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Biology subjects

Puri, D.

Publications and source records attributed to Puri, D..

5 recordsLinked to original sources

Poor biosafety and biosecurity practices and haphazard antibiotics usage in poultry farms in Nepal hindering antimicrobial stewardship

Poultry industry in Nepal has experienced remarkable growth in the last decade, but farm biosafety and biosecurity measures are often overlooked by farmers due to lack of knowledge or to save cost. As a result, farms often suffer from sporadic and regular outbreaks of many zoonotic diseases such as highly pathogenic avian influenza (HPAI), impacting production and creating public health challenges. Poor farm management practices, including overuse of antibiotics for prophylaxis and therapeutics, can complicate the spread of poultry diseases by creating and enhancing antimicrobial resistance (AMR) that is threating to both, poultry, and human health. We assessed biosafety, biosecurity risks and AMR stewardship in sixteen poultry farms located in four districts (Ramechhap, Nuwakot, Sindhupalchowk, and Kavre) surrounding densely populated Kathmandu valley. Risk assessment and AMR stewardship evaluation questionnaire were administered to formulate biosafety and biosecurity compliance matrix (BBCM). Risk assessment checklist assessed facility operations, personnel and standard operating procedures, water supply, cleaning and maintenance, rodent/pest control and farm record keeping. Oral and cloacal samples from the poultry were collected, pooled, and screened for eight poultry pathogens using Polymerase Chain Reaction (PCR) tests. Based on BBCM, we identified one of the farms in Sindhupalchowk (Farm 4) having the most (BBCM score= 67%) and a farm in Kavre (Farm 3) to having the least (BBCM score= 12%) biosafety and biosecurity compliance. Although most of the farms (61.6%) followed general poultry farming practices, only half had clean and well-maintained farms. Personal safety standard procedure compliance (BBCM score = 42.4%) and rodent control (BBCM score = 3.1%) were the biggest gaps. At least one of either bacterial or viral pathogen was detected in all farms. Mycoplasma gallisepticum was the most common disease detected in all but one farm, followed by Mycoplasma synoviae. Although more than half of the farmers considered AMR a threat, over 26% of them used antibiotics as a preventive measure and 81% did not consider withdrawal period for antibiotics prior to processing of their meat products. Additionally, antibiotics classified as Watch and Restrict by the WHO were frequently used by the farmers to treat bacterial infections in their farms. Lack of awareness and inadequate enforcement of regulations have exacerbated the risk of disease transmission in farms and compromised antimicrobial stewardship.

microbiology↗

Musleblind-1 regulates microtubule cytoskeleton in C. elegans mechanosensory neuron through tubulin mRNAs

Regulation of microtubule cytoskeleton is fundamental for the development and maintenance of neuronal architecture. Recent studies have shown that regulated RNA processing is also critical for the establishment and maintenance of neural circuits. In a genetic screen using mechanosensory neurons of C. elegans, we identified a mutation in muscleblind-1 as a suppressor of loss of kinesin-13 family microtubule destabilizing factor klp-7. Muscleblind-1(MBL-1) is an RNA-binding protein that regulates the splicing, localization, and stability of RNA. We found that mbl-1 is required cell-autonomously for axon growth and synapse formation in the posterior lateral microtubule (PLM) neuron. Loss of mbl-1 affects stability and plus-end-out organization of microtubules in the anterior process of PLM. These defects are also accompanied by abnormal axonal transport of the synaptic protein RAB-3 and loss of gentle touch sensation in mbl-1 mutant. Our data showed that mbl-1 is genetically epistatic to mec-7 ({beta} tubulin) and mec-12 (a tubulin) for axon growth. The immunoprecipitation of MBL-1 pulls down the mec-7, mec-12, and sad-1 mRNAs. Additionally, the mbl-1 mutants show a reduction in the level and stability of mec-7 and mec-12 transcripts. Independently, mbl-1 is epistatic to sad-1 for synapse formation. Our work elucidated a previously unknown link between RNA binding protein and cytoskeletal machinery for the development and maintenance of the nervous system.

neuroscience↗

Screening Avian Pathogens in Eggs from Commercial Hatcheries in Nepal- an Effective Poultry Disease Surveillance Tool

