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Biology subjects

Kumar, C. S.

Publications and source records attributed to Kumar, C. S..

2 recordsLinked to original sources

Enabling Greenhouse Gas Emission Reduction while Improving Rice Yield with a Methane-Derived Microbial Biostimulant

Rice is a vital crop for food security and human nutrition, yet its cultivation produces [~]11% of total global anthropogenic methane (CH4) emissions - the second most important greenhouse gas (GHG). Modifications to rice management practice are necessary, both to increase yield and mitigate GHG emissions. We investigated the effect of a methane-derived microbial biostimulant on grain yield and GHG emissions from rice fields. Applications of microbial biostimulant resulted in significant enhancement of grain yield, even under different nitrogen management, with consistent reduction in GHG emissions. The study further outlines a potential mechanism for broad and diverse positive effects of microbial biostimulant on the paddy crop including in photosynthesis, tillering and panicle development. Observations from the study will help stakeholders and policy makers, leverage biological solutions like methane-derived microbial biostimulant to improve crop yield and address food security, while reducing anthropogenic CH4 emissions to meet targets agreed at COP26.

plant biology↗

Chimeric chikungunya virus-like particles with surface exposed SARS-CoV-2 RBD elicits potent immunogenic responses in mice.

The SARS-CoV-2 pandemic has reinforced efforts for developing effective vaccination strategy for existing and emerging viruses. Currently there are various vaccine technology available for treating viral diseases, however it is imperative to develop and investigate second-generation vaccines such as chimeric virus-like particles (chi-VLPs) vaccine for increased immunogenicity, ease of production and scalability to supplement the worldwide vaccine supply. Intriguingly, chi-VLPs expresses more than one antigenic epitope on its surface, hence it is expected to be a more effective vaccine candidate. Hereby, this study reports, a novel bivalent vaccine design of chimeric alphavirus coronavirus virus-like particles (ChAC-VLPs), displaying fusion glycoproteins of CHIKV and receptor binding domain (RBD) of SARS-CoV-2 on its surface. Uniqueness and versatility of ChAC-VLPs has been demonstrated via a various techniques including Western blot, Immunofluorescence, cryoEM, and dynamic light scattering (DLS). The multimeric epitope display of immunogenic antigens, i.e CHIKV envelop glycoprotein and SARS-CoV-2 RBD was validated by cell-based assays. ChAC-VLP immunized mice has shown substantial neutralization titres for CHIKV (PRNT50 of 1:25) from the serum collected after 2nd booster doses. Similarly, serum antibodies were detected for SARS-CoV2 RBD as observed by antigen specific ELISA and validated using surface plasmon resonance (SPR). SPR binding response was detected to be >200 RU for anti-RBD antibody in post-immunized mice sera. In conclusion, present study proposes ChAC-VLPs as a potential hybrid vaccine candidate for CHIKV and SARS-CoV-2 infection and contributes valuable insights in chi-VLPs domain.

molecular biology↗