This inventor holds 1 USPTO granted patent. Top assignee: Dna Plant Technology Corporation. Active years: 1993.
Company Filing History:
Years Active: 1993
Title: Innovations of James A Lauritis in Plant Biotechnology
Introduction
James A Lauritis is a notable inventor based in Maple Shade, NJ (US). He has made significant contributions to the field of plant biotechnology, particularly in the area of genetically transformed pepper plants. His innovative work has implications for agricultural practices and plant genetics.
Latest Patents
Lauritis holds a patent for "Genetically transformed pepper plants and methods for their production." This patent describes a method where pepper explant material is transformed by incubation with Agrobacterium cells carrying an exogenous DNA sequence. The transformation process involves using young embryonic cotyledon or young expanded cotyledon as the source of explant material. Transformed shoots are induced directly in the explant material, allowing for the regeneration of whole transformed pepper plants. The exogenous DNA is stably incorporated into the chromosomes of the regenerated plants, enabling them to express the genes encoded by the DNA sequence. Additionally, the patent outlines an improved method for regenerating pepper plants without transformation and includes a method for producing tetraploids.
Career Highlights
James A Lauritis is associated with Dna Plant Technology Corporation, where he continues to advance research in plant biotechnology. His work has led to innovative methods that enhance the efficiency of plant transformation and regeneration.
Collaborations
Lauritis has collaborated with notable colleagues such as Dean E Engler and Assaf Z Guri. Their combined expertise has contributed to the success of various projects within the field of plant biotechnology.
Conclusion
James A Lauritis is a pioneering inventor whose work in genetically transformed pepper plants has the potential to revolutionize agricultural practices. His contributions to plant biotechnology are significant and continue to influence the field.