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17,828 grants matching crispr

Core E: Mass Spectrometry Core

$293,804
Nevan J Krogan · Weill Medical Coll Of Cornell Univ · U54 · FY2019 · NS

Functions and Mechanisms of Helicases and G-Quadruplex Nucleic Acids

$293,673
Kevin D Raney · Univ Of Arkansas For Med Scis · R35 · FY2017 · GM

Computational Methods for Mapping Genetic Interactions in Human Cells

$293,583
Chad L Myers · University Of Minnesota · R01 · FY2020 · HG

IN GRAPEVINE, CULTURAL ASPECTS, VARIETAL TRADITIONS, AND THE NECESSITY TO MAINTAIN GENETIC INTEGRITY OF CLONES, LIMIT THE APPLICABILITY OF GENE EDITING TECHNOLOGY USING TRADITIONAL TECHNIQUES OF PLANT GENETIC ENGINEERING THAT REQUIRES INSERTION OF FOREIGN DNA AND THEREFORE CONSIDERED GENETICALLY MODIFIED ORGANISMS. THIS LAST ASPECT MAKES DIFFICULT THE TRANSFER OF TECHNOLOGY TO THE GRAPE INDUSTRY, WHICH OTHERWISE CONSIDERS GENE EDITING AS A PREFERRED TOOL FOR RAPID INTRODUCTION OF NEW TRAITS. ONCE ESTABLISHED, THE TRANSGENE-FREE METHODOLOGY PROPOSED IN THE CURRENT PROJECT WILL OFFER NEW OPPORTUNITIES FOR DELIVERING NEW GENETIC MATERIALS MORE AMENABLE TO ADAPT TO RAPIDLY EVOLVING SOCIETAL AND CLIMATIC CONDITIONS. THIS OUTCOME WILL ALSO CREATE THE POTENTIAL FOR THE DEVELOPMENT OF INNOVATIVE NICHES IN THE CURRENT MARKET. THE METHODOLOGY TO BE DEVELOPED IS VERSATILE ENOUGH TO EXPAND THE SCIENTIFIC APPROACH TO OTHER MAJOR CROPS. TO CIRCUMVENT THE MAJOR HURDLE OF DNA-INTEGRATION VIA TRADITIONAL PLANT GENETIC ENGINEERING AND THEREBY LABELLED AS GMO, THE PIS PROPOSE TO FACILITATE THE DELIVERY OF CARGO MOLECULES LIKE THE GENE EDITING PROTEIN (CRISPR-CAS9) USING A SERIES OF MOLECULES THAT FACILITATE THE ENTRY OF GENE EDITING PROTEIN INTO PLANT CELLS. THE ULTIMATE GOALS OF THE PROJECT ARE TO DEVELOP AN INNOVATIVE METHODOLOGY FOR PLANT GENE EDITING THAT GENERATE TRANSGENE-FREE EDITED GRAPEVINE MATERIAL, WHICH UNDER THE CURRENT USDA REGULATIONS WILL BE CONSIDERED A NON-GMO PLANT MATERIAL. THE INTRODUCTION OF AGRICULTURALLY IMPORTANT TRAITS SUCH AS RESISTANCE TO MILDEW AND BOTRYTIS RELATED DISEASES CAN BE ENVISIONED WHILE MAINTAINING VARIETY AND CLONAL DIVERSITY FEATURES OF THE GRAPEVINE CROP. THE GENERAL IMPACT OF THE PROJECT WILL ADVANCE GRAPEVINE SCIENTIFIC RESEARCH IN THE ACADEMY AND PRIVATE SECTORS BY I) CONTRIBUTING TO THE DEVELOPMENT TO A NEW RESEARCH NICHE IN GRAPEVINE GENE EDITING RESEARCH, A PRIORITY FOR THE NATIONAL GRAPE RESEARCH ALLIANCE, II) DEVELOPING A SUSTAINABLE AND ATTRACTIVE CONTINUUM ON THE RESEARCH ON THE CURRENT MODEL (GRAPEVINE), III) EXTENDING THE CURRENT APPROACH TO OTHER CROPS, IV) STRENGTHENING COLLABORATIVE EFFORTS WITH INTERNATIONAL COLLABORATORS FOR DEVELOPING NEW PROJECTS THAT ADDRESS WORLDWIDE GRAPEVINE INDUSTRY NEEDS, AND V) FACILITATING THE TECHNOLOGY TRANSFER IF REQUESTED TO THE INDUSTRY PARTNER AND THE TRAINING OF RESEARCHERS WORKING IN THE PRIVATE SECTOR.

