Company Filing History:
Years Active: 2024
Title: Qiwei Shan - Innovator in Plant Genome Modification
Introduction
Qiwei Shan is a prominent inventor based in Beijing, China. He has made significant contributions to the field of plant genetics, particularly in the area of genome modification. His innovative approach focuses on enhancing the precision of genetic alterations in plants, which is crucial for agricultural advancements.
Latest Patents
One of Qiwei Shan's notable patents is titled "Method for making site-directed modification to plant genomes by using non-inheritable materials." This invention discloses a method for conducting site-directed modification to a plant genome using non-inheritable materials. The method specifically involves introducing a non-inheritable material into a cell, tissue, or part of the plant of interest. The non-inheritable material can be a nuclease specific to the target fragment or an mRNA expressing the nuclease. This process allows for the cleavage of the target fragment by the nuclease, enabling site-directed modification through DNA repair in the plant. By utilizing a sequence-specific nuclease, this method achieves site-directed mutation in a plant gene without integrating exogenous genes or nucleic acid fragments. Consequently, this invention promotes more precise genome function studies and enhances biosafety in breeding.
Career Highlights
Qiwei Shan is affiliated with the Chinese Academy of Sciences, where he conducts his research and development activities. His work has garnered attention for its potential applications in improving crop resilience and productivity. With a focus on innovative genetic techniques, he continues to push the boundaries of plant biotechnology.
Collaborations
Qiwei Shan collaborates with esteemed colleagues in his field, including Caixia Gao and Zhen Liang. Their combined expertise contributes to advancing research in plant genome modification and related areas.
Conclusion
In summary, Qiwei Shan is a key figure in the realm of plant genome modification, with a patent that exemplifies his innovative approach to enhancing agricultural practices. His contributions are vital for the future of sustainable farming and genetic research.