J
Joynob Akter Puspo
Researcher at University of Dhaka
Publications - 4
Citations - 64
Joynob Akter Puspo is an academic researcher from University of Dhaka. The author has contributed to research in topics: Stop codon & Nonsynonymous substitution. The author has an hindex of 2, co-authored 4 publications receiving 28 citations.
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Comprehensive annotations of the mutational spectra of SARS-CoV-2 spike protein: a fast and accurate pipeline
Mohammad Shaminur Rahman,Mohammad Rafiul Islam,Mohammad Nazmul Hoque,Mohammad Nazmul Hoque,Abu Sayed Mohammad Rubayet Ul Alam,Masuda Akther,Joynob Akter Puspo,Salma Akter,Salma Akter,Azraf Anwar,Munawar Sultana,Mohammad Anwar Hossain +11 more
TL;DR: The pipeline will aid in the evolutionary surveillance of any SARS‐CoV‐2 encoded proteins and will prove to be crucial in tracking the ever‐increasing variation of many other divergent RNA viruses in the future.
Posted ContentDOI
Comprehensive annotations of the mutational spectra of SARS-CoV-2 spike protein: a fast and accurate pipeline
Mohammad Shaminur Rahman,Mohammad Rafiul Islam,Mohammad Nazmul Hoque,Mohammad Nazmul Hoque,Abu Sayed Mohammad Rubayet Ul Alam,Abu Sayed Mohammad Rubayet Ul Alam,Masuda Akther,Joynob Akter Puspo,Salma Akter,Salma Akter,Azraf Anwar,Munawar Sultana,Mohammad Anwar Hossain,Mohammad Anwar Hossain +13 more
TL;DR: This study presents a fast and accurate pipeline for identifying nonsynonymous mutations and deletions from large dataset for any particular protein coding sequence and presents this S protein data as representative analysis.
Journal ArticleDOI
Microbiome signature and diversity regulates the level of energy production under anaerobic condition.
M. Shaminur Rahman,M. Nazmul Hoque,M. Nazmul Hoque,Joynob Akter Puspo,M. Rafiul Islam,Niloy Das,Mohammad Anwar Siddique,M. Anwar Hossain,M. Anwar Hossain,Munawar Sultana +9 more
TL;DR: In this paper, the authors collected 16 samples from the anaerobic digester (AD) of cow dung (CD) origin and sequenced through whole metagenome sequencing (WMS).
Posted ContentDOI
Microbiome dysbiosis regulates the level of energy production under anaerobic condition
Mohammad S Rahman,M. N. Hoque,M. N. Hoque,Joynob Akter Puspo,Mirajul Islam,Das N,Mohammad Anwar Siddique,M A Hossain,M A Hossain,Munawar Sultana +9 more
TL;DR: In this article, the physicochemical analysis revealed that highest CH 4 production (74.1%) was associated with decreased amount of non-metal (phosphorus and sulfur) and heavy metals (chromium, lead and nickel).