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Biology subjects

Khan, I. A.

Publications and source records attributed to Khan, I. A..

2 recordsLinked to original sources

Surveillance of genetic diversity and evolution in locally transmitted SARS-CoV-2 in Pakistan during the first wave of the COVID-19 pandemic

Surveillance of genetic diversity in the SARS-CoV-2 is extremely important to detect the emergence of more infectious and deadly strains of the virus. In this study, we monitored mutational events in the SARS-CoV-2 genome through whole genome sequencing. The samples (n=48) were collected from the hot spot regions of the metropolitan city Karachi, Pakistan during the four months (May 2020 to August 2020) of first wave of the COVID-19 pandemic. The data analysis highlighted 122 mutations, including 120 single nucleotide variations (SNV), and 2 deletions. Among the 122 mutations, there were 71 singletons, and 51 recurrent mutations. A total of 16 mutations, including 5 nonsynonymous mutations, were detected in spike protein. Notably, the spike protein missense mutation D614G was observed in 31 genomes. The phylogenetic analysis revealed majority of the genomes (36) classified as B lineage, where 2 genomes were from B.6 lineage, 5 genomes from B.1 ancestral lineage and remaining from B.1 sub-lineages. It was noteworthy that three clusters of B.1 sub-lineages were observed, including B.1.36 lineage (10 genomes), B.1.160 lineage (11 genomes), and B.1.255 lineage (5 genomes), which represent independent events of SARS-CoV-2 transmission within the city. The sub-lineage B.1.36 had higher representation from the Asian countries and the UK, B.1.160 correspond to the European countries with highest representation from the UK, Denmark, and lesser representation from India, Saudi Arabia, France and Switzerland, and the third sub-lineage (B.1.255) correspond to the USA. Collectively, our study provides meaningful insight into the evolution of SARS-CoV-2 lineages in spatio-temporal local transmission during the first wave of the pandemic.

genomics

Chalcid Hymenopteran parasitoid Dirhinus giffardii Silvestri proficiently disturbed house fly production

ObjectivesMan is always conscious about his health, and is well being challenged by many diseases. These diseases are directly causing hazards and most of them are transmitted through a vector. These vectors (mostly insects) have the ability to transfer / spread pathogenic organisms and that have the potential to cause severe epidemics. The house fly, Musca domestica (Diptera: Muscidae) plays a leading role in spreading more than 100 human and animal diseases. House fly is an eternal issue and mostly the management tactics rely on the use of chemicals either as spray, fumigants or baits. Unauthenticated behavior of these chemicals creates lethal effects on biological ecosystem, furthermore these measures may not be an effective options for outdoor management. For natural and safe option, bio-control strategy is being utilized to make environment healthy and clean. The present study was a part of such effort to use this strategy and validate the biological performance of the potential pupal parasitoid Dirhinus giffardii Silvestri against house fly and provide alternative and safe control of filthy flies. This is the first report on parasitism potential of D. giffardii Silvestri against house fly. ResultsThe D. giffardii Silvestri, 1913 (Hymenoptera: Chalcididae), early reported as an effective pupal parasitoid of tephritid flies, here in the case presented, showed overall 70% reduction in the house fly population by parasitizing pupae. The parasitism efficiency and longevity of hymenopteran parasitoid was remarkably noted two-fold higher on house fly pupae as compared to primary hosts (Tephritids). An amazing results were recorded on house fly parasitism, where, female production was increased one fold as compared to tephritids. Furthermore, sex ratio of the resultant progeny was also confirmed the dominancy of female by 74% as compared to males. Based on the unique and remarkable findings we therefore conclude that D. giffardii is the best bio-control agent for controlling house flies and provide healthy, clean and ecofriendly environment.

zoology