Location History:
- Wildwood, MO (US) (2009)
- Ballwin, MO (US) (2014 - 2016)
Company Filing History:
Years Active: 2009-2016
Title: The Innovative Contributions of Jinhua Xiao in Plant Breeding
Introduction
Jinhua Xiao is a notable inventor residing in Ballwin, Missouri, known for her significant contributions to plant breeding and disease resistance. With three patents to her name, Jinhua is dedicated to developing methods that enhance crop resilience, particularly in cotton plants.
Latest Patents
Jinhua's latest innovations include methods and compositions for selecting cotton plants resistant to the cotton root knot nematode. This invention focuses on breeding cotton plants that contain quantitative trait loci (QTL) associated with resistance to Root Knot Nematode (RKN). Additionally, she has developed methods for quantifying target organisms and creating reniform resistant cotton plants, which involve assaying locations for pest infestations and breeding decisions to enhance plant resistance. Both patents emphasize the importance of germplasm for introgression into elite germplasm for breeding programs, leading to the creation of novel elite germplasm with enhanced resistance traits.
Career Highlights
Jinhua is currently affiliated with Monsanto Technology LLC, a company renowned for its advancements in agricultural biotechnology. Her work at Monsanto highlights her commitment to leveraging innovative solutions for pressing agricultural challenges and improving crop yields.
Collaborations
Throughout her career, Jinhua has collaborated with esteemed colleagues such as Muhammad Bhatti and Roy G Cantrell. These partnerships have enabled her to enhance her research and development efforts, pushing the boundaries of what is possible in plant breeding.
Conclusion
Jinhua Xiao's contributions to agricultural innovation, specifically in cotton plant breeding, reflect her dedication to enhancing food security through sustainable practices. Her inventive methods and collaboration with industry peers continue to make significant impacts in the field of plant genetics and agricultural efficiency.