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His research concerns the role of retrotransposons in shaping plant genomes, the impact of their activation by stress, and the application of gene- and retrotransposon-based variation in mapping, diversity analysis, positional cloning, and development of breeding tools. His group has been dissecting the retrotransposon life cycle in plants, with BARE of barley as the model system, since their discovery of the first transposable element in barley in 1989. They have participated in the Brachypodium and barley genome sequencing projects. Positional cloning efforts exploiting cereal genomic synteny focus on genes conferring biotic and abiotic stress resistance and grain quality. He pursues a general interest in the interplay of stress, climate change, and food production worldwide.
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biorxiv(2024)
Frontiers in Plant Science (2023): 1247853
npj Biodiversityno. 1 (2023): 1-13
Mercy Appiah,Issaka Abdulai, Elvira S. Dewi,Agata Daszkowska-Golec,Gennady Bracho-Mujica,Alan Schulman,Menachem Moshelion,Reimund P. Rötter
crossref(2023)
Maitry Paul,Jaakko Tanskanen, Marko Jääskeläinen,Wei Chang,Ahan Dalal,Menachem Moshelion,Alan H. Schulman
biorxiv(2023)
Free Radical Biology and Medicine (2022): 25-26
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