This inventor holds 1 USPTO granted patent. Top assignee: Texas Tech University System. Active years: 2003.
Company Filing History:
Years Active: 2003
Title: Innovations in Plant Genetic Transformation by Xiaomin Shang
Introduction
Xiaomin Shang is a notable inventor based in Plano, Texas, recognized for his contributions to the field of plant genetic transformation. His innovative work focuses on utilizing the pollen tube pathway for the direct transformation of higher plants. This method presents a significant advancement in genetic engineering, offering new possibilities for agricultural biotechnology.
Latest Patents
Xiaomin Shang holds a patent for a groundbreaking system titled "Direct transformation of higher plants through pollen tube pathway." This patent describes a genetic transformation system that employs plasmid DNA applied to the surface of an ovary wound site after the removal of the style of florets following pollination. The research demonstrated that the plasmid DNA could reach the ovules of decapitated florets within approximately 24 hours after application. PCR analyses revealed that 12% to 15% of the tested plants contained a specific fragment of the luciferase gene construct within their genomes. Southern blotting further confirmed the incorporation of the firefly luciferase gene into the genomic DNA of the plants, indicating the potential for stable transformation through this innovative method.
Career Highlights
Xiaomin Shang is affiliated with the Texas Tech University System, where he continues to advance research in plant genetics. His work has not only contributed to the scientific community but has also paved the way for future innovations in agricultural practices.
Collaborations
Throughout his career, Xiaomin has collaborated with esteemed colleagues, including Ellen B. Peffley and Randy Dale Allen. These partnerships have fostered a collaborative environment that enhances research outcomes and drives innovation in the field.
Conclusion
Xiaomin Shang's pioneering work in the direct transformation of higher plants through the pollen tube pathway represents a significant leap forward in genetic engineering. His contributions are poised to impact agricultural biotechnology positively, offering new avenues for research and development.
