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Biology subjects

Zafar, M. O.

Publications and source records attributed to Zafar, M. O..

4 recordsLinked to original sources

Genetic Association of PLAG1 Gene Variant 14:25015640G>T with Wither-Height in Pakistani Cattle

The cow is one of the most valuable domesticated animals, producing milk, meat, fiber, hide and manure for agricultural purposes to serve humanity. Particularly, first two production traits are significantly linked with the physical characteristics of the animal e.g., wither-height, large body-size and skeletal frame are positively correlated with these production traits. The PLAG1 is one of the many genes that has been associated with the aforementioned trait in many livestock and human species. So, the current study was conducted on a total of 50 cattles using ARMS-PCR genotyping technique followed by genetic association testing of the 14:25015640G>T variant using PLINK data analysis toolset. Our findings showed that 24% of the sampled Pakistani cow population are homozygous wild-type (GG), 12% homozygous mutant (TT), while 64% found heterozygous (GT). Sampled cows were obeying Hardy Weinberg Equilibrium (HWE) with{chi} 2 (2, N = 50) = 10.39, p = 0.049. Similarly, Chi-square variant association was also observed significant with p-value of 1.267x10-3 having minor-allele frequency of 0.60 and 0.28 in heighted (cases) and control cohorts respectively. Additionally, a positive odds-ratio of 3.85 is also evident that the subject variant is under-selection and showing the tendency of the mutant allele almost 4-times higher in cases vs control groups. This pilot scale study would be helpful to gain insight of variability of the subject SNP in the sampled cow population but further functional studies on larger sample size may be conducted for validation and subsequent results can be disseminated to improve this valued trait of the indigenous cows for gaining maximum milk and meat production from this esteemed species.

genetics↗

In-silico Screening of Origanum vulgare Phytocompounds as Potential Drug Agents Against Vp35 Protein of the Ebola Virus

The leading cause of the Ebola virus outbreak during 2013-16 in Western Africa was a lack of targeted anti- viral drug choices, a fast rate of mutations and the unavailability of many of the structural proteins and annotations within its genome. The surroundings of the Ebola River in DR-Congo fail to get rid of this endemic, the reason behind this was believed to be its origin from non-human primates, which made its risk assessment and tracing difficult. The Vp35 is a multifunctional protein with innate immune antagonistic properties and is considered one of the most suitable drug targets within this virus. The main motive of this study is to discover a potential anti-viral drug against the Ebola virus by targeting the aforementioned protein with different phytocompounds of oregano that have the lowest binding energies and qualifies over different simulation parameters, so firstly, molecular docking was performed on its 28 compounds using PyRx to get the best complexes with minimum binding energies e.g., -8.9Kcal/mol. Ligands with the best docking scores were gone through Lipinskis rule of five for drug likeliness potential. For the drug affirmation, molecular dynamic simulation was also performed with the best two docked complexes using NAMD/VMD to find out their conformational stability through RMSD, RMSF, Rg, SASA and H-bond analyses. Current computer-generated prediction suggested that Ursolic acid and Oleanolic acid possess potential inhibitory effects against virus replication. Furthermore, paradigm shifts of usage of natural and herbal products for treating infectious diseases are being encouraged here, However, further wet-lab experiments and clinical trials are still needed to determine the robustness of these virtually tested phytocompounds against the Vp35 protein of the Ebola virus.

bioinformatics↗

Evaluation of Association between CSN2 Genetic Marker 7:32016718C>A with A1/A2 Milk in Pakistani Buffaloes

Milk is an essential part of the diet that plays an important role in human growth and development due to the presence of different components like calcium, fats and proteins. Among six major proteins of the milk, {beta}-casein is one of them which is being investigated here due to the A1/A2 milk genetic variants and its associated gene of CSN2 in one of the valued species of Bubalus bubalis in Pakistan. Fifty buffalo samples were genotyped using the ARMS-PCR technique. CSN2 gene locus 32016718C>A is located on Chr.7 with CDS position c.350C>A on its 7th exon as per (GenBank transcript ID: XM_006071124.3). In {beta}-casein, 117th amino acid position where histidine (CAT) is responsible for A1 and proline (CCT) for A2 milk phenotype. A2 milk is considered to be healthy for human health due to the absence of bioactive peptide {beta}-casomorphin-7 (BCM7) in comparison with A1 milk. The current results showed that overall, 100% buffalo population is homozygous wild-type (CC) which means no mutant allele is detected in all studied samples therefore, Pakistani buffalo is exclusively producing A2 milk. Furthermore, this work may also be conducted on different buffalo breeds in Pakistan as well as other species of cattle, goat, sheep and camel to explore their genomic architecture for this valued trait.

genetics↗

Genetic Association of LDHA Variant g.2582481G>A with Racing Performance of Pakistani Pigeons

Pigeons are being used as a means of communication back in history due to their efficient flight stamina, navigational (homing) ability and endurance to harsh weather conditions. Due to these distinctive characteristics, pigeon racing and rearing has become a popular sport and hobby throughout the world, predominantly in Pakistan. The genetic tendency of LDHA gene in pigeons should be considered for understanding racing ability. The present study aimed to examine the genetic association of LDHA variant g.2582481G>A with racing performance in Pakistani pigeons. Our results demonstrated that 55% of the pigeons population was homozygous wild-type (G/G), 37.5% was heterozygous (G/A) and the remaining 7.5% was homozygous-mutant (A/A) at this locus. Furthermore, alternative allele frequencies within the best and low-performing cohorts of pigeons were 0.45 and 0.075 respectively. Furthermore, the Chi-Square association test was applied using PLINK data analysis toolset which showed a significant p-value of 1.381x10-4 with odds ratio (OR) of 10.09. Consequently, Pakistani pigeon population suggests a significant association of g.2582481G>A with racing performance similar to the other pigeon population of the world.

genetics↗