This inventor holds 1 USPTO granted patent. Top assignee: Institute of Nanfan & Seed Industry, Guangdong Academy of Sciences. Active years: 2022.
Company Filing History:
Years Active: 2022
Title: Innovations in Sugarcane Resistance: The Work of Huiyi He
Introduction
Huiyi He is an innovative inventor based in Guangzhou, China. He has made significant contributions to the field of agricultural biotechnology, particularly in enhancing sugarcane's resistance to glyphosate. His work focuses on developing methods that improve crop resilience, which is crucial for sustainable agriculture.
Latest Patents
Huiyi He holds a patent titled "Method for conducting high-throughput and directed mutagenesis for sugarcane resistance to glyphosate by plasma." This invention outlines a method where sugarcane embryonic calli are irradiated by a plasma instrument under sterile conditions for mutagenesis. The process involves specific parameters such as mutagenesis power, discharging distance, and time, along with the use of nitrogen as a protective gas. The advantages of this method include safe operation, simplicity, high handling capacity, and efficient screening of resistant mutant strains.
Career Highlights
Huiyi He is affiliated with the Institute of Nanfan & Seed Industry at the Guangdong Academy of Sciences. His research has focused on improving agricultural practices through innovative biotechnological methods. His work has the potential to significantly impact the sugarcane industry by providing a more resilient crop variety.
Collaborations
Huiyi He collaborates with notable colleagues, including Yuxing An and Fangye Lao. These collaborations enhance the research efforts and contribute to the advancement of agricultural biotechnology.
Conclusion
Huiyi He's contributions to the field of agricultural biotechnology, particularly through his patented method for enhancing sugarcane resistance, demonstrate the importance of innovation in sustainable agriculture. His work not only addresses current agricultural challenges but also paves the way for future advancements in crop resilience.