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Biology subjects

Hassan, J.

Publications and source records attributed to Hassan, J..

5 recordsLinked to original sources

Tomato Response Evaluation through Fertilization and PGRs application Under Temperature Differentiation in late Winter

This study evaluated the exogenous application of PGRs substitute chemical fertilization without compromising the growth and yield of tomato in fluctuated day-night temperature and humidity stressed late winter. Two-factor experiment comprising chemical fertilizers at 100, 110, 90 and 80 % of recommended doses besides control and PGRs of GA3; NAA, 4-CPA and SA @ 50 ppm including control was conducted where treatments were assigned in triplicates. Results revealed no significant variation among the fertilizer doses (80% to 110% of recommendation) regarding growth and yield contributing traits while among the PGRs, GA3 @ 50 ppm produced maximum number of flower clusters plant-1 (16.85), flowers (8.80) and fruits (5.79) cluster-1, single fruit weight (67.83 g) and fruit yield (6.61 kg plant-1) of tomato that was statistically identical with the findings of SA. But significant reduction in yield was noted in NAA and 4-CPA (1.20 kg and 1.21 kg plant-1, respectively). Interestingly, GA3 and SA in combination with any doses of the studied fertilizers maximize the tomato morphological and reproductive traits while fertilizer plus NAA and 4-CPA interaction gave the inferior results. Further, correlation matrix and PCA findings revealed that five fertilizer doses have no distinctiveness whereas GA3 and SA has distinct position than other PGRs with the maximum dependent variables those were contributed positively in the total variations. The study findings suggested that 20% fertilizer requirement could be reduced with the substitution of GA3 and SA @ 50 ppm for successful cultivation of tomato in late winter having the extreme environmental issues.

physiology↗

Genomic diversity of Streptococcus uberis isolated from clinical mastitis of cattle in selected areas of Bangladesh

Streptococci are the major etiology in mastitis, a cause of huge economic losses in the dairy industries. Streptococcus (S.) agalactiae, S. dysagalactiae and S. uberis are mostly encountered in bovine mastitis; however, data on the diversity and characteristics of Streptococcus in clinical mastitis of cattle in Bangladesh is lacking. Thus, the present study was aimed to determine the diversity and antimicrobial resistance pattern of Streptococcus spp. isolated from clinical mastitis of cattle reared in Bangladesh. A total of 105 milk samples comprising eighty (80) from cattle with clinical mastitis (CCM) and twenty-five (25) from apparently healthy cattle (AHC) in four prominent dairy farms and one dairy community were purposively collected and examined in this study. Milk samples were enriched in Luria Bertani broth (LB) and Streptococcus spp. was isolated on Modified Edwards Medium and identified by 16S rRNA gene sequencing. Among eighty (80) clinical samples, eighteen (18) were positive for Streptococcus spp. while none of the milk from AHC revealed Streptococcus by cultural and molecular examination. Sequencing and phylogenetic analysis identified 55.6%, 33.3%, 5.6% and 5.6% of the Streptococcus isolates as S. uberis, S. agalactiae, S. hyovaginalis and S. urinalis, respectively. Antibiotic sensitivity testing with antimicrobials commonly used to treat clinical mastitis revealed 100%, 100%, and 30% of the S. agalactiae, S. hyovaginalis, and S. uberis as multidrug-resistant, respectively. Molecular characterization through whole genome sequencing of five (5) S. uberis isolates identified at least two novel ST types of S. uberis circulating in the study areas with one ST (4/5 isolates) clustered with the isolates from China, India and Thailand, and the other (1/5) with UK, Ireland and Australia. Pan-genome analysis and phylogeny of the core genome sequences also clustered the isolates into two sub-clusters, indicating the presence of at least two different subtypes of S. uberis in the study area. On virulence profiling, all the isolates of this study were found to harbor at least 35 virulence and putative virulence genes probably associated with intramammary infection (IMI) indicating all the S. uberis isolated in this study as potential pathogen. From the overall findings it was evident that Strepococcus occurring in bovine mastitis are diverse and S. uberis genome carries an array of putative virulence factors which need to be investigated genotypically and phenotypically to identify a specific trait or determinant governing the virulence and fitness of this bacterium. Moreover, Streptococcus isolated in this study carried multidrug resistance which needs careful consideration during the selection of a treatment regimen for mastitis.

microbiology↗

Temporal profiling of CD4 T-cell activation and differentiation upon SARS-CoV-2 spike protein immunisation

