Namrata Jaiswal (@namrata_biolab) 's Twitter Profile
Namrata Jaiswal

@namrata_biolab

Research Molecular Biologist
USDA-ARS

ID: 1414791966072745985

calendar_today13-07-2021 03:41:20

30 Tweet

61 Followers

98 Following

Sandra Gomez (@sandrigutierrez) 's Twitter Profile Photo

Happy to share part of my thesis showing different transcriptome reprogramming responses of Z. tritici during three types of interactions and early-expressed candidate effectors. Thanks to Helm Lab @Namrata60568115 and to all the co-authors! biorxiv.org/content/10.110…

USWBSI (@uswbsi) 's Twitter Profile Photo

Namrat Jaiswal, USDA-ARS "Identification and Functional Characterization of a Candidate Effector Protease from Fusarium Graminearum" #nfhbforum23

Namrat Jaiswal, USDA-ARS
"Identification and Functional Characterization of a Candidate Effector Protease from Fusarium Graminearum" #nfhbforum23
bioRxiv Plant Bio (@biorxiv_plants) 's Twitter Profile Photo

Genome-informed trophic classification and functional characterization of virulence proteins from the maize tar spot pathogen ... biorxiv.org/cgi/content/sh… #biorxiv_plants

Namrata Jaiswal (@namrata_biolab) 's Twitter Profile Photo

Excited about another publication in 2024 showing higher level of resistance in Tomato against Tomato Brown Rugose Fruit Virus: mdpi.com/2223-7747/13/5…

Phytopathology® (@phytopathologyj) 's Twitter Profile Photo

Phyllachora maydis is a major threat to maize yields in the United States. Denise Caldwell et al. uncover how the pathogen colonizes and spreads within maize leaves. Denise Caldwell Camila Rocco da Silva Anjali Iyer-Pascuzzi Martin Chilvers John Bonkowski Darcy Telenko Learn more > doi.org/10.1094/PHYTO-…

Phyllachora maydis is a major threat to maize yields in the United States. Denise Caldwell et al. uncover how the pathogen colonizes and spreads within maize leaves. <a href="/caldwed/">Denise Caldwell</a> <a href="/roccodasilva_c/">Camila Rocco da Silva</a> <a href="/Anjali_IP/">Anjali Iyer-Pascuzzi</a> <a href="/MartinChilvers1/">Martin Chilvers</a> <a href="/PlantDocBonk/">John Bonkowski</a> <a href="/DTelenko/">Darcy Telenko</a> Learn more &gt; doi.org/10.1094/PHYTO-…
bioRxiv Plant Bio (@biorxiv_plants) 's Twitter Profile Photo

The Fusarium graminearum effector protease FgTPP1 suppresses immune responses and facilitates Fusarium Head Blight Disease biorxiv.org/cgi/content/sh… #biorxiv_plants

Martin Darino (@darinomartin) 's Twitter Profile Photo

Check this story about a Fusarium graminearum effector with a predicted protease activity that localises in chloroplast. Many thanks to all the authors including Namrata Jaiswal, Reynaldi Darma, Helm Lab, @RogerInnes1 and Kim Hammond-Kosack. biorxiv.org/content/10.110…

bioRxiv Plant Bio (@biorxiv_plants) 's Twitter Profile Photo

Natural variation in tetrapyrrole biosynthetic enzymes and their regulation modify the chlorophyll mutant Oy1-N1989 biorxiv.org/cgi/content/sh… #biorxiv_plants

USWBSI (@uswbsi) 's Twitter Profile Photo

Check out this newly published article partially supported by the USWBSI. Congrats to the authors! doi.org/10.1094/MPMI-0…

Namrata Jaiswal (@namrata_biolab) 's Twitter Profile Photo

GCN5‐related histone acetyltransferase HOOKLESS2 regulates fungal resistance and growth in tomato - Jaiswal - New Phytologist - Wiley Online Library nph.onlinelibrary.wiley.com/doi/full/10.11…

New Phytologist (@newphyt) 's Twitter Profile Photo

GCN5-related histone acetyltransferase HOOKLESS2 regulates fungal resistance and growth in #tomato 🍅 Namrata Jaiswal, et al. 📖 nph.onlinelibrary.wiley.com/doi/10.1111/np…

GCN5-related histone acetyltransferase HOOKLESS2 regulates fungal resistance and growth in #tomato 🍅

Namrata Jaiswal, et al.

📖 nph.onlinelibrary.wiley.com/doi/10.1111/np…