Hillsborough, NC, United States of America

Devin O'Connor

USPTO Granted Patents = 2 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2024-2025

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2 patents (USPTO):Explore Patents

Title: Devin O'Connor: Innovator in Plant Genetic Modification

Introduction

Devin O'Connor is a notable inventor based in Hillsborough, NC (US), recognized for his contributions to the field of plant genetic modification. With a focus on improving agricultural yield traits, O'Connor has developed innovative methods that have the potential to significantly enhance crop production.

Latest Patents

O'Connor holds 2 patents that showcase his expertise in plant genetics. His first patent, titled "Modification of brassinosteroid receptor genes to improve yield traits," involves compositions and methods for modifying Brassinosteroid Insensitive-1 (BRI1) genes in plants. This invention introduces mutations in the kinase domain of the BRI1 gene, aiming to improve yield traits. The patent also covers a mutated BRI1 gene, a modified BRI1 polypeptide, and plants that exhibit increased yield traits as a result of these modifications.

His second patent, "Methods for controlling meristem size for crop improvement," focuses on modifying FACIATED EAR2 (FEA2) genes in plants to alter meristem size. This invention aims to produce plants with an increased kernel row number, thereby enhancing crop yield.

Career Highlights

O'Connor is currently employed at Pairwise Plants Services, Inc., where he continues to innovate in the field of plant genetics. His work is pivotal in developing sustainable agricultural practices that can meet the growing food demands of the global population.

Collaborations

O'Connor collaborates with talented individuals such as Dale Karlson and Nathaniel Graham, contributing to a dynamic team focused on advancing agricultural technology.

Conclusion

Devin O'Connor's innovative work in plant genetic modification is paving the way for improved agricultural practices. His patents reflect a commitment to enhancing crop yield traits, which is essential for addressing food security challenges.

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