CD4 T-cells require T-cell receptor (TCR) signalling for their activation and differentiation. Foxp3+ regulatory T-cells (Treg) are dependent on TCR signals for their differentiation and suppressive function. However, it is not fully known how TCR signalling controls the differentiation of polyclonal CD4 T-cells upon antigen recognition at the single-cell level in vivo. In this study, using Nr4a3-Tocky (Timer-of-cell-kinetics-and-activity), which analyses temporal changes of antigen-reactive T-cells following TCR signalling, we investigated T-cell response to Spike protein fragments (S1a, S1b, S2a, and S2b) upon immunisation. We show that S1a and S2a induced the differentiation of PD1hiCXCR5+ T follicular helper (Tfh) cells, which is related to CD4 T-cell immunogenicity. In contrast, S1b induced CD25hiGITRhiPD-1int Treg, which intermittently received TCR signalling. Using Foxp3-Tocky, which analyses Foxp3 transcriptional dynamics, the S1b-reactive Treg sustained Foxp3 transcription over time, which is a hallmark of activated Treg. Foxp3 fate-mapping showed that the S1b-reactive Treg were derived not from pre-existing thymic Treg, suggesting Foxp3 induction in non-Treg cells. Thus, the current study reveals temporally dynamic differentiation of CD4 T-cells and Treg upon immunisation in the polyclonal TCR repertoire.

immunology↗

Single-cell level temporal profiling of tumour-reactive T cells under immune checkpoint blockade

The blockade of the immune checkpoints PD-1 and CTLA-4 enhances T cell response. However, it is largely unknown how antigen-reactive T cells regulate their checkpoint expression in vivo and whether and how the checkpoint blockade can change activation dynamics of tumour-reactive T cells. To address this, here we used Nr4a3-Timer-of-cell-kinetics-and-activity (Tocky), which allows analysis of temporal changes of activated T cells following TCR signalling in vivo. By analysing melanoma-bearing Nr4a3 Tocky mice, we elucidate hidden dynamics of tumour-reactive T cells in the steady-state. Checkpoint blockade depleted highly activated effector Treg, while promoting unique effector T cell populations, and thus differentially modulating activation of tumour-reactive T cell populations. Furthermore, multidimensional analysis and seamless analysis of Tocky and scRNA-seq revealed a full spectrum of T cell dynamics in response to tumour burden and treatment with checkpoint blockade. Lastly, we propose a rational design of combinatorial therapy to further enhance T cell activities.

immunology↗

Genomic characteristics, virulence and antimicrobial resistance in avian pathogenic Escherichia coli MTR_BAU02 strain isolated from layer farms in Bangladesh

BackgroundColibacillosis, caused by avian pathogenic Escherichia coli (APEC), is one of the most significant infectious diseases affecting poultry worldwide. APEC is one of the leading causes of mortality and morbidity associated with significant economic losses in the poultry industry. ObjectiveThis study was aimed to determine the genomic diversity, virulence factor genes (VFGs) and antimicrobial resistance (AMR) genes in the APEC isolated from layer chickens using whole-genome sequencing (WGS). MethodAPEC MTR_BAU02 strain was isolated from the sick and dead birds. Genomic DNA from APEC MTR_BAU02 strain was extracted using commercial DNA extraction kit, WGS libraries were prepared using the Nextera DNA Flex Library Prep Kit, and finally, paired-end (2 x 250) WGS performed using Illumina MiSeq sequencer. ResultsThe genome size of strain APEC MTR_BAU02 is 4,924,680 bp with a GC content of 51.1% and 4,681 protein-coding sequences. Among the annotated WGS reads, 99.71% reads mapped to Enterobacteriaceae genomes. Based on the phylogenetic analysis of the APEC MTR_BAU02 genome and 99 reference genomes of E. coli, the APEC MTR_BAU02 genome showed sequence similarities with enterotoxigenic E. coli strains isolated from infections of different clinical severity. Metabolic functional annotations detected 380 SEED subsystems including genes coding for carbohydrate metabolism (17.34%), amino acid and derivatives (14.20%), protein metabolism (10.64%), cofactors, vitamins, prosthetic groups and pigments (7.49%), respiration (4.72%), membrane transport (4.49%), stress response (4.47%), motility and chemotaxis (4.46%), and virulence, disease and defense (2.22%). We also detected 92 VFGs and 122 AMR genes in the APEC MTR_BAU02 strain. ConclusionAssessment of these genomic features with functional genomic validation in commonly occurring serogroups of APEC will increase our understanding of the molecular pathogenesis, pave the way to early diagnosis and more effective control of colibacillosis, and improved animal welfare.

genomics↗