Shandong, China

Fei Ni


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2023

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1 patent (USPTO):Explore Patents

Title: The Innovations of Fei Ni in Wheat Male Sterility

Introduction

Fei Ni is an accomplished inventor based in Shandong, China. He has made significant contributions to the field of agricultural biotechnology, particularly in the development of male sterility in wheat. His innovative work has the potential to enhance hybrid seed production and improve crop yields.

Latest Patents

Fei Ni holds a patent for the invention titled "Wheat-male sterility gene WMS and its anther-specific expression promoter and uses thereof." This invention provides a novel gene, WMS, which confers male sterility in wheat. The patent describes the identification of the WMS gene through an RNA-seq approach, revealing its anther-specific expression during the early stages of meiosis in wheat carrying the Ms2 gene. The regulation of WMS can alter male fertility in plants, and its promoter exhibits anther-specific activity. This innovation can be utilized for anther-specific gene expression, developing male sterility in various plant species, and assisting in hybrid seed production.

Career Highlights

Fei Ni is associated with Spring Valley Agriscience Co., Ltd., where he continues to advance his research in plant genetics. His work has been instrumental in the application of the Ms2 gene, which has been widely used in recurrent selection in China. His contributions to the field have garnered attention and recognition among his peers.

Collaborations

Fei Ni has collaborated with notable colleagues, including Daolin Fu and Mincheng Luo. These partnerships have facilitated the exchange of ideas and expertise, further enhancing the impact of their research in agricultural biotechnology.

Conclusion

Fei Ni's innovative work in developing the WMS gene for wheat male sterility represents a significant advancement in agricultural science. His contributions have the potential to revolutionize hybrid seed production and improve crop yields, showcasing the importance of innovation in addressing global food security challenges.

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