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Sreeram Gangappa Profile
Sreeram Gangappa

@Plant_EnSiGnLab

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883
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296

Assistant Professor@IISER Kolkata, India #Plant Biologist, #EnSiGn_Lab, #Temperature and #light signaling integration Former Postdoc @JohnInnesCentre

West Bengal, India
Joined January 2010
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@Plant_EnSiGnLab
Sreeram Gangappa
5 days
We @Plant_EnSiGnLab at @iiserkol are delighted to share our latest research in @ThePlantJournal .Congratulations to @bidhancmalakar, who led from the front, and to co-authors Rajanesh @rajaneshchandra and Vishmita @VishmitaSethi for key contributions.
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@Plant_EnSiGnLab
Sreeram Gangappa
5 days
Thanks to funding from DBT @DBTIndia, SERB.@serbonline, ANRF @ANRFIndia and IISER Kolkata @iiserkol for the funding.
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@Plant_EnSiGnLab
Sreeram Gangappa
27 days
RT @NewPhyt: PIF3 promotes thermosensory growth in Arabidopsis by enhancing PIF4 function. Das et al. @Plant_EnSiGnLab @iiserkol. 📖 https:/….
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@Plant_EnSiGnLab
Sreeram Gangappa
1 month
Thanks DBT @DBTIndia, ANRF @ANRFIndia, SERB @serbonline and IISER Kolkata @iiserkol for the funding.
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@Plant_EnSiGnLab
Sreeram Gangappa
1 month
Congratulations to all the authors, especially Sreya Das @SreyaDas1994, for leading the project, and all the co-authors for their valuable contributions. Thanks to Prof. Mukesh Jain @JNU_official_50 for the wonderful collaboration.
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@Plant_EnSiGnLab
Sreeram Gangappa
2 months
Sincere thanks to funding from DBT@DBTIndia, SERB @serbonline, ANRF @ANRFIndia and IISER Kolkata @iiserkol for the funding.
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@Plant_EnSiGnLab
Sreeram Gangappa
2 months
Congratulations to all the authors, especially to @bidhancmalakar, who led from the front. All the co-authors Shivani Singh, @1201vinny, Rajanesh Chandramohan, @DrUpadhyayaGour and Dr @VishmitaSethi, who have contributed significantly at different stages of the study.
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@Plant_EnSiGnLab
Sreeram Gangappa
2 months
We @Plant_EnSiGnLab are delighted to share our new research publication in @MPlantPCom ."BBX24/BBX25 antagonizes the function of thermosensor ELF3 to promote PIF4-mediated thermomorphogenesis in Arabidopsis".Plant Communications
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www.cell.com
This study identifies BBX24 and BBX25 as novel components of the thermosensory pathway that promote PIF4-mediated growth at elevated temperatures by antagonizing ELF3, a core evening complex compon...
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@Plant_EnSiGnLab
Sreeram Gangappa
2 months
Thank you, everyone.
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@Plant_EnSiGnLab
Sreeram Gangappa
2 months
We @Plant_EnSiGnLab are happy to share a collaborative research article with Prof. Mohit Prasad's group in @JCellBiol. Congratulations to Mohit Prasad and all the authors @ghoshgaurab2011,.@Devyan30487373, Abhrajyoti Nandi and Souvik De.
rupress.org
We elucidate the role of ecdysone signaling in orchestrating the removal of nurse cells by transforming the epithelial follicle cells to phagocytic fate du
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@Plant_EnSiGnLab
Sreeram Gangappa
2 months
RT @NewPhyt: RDUF1/RDUF2 positively regulate seedling photomorphogenesis in Arabidopsis by enhancing HY5 function. Modak et al. @Plant_EnSi….
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@Plant_EnSiGnLab
Sreeram Gangappa
2 months
Thanks to funding from DBT @DBTIndia, SERB @serbonline, ANRF @ANRFIndia and IISER Kolkata @iiserkol for the funding.
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@Plant_EnSiGnLab
Sreeram Gangappa
2 months
Congratulations to all the authors, especially Annayasa @AnnayasaModak, for leading the project, which is her PhD thesis work. Also, congratulations to co-authors Shivani, Chirag @chiragsinghal71, Gouranga @DrUpadhyayaGour and Jinia @JiniaC_official for their key contributions.
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@Plant_EnSiGnLab
Sreeram Gangappa
2 months
We @Plant_EnSiGnLab are delighted to share our new research article in @NewPhyt. The E3 ubiquitin ligases RING DOMAIN OF UNKNOWN FUNCTION 1117 1 (RDUF1) and RDUF2 control seedling photomorphogenesis in Arabidopsis - Modak et al., New Phytologist -
nph.onlinelibrary.wiley.com
The CONSTITUTIVE PHOTOMORPHOGENIC1 (COP1)-ELONGATED HYPOCOTYL5 (HY5) circuit controls plant seedling photomorphogenesis. Regulation of HY5 protein levels is key for optimal photomorphogenic growth....
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@Plant_EnSiGnLab
Sreeram Gangappa
3 months
RT @Rodrigo_S_Reis: It's tomorrow!.
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@Plant_EnSiGnLab
Sreeram Gangappa
5 months
Thank you @iiserkol, @DBTIndia and @serb for the funding.
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@Plant_EnSiGnLab
Sreeram Gangappa
5 months
It's a collaborative effort from our lab @Plant_EnSiGnLab and Prof. Javier Botto's lab in Argentina. Congratulations to all the authors, Bidhan @bidhancmalakar, a graduate student; and Postdocs, Dr. Vishmita Sethi @VishmitaSethi and Dr. Gouranga Upadhyaya @DrUpadhyayaGour.
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@Plant_EnSiGnLab
Sreeram Gangappa
5 months
Delighted to share our new research article. The COP1W467 tryptophan residue in the WD40 domain is essential for light‐ and temperature‐mediated hypocotyl growth and flowering in Arabidopsis - Malakar - 2025 - The Plant Journal - Wiley Online Library
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onlinelibrary.wiley.com
The W467 amino acid residue in the WD40 repeat domain of COP1 is essential and sufficient to promote warm ambient temperature- and shade-avoidance hypocotyl growth by interacting and degrading HY5....
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@Plant_EnSiGnLab
Sreeram Gangappa
5 months
Congratulations, VIkas @1201vinny and Sreya @SreyaDas1994, for your efforts. Thank you, @iiserkol, @DBTIndia and @serbonline, for the funding.
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