This inventor holds 1 USPTO granted patent. Top assignee: Boyce Thompson Institute for Plant Research. Active years: 2011.
Company Filing History:
Years Active: 2011
Title: Nai-Chun Lin: Innovator in Plant Research
Introduction
Nai-Chun Lin is a prominent inventor based in Ithaca, NY (US). He has made significant contributions to the field of plant research, particularly through his innovative work on bacterial effector proteins. His research focuses on the mechanisms that inhibit programmed cell death in eukaryotes, which has important implications for agriculture and plant biology.
Latest Patents
Nai-Chun Lin holds a patent for "Bacterial effector proteins which inhibit programmed cell death." This invention relates to a bacterial effector protein that inhibits programmed cell death in eukaryotes and includes a nucleic acid molecule encoding such a protein. The patent also outlines methods for suppressing programmed cell death in eukaryotes, delaying senescence in plants, and increasing protein expression in plants. Furthermore, it describes a nucleic acid construct that couples a protein suppressing immunity with a toxic protein when expressed in eukaryotes. The invention provides methods for stabilizing transgenic plants transformed with this nucleic acid construct and offers a treatment method for conditions mediated by programmed cell death.
Career Highlights
Nai-Chun Lin is affiliated with the Boyce Thompson Institute for Plant Research, where he conducts his research. His work has garnered attention for its potential to enhance agricultural practices and improve plant resilience.
Collaborations
Nai-Chun Lin collaborates with notable colleagues, including Gregory B. Martin and Robert B. Abramovitch. These partnerships contribute to the advancement of research in plant biology and the development of innovative solutions.
Conclusion
Nai-Chun Lin's contributions to the field of plant research through his patented innovations highlight the importance of scientific advancements in agriculture. His work continues to pave the way for future developments in plant biology and biotechnology.
