bp, a G+C content of 52.85%, and a total of 2,045 coding sequences, 12 rRNAs, 49 tRNAs, and 58 pseudogenes.

Journal: :IEEE Transactions on Parallel and Distributed Systems 2012

Journal: :Journal of Nepal Geological Society 2000

Journal: :The International Journal of Life Cycle Assessment 2019

2017
Irina P Starodumova Sergey V Tarlachkov Natalia V Prisyazhnaya Lubov V Dorofeeva Elena V Ariskina Vladimir N Chizhov Sergei A Subbotin Lyudmila I Evtushenko Oleg V Vasilenko

A draft genome sequence of Rathayibacter sp. strain VKM Ac-2630 was derived using Ion Torrent sequencing technology. The genome size of this strain is 3.88 Mb, with an average G+C content of 72.0%. Genomic evidence of an aerobic mode of respiration and a heterotrophic lifestyle of this bacterium was obtained.

2014
A. S. Pandit M. N. Joshi P. Bhargava G. N. Ayachit I. M. Shaikh Z. M. Saiyed A. K. Saxena S. B. Bagatharia

We provide the first report on the metagenomic approach for unveiling the microbial diversity in the saline desert of Kutch. High-throughput metagenomic sequencing of environmental DNA isolated from soil collected from seven locations in Kutch was performed on an Ion Torrent platform.

2014
Dmitrii E Polev Kirill S Bobrov Elena V Eneyskaya Anna A Kulminskaya

We report here the draft genome sequence of Geotrichum candidum strain 3C, which is a filamentous yeast-like fungus that holds great promise for biotechnology. The genome was sequenced using Ion Torrent and 454 platforms. The estimated genome size was 41.4 Mb, and 14,579 protein-coding genes were predicted ab initio.

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