Freising, Germany

Timothy J Golds


Average Co-Inventor Count = 4.8

ph-index = 1


Company Filing History:


Years Active: 2008-2009

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2 patents (USPTO):Explore Patents

Title: Innovations of Timothy J Golds in Plant Biotechnology

Introduction

Timothy J Golds is a notable inventor in the field of plant biotechnology, particularly known for his work on plastid transformation and transgenic plants. Based in Freising, Germany, he has made significant contributions to the development of processes that enhance plant genetic engineering.

Latest Patents

Timothy J Golds holds 2 patents that focus on innovative methods for transforming plant plastids. His first patent, titled "Plastid transformation using modular vectors," outlines a process for generating transgenic plants or plant cells transformed on their plastome. This invention involves introducing two DNA molecules into plant plastids, which allows for the stable integration of sequences of interest into the plastome. The second patent, "Process of generating transplastomic plants or plant cells devoid of a selection marker," describes a method for creating transgenic plants that do not retain a selection marker after transformation. This process includes several steps, such as transforming plastids with a DNA sequence and allowing for the loss of the selection marker under selective pressure.

Career Highlights

Throughout his career, Timothy J Golds has worked with companies such as Icon Genetics GmbH and Icon Genetics AG. His expertise in plant biotechnology has positioned him as a key figure in the development of advanced genetic engineering techniques.

Collaborations

Timothy has collaborated with notable professionals in his field, including Hans-Ulrich Koop and Christian Eibl. These collaborations have furthered his research and contributed to the advancement of plant biotechnology.

Conclusion

Timothy J Golds continues to be a significant contributor to the field of plant biotechnology through his innovative patents and collaborations. His work has the potential to impact agricultural practices and enhance plant genetic engineering.

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