Assoc. Prof. Dr. Yingying WU | Functional Genomics | Research Excellence Award 

Assoc. Prof. Dr. Yingying WU | Functional Genomics | Research Excellence Award 

Institute of Edible Fungi/ Shanghai Academy of Agricultural Sciences | China

WU Yingying is an Associate Researcher at the Shanghai Academy of Agricultural Sciences with expertise spanning fungal genetics, molecular breeding, and synthetic biology. Her research primarily focuses on the genetic improvement of industrially cultivated edible mushrooms and the biosynthesis of active natural products from macrofungi. She has made significant contributions to understanding fungal genome structure, functional genes, and metabolic pathways, particularly in Hypsizygus marmoreus and Flammulina filiformis. Her work integrates genome-wide marker development, whole-genome sequencing, functional gene validation, and metabolomic profiling to enhance mushroom quality, stress tolerance, and nutritional value. In addition, she has contributed to microbial taxonomy and natural product biosynthesis, including studies on actinobacteria and antibiotic-related pathways. Her research has been widely published in leading international journals, reflecting a strong impact at the intersection of agricultural biotechnology, fungal genomics, and functional metabolite research.

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Assoc. Prof. Dr. Jian Gao | Functional Genomics | Research Excellence Award

Assoc. Prof. Dr. Jian Gao | Functional Genomics | Research Excellence Award

Lishui University | China

Jian Gao is a researcher in crop genetics and breeding with expertise in radish genomics and functional genomics. His research centers on the genetic regulation of anthocyanin biosynthesis and the molecular mechanisms of plant responses to heavy metal and abiotic stresses. He applies genome-wide analysis, transcriptomics, and bioinformatics to identify key functional genes and regulatory networks. His studies on gene families such as GST and GRAS have provided important insights into stress tolerance and quality trait formation in radish. He has also contributed to microRNA and regulatory gene research related to environmental stress responses in plants. Beyond plant science, his work extends to applied genomics using high-throughput sequencing technologies. His research has been published in leading international journals in plant science and molecular biology. He has played leading and collaborative roles in multiple competitive research projects. His work has resulted in authorized patents and the development of improved radish varieties. He is actively involved in graduate training and interdisciplinary teaching in genomics and bioinformatics.


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