Chandrakanth, M., Kumar, N., Sura, C., and Tung, S., 2025. Context-dependent effects of developmental and adult diet on life-history traits and their associations in outbred Drosophila melanogaster population. Journal of Evolutionary Biology, voaf091, https://doi.org/10.1093/jeb/voaf091 [bioRxiv]
Singh, A. and Tung, S., 2024. Comparison of six methods for stabilizing metapopulation dynamics and for their robustness against census noise. bioRxiv 2024.02.04.578847; DOI: 10.1101/2024.02.04.578847.
Ruchitha, B.G., Kumar, N., Sura, C., and Tung, S., 2024. Selection for greater dispersal in early life leads to increased rate of age-dependent decline in locomotor activity and shorter lifespan. Journal of Evolutionary Biology, voae097; DOI: 10.1093/jeb/voae097. [PDF]
Ruchitha, B.G., Kumar, D., Chandrakanth, M., Farooq, I., Kumar, N., Sura, C., Chetan, S. and Tung, S., 2024. Effect of developmental and adult diet composition on reproductive aging in Drosophila melanogaster. Experimental Gerontology 194, 112501; DOI: 10.1016/j.exger.2024.112501. [PDF]
Mudunuri, A., Chandrakanth, M., Khan, S., Kumar, N., Sura, C., and Tung, S., 2024. Diet-induced plasticity of life-history traits and gene expression in outbred Drosophila melanogaster population. Ecology & Evolution, 14(2):e10976. DOI: 10.1002/ece3.10976. [PDF]
Mishra, A., Tung, S., Sruti, V.R.S., Shreenidhi, P.M., and Dey, S., 2022. Desiccation stress acts as cause as well as cost of dispersal in Drosophila melanogaster. The American Naturalist 199, E111-E123. DOI: 10.1086/718641.
Tung, S.*, Bakerlee, C.W.*, Phillips, A.M., Ba, A.N.N. and Desai, M.M., 2021. The Genetic Basis of Differential Autodiploidization in Evolving Yeast Populations. G3 Genes|Genomes|Genetics, jkab192. [pdf] [bioRxiv] *Equal contribution
Mishra, A., Tung, S., Sruti, V.R.S., Srivathsa, S., and Dey, S. 2020. Mate-finding dispersal reduces local mate limitation and sex bias in dispersal. Journal of Animal Ecology 89, 2089-2098. [pdf]
Tung, S., Rajamani, M., Joshi, A., Dey, S. 2019. Complex interaction of resource availability, life-history and demography determines the dynamics and stability of stage-structured populations. Journal of Theoretical Biology 460. 1-12. [pdf]
Tung, S., Mishra, A., Gogna, N., Sadiq, M. A., Shreenidhi, P. M., Sruti, V. S., Dorai, K., Dey, S. 2018. Evolution of dispersal syndrome and its corresponding metabolomics changes. Evolution 72, 1890-1903. [pdf]
Mishra, A., Tung, S., Shree Sruti, V. R., Sadiq, M. A., Srivathsa, S., and Dey, S. 2018. Pre-dispersal context and presence of opposite sex modulate density dependence and sex bias of dispersal. Oikos 127, 1596-1604. [pdf]
Mishra, A.*, Tung, S.*, Shreenidhi, P. M., Sadiq, M. A., Sruti, V. S., Chakraborty, P. P., and Dey, S. 2018. Sex differences in dispersal syndromes are modulated by environment and evolution. Philosophical Transactions of the Royal Society B 373, 20170428. *Equal contribution. [pdf]
Tung, S., Mishra, A., Shreenidhi, P. M., Sadiq, M. A., Joshi, S., Sruti, V. S., Dey, S. 2018. Simultaneous evolution of multiple dispersal components and kernel. Oikos 127, 34–44. [pdf]
Tung, S., Mishra, A., Dey, S. 2016. Simultaneous enhancement of multiple stability properties using two-parameter control methods in Drosophila melanogaster. Ecological Complexity 26, 128–136. [pdf]
Tung, S., Mishra, A., Dey, S. 2016. Stabilizing the dynamics of laboratory populations of Drosophila melanogaster through upper and lower limiter controls. Ecological Complexity 25, 18-25. [pdf]
Tung, S., Mishra, A. and Dey, S. 2014. A comparison of six methods for stabilizing population dynamics. Journal of Theoretical Biology 356, 163-173. [pdf]