Katsumi Sakata, Toshiyuki Saito, Hajime Ohyanagi, Ramesh Katam, Setsuko Komatsu. An information-theoretic model suggesting genetic regulatory system degradation under climate change. Physics Open. 2021. 6
Katsumi Sakata, Ramesh Katam, Toshiyuki Saito, Hajime Ohyanagi, Setsuko Komatsu. An Information-Theoretic Model for Managing Predator-Prey Ecosystems Facing Climate Changes. International Journal on Advances in Life Sciences. 2020. 12. 10-15
Katam R, Shokri S, Murthy N, Singh SK, Suravajhala P, Khan MN, Bahmani M, Sakata K, Reddy KR. Proteomics, physiological, and biochemical analysis of cross tolerance mechanisms in response to heat and water stresses in soybean. PLOS ONE. 2020
Xin Wang, Katsumi Sakata, Setsuko Komatsu. An integrated approach of proteomics and computational genetic modification effectiveness analysis to uncover the mechanisms of flood tolerance in soybeans. International Journal of Molecular Sciences. 2018. 19. 5
Plant proteomics: from genome sequencing to proteome databases and repositories.
Methods in molecular biology (Clifton, N.J.) 1072 29-42 2014
Advances in proteomics research for peanut genetics and breeding in peanut. In Mallikarjuna N. et al. eds. Genetics, genomics and breeding of peanuts.
CRC Press, Florida 2014
Mining knowledge from omics data. In Kishor P.B.K. et al. eds. Agricultural bioinformatics.
Springer, New York 2014
A Mathematical Model for Predator-Prey Ecosystems Facing Climate Changes
(BIOTECHNO 2019 : The Eleventh International Conference on Bioinformatics, Biocomputational Systems and Biotechnologies (awarded) 2019)