York, NE, United States of America

Nathan James Beringer


Average Co-Inventor Count = 3.4

ph-index = 1


Company Filing History:


Years Active: 2025

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2 patents (USPTO):Explore Patents

Title: Nathan James Beringer: Innovator in Maize Hybrid Development

Introduction

Nathan James Beringer is a notable inventor based in York, NE (US), recognized for his contributions to agricultural innovations, particularly in maize hybrid development. With a total of two patents to his name, Beringer has made significant strides in enhancing maize varieties through advanced breeding techniques.

Latest Patents

Beringer's latest patents include the maize hybrid X08V941 and the maize inbred 1PUNG50. The patent for maize hybrid X08V941 describes a novel maize variety produced by crossing inbred maize varieties. It outlines methods for producing maize plants that contain traits introgressed into X08V941 through backcrossing or genetic transformation. This patent also covers the maize seed, plant, and plant parts produced from this variety, as well as methods for producing derived maize varieties. Similarly, the patent for maize inbred 1PUNG50 details a new maize variety and the methods for producing maize plants by crossing it with other maize plants. This patent also includes methods for producing plants with specific traits introgressed into 1PUNG50.

Career Highlights

Beringer is currently employed at Pioneer Hi-Bred International, Inc., a leading company in the field of agricultural biotechnology. His work focuses on developing innovative maize varieties that can improve crop yield and resilience.

Collaborations

Throughout his career, Beringer has collaborated with talented individuals such as Samantha Caroline Kaliff and Brandon Michael Wardyn, contributing to the advancement of maize hybrid technologies.

Conclusion

Nathan James Beringer stands out as an influential inventor in the agricultural sector, particularly in maize hybrid development. His patents reflect a commitment to enhancing crop varieties through innovative breeding methods.

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