BackgroundCommercial hatcheries play an important role in the overall poultry value chain-providing small to large poultry farmers with day old chicks. Any outbreak in such hatcheries can spread diseases to other farms. Regular screening of major avian pathogens, along with strict bio-security measures, can prevent spread of diseases in hatcheries. Newcastle Disease Virus (NDV), Infectious Bronchitis Virus (IBV), Mycoplasma gallisepticum (MG), Mycoplasma synoviae (MS), Infectious Bursal Disease Virus (IBDV) and Influenza A Virus (IAV) are among the most prevalent poultry diseases which can be detected in egg albumin. MethodWe retrospectively (August 2020-August 2021, except October 2020) analyzed diagnostic results for six selected avian pathogens (NDV, IBV, MS, MG, IBDV and IAV) on eggs (n=4343) received from eleven major commercial poultry hatcheries located in the five adjoining districts of Kathmandu, Nepal. Albumin from 10% randomly selected eggs from each hatchery were tested for the six avian pathogens using multiplex PCR. ResultMajority (7/11, 64%) of the poultry hatcheries had at least one of the six pathogens present. We detected at least one avian pathogen in nine out of eleven months (82%) of screening. Except for IBDV, we found one or more of the other major avian pathogens-Influenza A (IAV) (n=4 times) and Mycoplasma gallisepticum (MG) (n=4 times) were detected the most, followed by Newcastle Virus (NDV) (n=3 times). Infectious bronchitis virus (IBV) were detected twice, and Mycoplasma synoviae (MS) was detected once. ConclusionIn a resource strapped country like Nepal, poultry disease outbreak investigation in particular and surveillance in general are challenging. Meanwhile, poultry production is highly impacted by disease outbreaks often triggered by poor bio-security and lack of pathogen screening practices. Our molecular screening tests have picked up major poultry pathogens present throughout the year in eggs collected from hatcheries. Influenza A was detected at 4 different incidences throughout the year, which is of concern to both human and animal health. Quick systematic screening of eggs at key distribution points (hatcheries) for major avian pathogens is an effective surveillance tool for early disease detection and containment of outbreaks.

microbiology↗

Autophagy-cell death balance is maintained by Polycomb-mediated regulation during stem cell differentiation

Autophagy is a conserved cytoprotective process, aberrations in which, lead to numerous degenerative disorders. While the cytoplasmic components of autophagy have been extensively studied, the epigenetic regulation of autophagy genes, especially in stem cells, is less understood. Deciphering the epigenetic regulation of autophagy genes becomes increasingly relevant given the therapeutic benefits of small-molecule epigenetic inhibitors in novel treatment modalities. We observe that, during retinoic acid-mediated differentiation of mouse embryonic stem cells (mESCs), autophagy is induced, and identify the Polycomb enzyme EZH2 as a regulator of this process. In mESCs, EZH2 represses several autophagy genes including the autophagy regulator Dram1. EZH2 facilitates the formation of a bivalent chromatin domain at the Dram1 promoter, which allows the expression of the gene and induction of autophagy during differentiation, while still retaining the repressive H3K27me3 mark. EZH2 inhibition leads to loss of the bivalent domain, and a consequential "hyper- expression" of Dram1, with extensive cell death. This study shows that Polycomb group proteins help maintain an autophagy-cell death balance during stem cell differentiation, in part, by regulating the expression of the Dram1 gene.

cell biology↗

Foxd3 controls heterochromatin-mediated silencing of repeat elements in mouse embryonic stem cells and represses the 2-cell transcription program

Repeat element transcription plays a vital role in early embryonic development. Expression of repeats such as MERVL characterises mouse embryos at the 2-cell stage, and defines a 2-cell-like cell (2CLC) population in a mouse embryonic stem cell culture. Repeat element sequences contain binding sites for numerous transcription factors. We identify the forkhead domain transcription factor FOXD3 as a regulator of repeat element transcription in mouse embryonic stem cells. FOXD3 binds to and recruits the histone methyltransferase SUV39H1 to MERVL and major satellite repeats, consequentially repressing the transcription of these repeats by the establishment of the H3K9me3 heterochromatin modification. Notably, depletion of FOXD3 leads to the de-repression of MERVL and major satellite repeats as well as a subset of genes expressed in the 2-cell state, shifting the balance between the stem cell and 2-cell like population in culture. Thus, FOXD3 acts as a negative regulator of repeat transcription, ascribing a novel function to this transcription factor.

developmental biology↗