Sugar Land, TX, United States of America

Nanyen Chou

USPTO Granted Patents = 2 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2024

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2 patents (USPTO):Explore Patents

Title: Nanyen Chou – Innovator in Rice Genetics

Introduction

Nanyen Chou, based in Sugar Land, TX, is a notable inventor recognized for her contributions to rice genetics. With a total of two patents to her name, she has significantly advanced the field of agricultural biotechnology.

Latest Patents

Among Nanyen Chou's latest innovations is the inbred rice line designated DG263L. This patent discloses various embodiments, including seeds, plants, and plant parts associated with DG263L. The patent outlines methods for producing rice plants through crossing DG263L with itself or with other rice varieties. Additionally, it encompasses techniques for imparting one or more genes or transgenes into the genetic material of rice plants, alongside the transgenic rice plants and plant parts that result from these methods. Moreover, the patent addresses rice cultivars and breeding cultivars, as well as methods for producing other rice cultivars and lines derived from DG263L. Lastly, it highlights the hybrid rice seeds, plants, and parts that emerge from crossing DG263L with alternative rice cultivars.

Career Highlights

Nanyen Chou has had a distinguished career in the agricultural sector, notably with Nutrien Ag Solutions, Inc. Her work has focused on the development of innovative solutions in rice breeding and genetics, enhancing the productivity and sustainability of rice cultivation.

Collaborations

Throughout her career, Nanyen has collaborated with esteemed professionals in the field, including Qiming Shao and Kirk Douglas Johnson. These partnerships have played a significant role in advancing research and development in rice genetics.

Conclusion

Nanyen Chou stands out as a pioneering inventor in rice genetics, with significant contributions that continue to influence agricultural practices. Her work in developing the inbred rice line DG263L represents a major advancement in the field, demonstrating her commitment to innovation and agricultural sustainability.

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