$293,565
Oregon State University · · FY2021 · National Institute of Food and Agriculture

Enzymatic Site-Specific Labeling of RNA for Affinity Isolation

$293,460
Neal Krishna Devaraj · University Of California, San Diego · R01 · FY2018 · GM

Developing novel Type 1 CRISPR tools for gene editing therapy

$293,319
Zhonggang Hou · Genetobe Inc. · R41 · FY2024 · GM

Integrated Genomics Shared Resource

$293,312
Martina L Veigl · Case Western Reserve University · P30 · FY2021 · CA

Continued Development and Maintenance of the UltraScan Software

$293,074
Emre H. Brookes · University Of Montana · R01 · FY2021 · GM

Continued Development and Maintenance of the UltraScan Software

$293,074
Emre H. Brookes · University Of Montana · R01 · FY2022 · GM

Continued Development and Maintenance of the UltraScan Software

$293,074
Emre H. Brookes · University Of Montana · R01 · FY2020 · GM

Continued Development and Maintenance of the UltraScan Software

$293,074
Emre H. Brookes · University Of Montana · R01 · FY2023 · GM

"Project 1" KSHV short and long noncoding RNAs and alteration of host IncRNA expression

$293,029
Rolf F Renne · University Of Florida · P01 · FY2022 · CA

"Project 1" KSHV short and long noncoding RNAs and alteration of host IncRNA expression

$292,992
Rolf F Renne · University Of Florida · P01 · FY2023 · CA

Project 2: Regulation of Rotavirus Host Range, Neutralization, and M cell Interactions in Enteric Biomimetics

$292,950
Harry Bernard Greenberg · Stanford University · U19 · FY2022 · AI

Integrated Genomics Shared Resource

$292,542
Martina L Veigl · Case Western Reserve University · P30 · FY2018 · CA

Identification of novel Toxoplasma genes involved in host-parasite interactions

$292,500
Sebastian Lourido · Whitehead Institute For Biomedical Res · R21 · FY2016 · AI

Development of FRESH (Fast Rescue Employing Self-Helper virus) - a rapid, generalizable method to rescue infectious virus from noninfectious genomic material

$292,500
Sanjay Vashee · J. Craig Venter Institute, Inc. · R21 · FY2021 · AI

Enzymatic Site-Specific Labeling of RNA for Affinity Isolation

$292,387
Neal Krishna Devaraj · University Of California, San Diego · R01 · FY2019 · GM

Exploiting myeloma proteome remodeling to extend proteasome inhibitor efficacy

$292,288
Arun P. Wiita · University Of California, San Francisco · R01 · FY2020 · CA

Exploiting myeloma proteome remodeling to extend proteasome inhibitor efficacy

$292,288
Arun P. Wiita · University Of California, San Francisco · R01 · FY2018 · CA

Integrated Genomics Shared Resource

$292,264
Martina L Veigl · Case Western Reserve University · P30 · FY2022 · CA

A Phase 1 Adaptive Dose Escalation Study of Mycophenolate Mofetil in Combination with Temozolomide for Patients with Newly Diagnosed Glioblastoma

$291,881
Atique U. Ahmed · Northwestern University At Chicago · P50 · FY2023 · CA

FSHD Drug Discovery

$291,634
Charles P Emerson · Univ Of Massachusetts Med Sch Worcester · P50 · FY2019 · HD

Advancing CRISPR-Cas Technologies for the Discovery and Characterization of Novel Fungal Natural Products

$291,621
Xue Gao · Rice University · R35 · FY2023 · GM

Bioanalytic Core

$291,606
Mar M Sanchez · Emory University · P50 · FY2019 · MH